Segment Publications

Here you find a list of all publications using our Segment software solutions

If you have a publication that is missing in the list, please send the bibliographic information (such as Pubmed link) of your final work to support@medviso.com

1411 Bilgi, C., & Pahlevan, N. M. (2025). A novel analytical framework for noninvasive estimation of left ventricular pressure and pressure-volume loops. Physiological Measurement, 46(8). https://doi.org/10.1088/1361-6579/adf6fd
1410 Elshall, A., Bader, S., Salama, M., Elamrosi, M., Abdelmageed, R., Elzoghby, M., Shaaban, M., Elmozy, W., Salah, M., Elnagar, R., & Romeih, S. (2025). Left ventricle global longitudinal strain is a predictor of major adverse cardiovascular outcomes in patients with left ventricular non-compaction: Cardiac magnetic resonance feature tracking study. International Journal of Cardiology Sciences, 7(1), 20–28. https://doi.org/10.33545/26649020.2025.v7.i1a.91
1409 Katahira, M., Fukushima, K., Endo, K., Kawakubo, M., Ukon, N., Yamakuni, R., Kiko, T., Shimizu, T., Ishii, S., Yamaki, T., Nagao, M., Ito, H., & Takeishi, Y. (2025). Feasibility of position emission tomography derived endocardial wall strain: direct comparison with magnetic resonance using hybrid 13N ammonia PETMR system. Annals of Nuclear Medicine, 39(3), 285–294. https://doi.org/10.1007/s12149-024-01997-3
1408 Gjesdal, G., Székely, A., Engblom, H., Arheden, H., Braun, O., & Steding-Ehrenborg, K. (2025). Left ventricular longitudinal function is reduced but partially compensated by increased radial function after heart transplantation. JHLT Open, 9, 100308. https://doi.org/10.1016/j.jhlto.2025.100308
1407 Bramell, A., Kjellström, B., Mosén, H., Dimovski, K., Arheden, H., & Steding-Ehrenborg, K. (2025). Effects on Cardiac Dimensions and Peak Oxygen Uptake After Long-Term Deconditioning in Elite Athletes. Scandinavian Journal of Medicine and Science in Sports, 35(5), 1–10. https://doi.org/10.1111/sms.70071
1406 Christierson, L., Frieberg, P., Liuba, P., Hedström, E., Revstedt, J., Isaksson, H., & Hakacova, N. (2025). Prediction of healthy mitral valve hemodynamics in children and adults: validation of fluid-structure interaction simulations against echocardiography and magnetic resonance imaging. Computers in Biology and Medicine, 194(November 2024). https://doi.org/10.1016/j.compbiomed.2025.110455
1405 Österberg, A. W., Jablonowski, R., Östman-Smith, I., Carlsson, M., Schlegel, T. T., Green, H., Gunnarsson, C., & Fernlund, E. (2025). Spatial QRS-T angle can indicate presence of myocardial fibrosis in pediatric and young adult patients with hypertrophic cardiomyopathy. Journal of Electrocardiology, 89(December 2024). https://doi.org/10.1016/j.jelectrocard.2024.153859
1404 Sundqvist, M. G., Verouhis, D., Sörensson, P., Henareh, L., Persson, J., Saleh, N., Settergren, M., Witt, N., Böhm, F., Pernow, J., Tornvall, P., & Ugander, M. (2025). The size of myocardial infarction and peri-infarction edema are not major determinants of diastolic impairment after acute myocardial infarction. International Journal of Cardiovascular Imaging, 41(1), 103–112. https://doi.org/10.1007/s10554-024-03294-6
1403 Loewenstein, D. E., Wieslander, B., Heiberg, E., Axelsson, J., Klem, I., Nijveldt, R., Schelbert, E. B., Sörensson, P., Sigfridsson, A., Strauss, D. G., Kim, R. J., Atwater, B. D., & Ugander, M. (2025). Accuracy of left ventricular mechanical dyssynchrony indices for mechanical characteristics of left bundle branch block using cardiovascular magnetic resonance feature tracking. European Heart Journal Cardiovascular Imaging, 26(3), 435–443. https://doi.org/10.1093/ehjci/jeae301
1402 Huynh, J., Malmgren, A., Kraen, M., Trägårdh, E., & Dencker, M. (2025). Comparison of echocardiographic and cardiac magnetic resonance imaging measurements of systolic function during breast cancer therapy. BMC Cardiovascular Disorders, 25(1). https://doi.org/10.1186/s12872-024-04262-7
1401 Duarte, J. M. N., Sahoglu-Göktas, S., Vanherle, L., Rafiee, Z., Prakash, S., Stemmer, K., Swärd, K., Magnusson, M., & Meissner, A. (2025). Sex-Specific Cardiovascular Consequences of Long-Term High-Salt Diet in Mice. Journal of the American Heart Association, 14(20), e041945. https://doi.org/10.1161/JAHA.125.041945
1400 Śpiewak, M., Kołodziejczyk-Kruk, S., Kubik, A., Łebek-Szatańska, A., Szwench-Pietrasz, E., Florczak, E., Januszewicz, M., Januszewicz, A., & Marczak, M. (2025). Right Ventricular Structure and Function in Patients with Primary Aldosteronism: A Cardiac Magnetic Resonance Study. Journal of Clinical Medicine, 14(15), 1–13. https://doi.org/10.3390/jcm14155367
1399 Mohammed, N. A. A., Hamdan, A., Seifeldein, G. S., Romeih, S., Shaaban, M., & Elmozy, W. (2025). Assessment of myocardial viability using cardiac magnetic resonance feature tracking at rest and during low-dose dobutamine stress: a comparison with delayed gadolinium enhancement. International Journal of Cardiovascular Imaging, Icm. https://doi.org/10.1007/s10554-025-03514-7
1398 Kattapuram, N., Shadman, S., Morgan, E. E., Benton, C., Awojoodu, S., Kim, D. Y., Ramos, J., Barac, A., Bandettini, W. P., Kellman, P., Weissman, G., & Carlsson, M. (2025). Timing of Regadenoson-Induced Peak Hyperemia and the Effects on Coronary Flow Reserve. JACC: Cardiovascular Imaging, 18(1), 125–127. https://doi.org/10.1016/j.jcmg.2024.08.010
1397 Zhang, B., Liu, F., Li, G., Liang, J., Yang, F., Zhang, L., Zhao, Y., Liu, D., Zhang, L., & Kang, L. (2025). Reference Ranges for Cardiac Magnetic Resonance-Derived Atrioventricular Plane Displacement in Healthy Han Chinese Adults. Journal of Magnetic Resonance Imaging, 1–9. https://doi.org/10.1002/jmri.70146
1396 Kopic, S., Heiberg, E., Engblom, H., Carlsson, M., Nordlund, D., Jablonowski, R., Kanski, M., Xanthis, C., Bidhult, S., Aletras, A. H., & Arheden, H. (2025). Ex-vivo validation of nine algorithms for quantifying infarcts with late gadolinium enhancement cardiovascular magnetic resonance. Journal of Cardiovascular Magnetic Resonance, 27(2), 101915. https://doi.org/10.1016/j.jocmr.2025.101915
1395 Russell, J. J., Yoshida, T., Ma, L., Lee, L., Davis, D. J., Grisanti, L. A., Ruff, M., Bailey, C. A., Bender, S. B., & Chandrasekar, B. (2025). Cardiomyocyte-specific LARP6 overexpression prevents angiotensin II-induced myocardial dysfunction and interstitial fibrosis. American Journal of Physiology – Heart and Circulatory Physiology, 329(3), H730–H742. https://doi.org/10.1152/ajpheart.00196.2025
1394 Bilgi, C., Lin, B. A., Mitchell, G. F., & Pahlevan, N. M. (2025). On the Measurement of the Vortex Formation Time in the Left Ventricle. American Journal of Physiology-Heart and Circulatory Physiology, August. https://doi.org/10.1152/ajpheart.00623.2025
1393 Iske, J., Mesfin, J. M., Wolint, P., Weisskopf, M., Beez, C., Thau, H., Stoeck, C. T., Weiner, J. M., Hierweger, M. M., van Gelder, E., Stolte, T., Ünesen, N., Straughan, R., Eckholt, L. S. J., Trimmel, N., Beule, D., Meyborg, H., Nazari-Shafti, T. Z., Falk, V., … Cesarovic, N. (2025). Molecular screening in a translational large animal trial identifies a differential inflammatory response for MINOCA. Basic Research in Cardiology, 120(4), 657–675. https://doi.org/10.1007/s00395-025-01118-9
1392 Batkai, S., Spannbauer, A., Viereck, J., Genschel, C., Rump, S., Traxler, D., Riesenhuber, M., Lukovic, D., Zlabinger, K., Hasimbegovic, E., Thum, T., & Gyöngyösi, M. (2025). MiR-132 inhibition improves myocardial strain in a large animal model of chronic left ventricular adverse remodelling. European Heart Journal – Imaging Methods and Practice, 3(2), 1–8. https://doi.org/10.1093/ehjimp/qyaf088
1391 Dos Santos, K., Yurista, S. R., Mirrione, S. M., Bedoya, D. O. G., Calos, S. R., Luptak, I., Takahashi, A. M., Tang, W. H. W., Iwamoto, Y., Nguyen, C. T., & Yen, Y. F. (2025). Hyperpolarized [1-13C] pyruvate MRSI reveals a diet-dependent metabolic shift in ZSF1 rats. Journal of Magnetic Resonance Open, 24(June), 100205. https://doi.org/10.1016/j.jmro.2025.100205
1390 Hamid, S., Sarkar, S., Peng, H., Khalid, M., Ortiz, P. A., Xu, J., Liao, T. D., Knight, R. A., & Rhaleb, N. E. (2025). Ac-SDKP and eplerenone confer additive cardioprotection against angiotensin II-induced cardiac injury in C57BL/6J mice. Journal of Molecular and Cellular Cardiology Plus, 14(July), 1–10. https://doi.org/10.1016/j.jmccpl.2025.100485
1389 El- Mozy, W. E. A., Said, A. H., Shabaan, E. A. E.-L., & Abd El- Mageed, N. E. (2025). The Role of Advanced New MRI Parameters in Cardiomyopathies. Egyptian Journal of Medical Research, 6(3), 225–248. https://doi.org/10.21608/ejmr.2024.236777.1461
1388 Hauge-Iversen, I. M., Nordén, E. S., Melleby, A. O., Espeland, L., Zhang, L., Sjaastad, I., & Espe, E. K. S. (2025). Non-invasive estimation of left ventricular chamber stiffness using cardiovascular magnetic resonance and echocardiography. Journal of Cardiovascular Magnetic Resonance, 27(1), 101849. https://doi.org/10.1016/j.jocmr.2025.101849
1387 Balkhed, W., Bergram, M., Iredahl, F., Holmberg, M., Edin, C., Carlhäll, C. J., Ebbers, T., Henriksson, P., Simonsson, C., Rådholm, K., Cedersund, G., Forsgren, M., Leinhard, O. D., Jönsson, C., Lundberg, P., Kechagias, S., Dahlström, N., Nasr, P., & Ekstedt, M. (2025). Evaluating the prevalence and severity of metabolic dysfunction-associated steatotic liver disease in patients with type 2 diabetes mellitus in primary care. Journal of Internal Medicine, 298(3), 173–187. https://doi.org/10.1111/joim.20103
1386 Bech, S. K., Hansen, E. S. S., Nielsen, B. R., Wiggers, H., Bengtsen, M. B., Laustsen, C., & Miller, J. J. (2025). Myocardial metabolic flexibility following ketone infusion demonstrated by hyperpolarized [2-13C]pyruvate MRS in pigs. Scientific Reports, 15(1), 1–11. https://doi.org/10.1038/s41598-025-90215-9
1385 Casas Garcia, B., Tunedal, K., Viola, F., Cedersund, G., Carlhäll, C. J., Karlsson, M., & Ebbers, T. (2025). Observer- and sequence variability in personalized 4D flow MRI-based cardiovascular models. Scientific Reports, 15(1), 1–13. https://doi.org/10.1038/s41598-024-84390-4
1384 Katahira, M., Fukushima, K., Endo, K., Kawakubo, M., Ukon, N., Yamakuni, R., Kiko, T., Shimizu, T., Ishii, S., Oikawa, M., Nagao, M., Ito, H., & Takeishi, Y. (2025). Validation of in Vivo Myocardial Strain with PET Derived Feature Tracking. Annals of Nuclear Cardiology. https://doi.org/10.17996/anc.25-00002
1383 Duchenne, J., Calle, S., Stankovic, I., Puvrez, A., Voros, G., Aalen, J. M., Larsen, C. K., Hopp, E., Smiseth, O. A., Galli, E., Donal, E., Penicka, M., Devos, D., De Buyzere, M., De Pooter, J., Timmermans, F., & Voigt, J. U. (2025). Strain-based staging as a unifying concept in cardiac resynchronization therapy. European Heart Journal Cardiovascular Imaging, 26(8), 1389–1399. https://doi.org/10.1093/ehjci/jeaf162
1382 Bawaskar, P., Chhikara, S., Guo, Y., Athwal, P. S. S., & Shenoy, C. (2025). Long-term prognostic value of left and right ventricular systolic function on cardiovascular magnetic resonance imaging in systemic sclerosis. European Heart Journal Cardiovascular Imaging, 26(6), 1029–1038. https://doi.org/10.1093/ehjci/jeaf086
1381 Markwirth, P., Selejan, S. R., Hohl, M., Schunk, S. J., Müller, A., Wagenpfeil, S., Wagmann, L., Kahles, F., Tokcan, M., Therre, M., Vorst, E. P. C. va. der, Rau, M., Noels, H., Wollenhaupt, J., Mahfoud, F., & Böhm, M. (2025). Renal Denervation Improves Uremic Cardiomyopathy in Rats With Chronic Kidney Disease. Journal of the American Heart Association , 14(15), 1–12. https://doi.org/10.1161/JAHA.124.038785
1380 Mousa, M., Mahmoud, I., Elkammash, T., Gad, A., & Noureldin, R. (2025). Diagnostic accuracy of segmental strain analysis by cardiac magnetic resonance feature tracking for chronic myocardial ischemic scar assessment. Magnetic Resonance Imaging, 121(August 2024). https://doi.org/10.1016/j.mri.2025.110408
1379 Asfour, A. S., Mohamed, A. M. A. A. K., Al-Salam, H. Y. A., Aboelsoud, H. M. A., Shaaban, M., & Elramly, M. Z. (2025). Predictors of prognosis by cardiac magnetic resonance imaging in patients with idiopathic restrictive heart disease. Egyptian Heart Journal, 77(1). https://doi.org/10.1186/s43044-025-00657-9
1378 Inoue, N., Morikawa, S., Ito, Y., Takayama, Y., Hiramatsu, T., Ohinata, R., Okamoto, D., & Murohara, T. (2025). Evaluation of cardiac energetics in left bundle branch area pacing using noninvasive pressure–volume loops. Heart Rhythm O2, 6(6), 789–798. https://doi.org/10.1016/j.hroo.2025.03.015
1377 Si, B., Allen, C., Qiao, B., & Wei, Z. A. (2025). Impact of upstream flow mixing on computational hemodynamic evaluation of total cavopulmonary connections. Physics of Fluids, 37(2). https://doi.org/10.1063/5.0246651
1376 Pusovnik, M., Algoet, M., Gsell, W., Janssens, S., Oosterlinck, W., & Himmelreich, U. (2025). Manganese-enhanced MRI during remotely induced myocardial ischemia reperfusion injury in male mice. Physiological Reports, 13(13), 1–14. https://doi.org/10.14814/phy2.70442
1375 Dorniak, K., Gogulska, Z., Viti, A., Glińska, A., Kulawiak-Gałąska, D., Fijałkowska, J., Wojteczek, A., Wojtowicz, D., Sienkiewicz, K., Hellmann, M., & Smoleńska, Ż. (2025). Cardiac Morpho-Functional Changes, Inflammation and Fibrosis in Systemic Sclerosis—A Pilot Study of a Tertiary Center Cohort. Diagnostics, 15(3). https://doi.org/10.3390/diagnostics15030393
1374 Laghzali, O., Shalikar, S., Liu, S., Lehmann, S., Periquito, J. dos S., Pohlmann, A., Waiczies, S., Carrier, L., Yang, H. J., Niendorf, T., & Ku, M. C. (2025). Cardiac Phase-Resolved T2* Magnetic Resonance Imaging Reveals Differences Between Normal Hearts and a Humanized Mouse Model of Hypertrophic Cardiomyopathy. Biomedicines, 13(5), 1–15. https://doi.org/10.3390/biomedicines13051193
1373 Ajiboye, I. O., Taylor, M. D., & Banerjee, R. K. (2025). Non-invasive pressure-volume loop derived LV efficiency, contractility, and stroke work in patients with Duchenne muscular dystrophy. Progress in Pediatric Cardiology, 76(December 2024), 101802. https://doi.org/10.1016/j.ppedcard.2024.101802
1372 Amirrad, F., La, V., Ohadi, S., Albotaif, M., Webster, S., Pru, J. K., Shamloo, K., Mohieldin, A. M., & Nauli, S. M. (2025). PGRMC2 is a pressure-volume regulator critical for myocardial responses to stress in mice. Nature Communications , 16(1), 1–17. https://doi.org/10.1038/s41467-025-57707-8
1371 Lafaver, B. N., Lee, L., Derocher, C. E., Levin, L. F., Carter, E. M., Sardesai, K., Vallejo, J. A., McAllister-Day, A., Crawford, T. K., Chapman, I. M., Wacker, M. J., Raggio, C. L., Ma, L., Krenz, M., & Phillips, C. L. (2025). Cardiac health, type I collagen, and aging in the oim/oim mouse model of osteogenesis imperfecta and a cohort of adults with OI. American Journal of Physiology – Heart and Circulatory Physiology, 328(3), H565–H580. https://doi.org/10.1152/ajpheart.00535.2024
1370 Ajiboye, I. O., Lang, S. M., Taylor, M. D., & Banerjee, R. K. (2025). Non-invasive pressure–volume loop derived temporal elastance, contractility, and efficiency indices for assessing Duchenne muscular dystrophy patients. Heart and Vessels, 40(8), 696–706. https://doi.org/10.1007/s00380-024-02511-5
1369 McIlvain, G., Williams, B., Al Samman, M. M., Mohsenian, S., Barrow, D. L., Loth, F., & Oshinski, J. N. (2025). Measurement of CSF flow and brain motion in Chiari malformation type I subjects undergoing posterior fossa decompression surgery. Journal of Neurosurgery, 143(1), 13–23. https://doi.org/10.3171/2024.11.JNS241509
1368 Buoso, S., Stoeck, C. T., & Kozerke, S. (2025). Automatic analysis of three-dimensional cardiac tagged magnetic resonance images using neural networks trained on synthetic data. Journal of Cardiovascular Magnetic Resonance, 27(1), 101869. https://doi.org/10.1016/j.jocmr.2025.101869
1367 Zhang, J., Gutierrez-Lara, E. J., Do, A., Nguyen, L., Nair, A., Selvan, N., Fenn, T., Adler, E., Khanna, R., & Sheikh, F. (2025). Preclinical efficacy and safety of AAVrh10-based plakophilin-2 gene therapy (LX2020) as a treatment for arrhythmogenic cardiomyopathy. Npj Regenerative Medicine, 10(1). https://doi.org/10.1038/s41536-025-00401-6
1366 Simpson, E. J., Althubeati, S., Cordon, S., Hoad, C., Bush, D., Eldeghaidy, S., Gowland, P. A., Macdonald, I. A., & Lobo, D. N. (2025). The effect of oral feeding on gastrointestinal function, motility and appetite-regulating hormones, insulin, glucose and satiety in normal weight individuals and those with obesity. Clinical Nutrition, 52, 62–71. https://doi.org/10.1016/j.clnu.2025.07.008
1365 Woxholt, S., Ueland, T., Aukrust, P., Anstensrud, A. K., Broch, K., Tøllefsen, I. M., Seljeflot, I., Halvorsen, B., Dahl, T. B., Huse, C., Andersen, G. Ø., Gullestad, L., Wiseth, R., Damås, J. K., & Kleveland, O. (2025). Effect of tocilizumab on endothelial and platelet-derived CXC-chemokines and their association with inflammation and myocardial injury in STEMI patients undergoing primary PCI. International Journal of Cardiology, 418(October 2024), 2–8. https://doi.org/10.1016/j.ijcard.2024.132613
1364 Kim, D., Kozor, R., Chen, J., Wong, M. G., & Ugander, M. (2025). Non-Invasive Magnetic resonance imaging Biomarkers to evaLuatE histology-proven kidney fibrosis in Chronic Kidney Disease (NIMBLE-CKD): an observational cohort study protocol. MedRxiv, 2025.06.26.25330326. https://doi.org/10.1136/bmjopen-2025-108747
1363 Yagiz, E., Garg, P., Cen, S. Y., Nayak, K. S., & Tian, Y. (2025). Simultaneous multi-slice cardiac real-time MRI at 0.55T. Magnetic Resonance in Medicine, 93(4), 1723–1732. https://doi.org/10.1002/mrm.30364
1362 Gülle, M., Weingärtner, S., & Akçakaya, M. (2025). Deep Learning Assisted Outer Volume Removal for Highly-Accelerated Real-Time Dynamic MRI. ArXiv.Org, 1–17.
1361 Yang, Y., Naeem, M., Van Assen, M., Yerly, J., Piccini, D., Stuber, M., Oshinski, J., & Chung, M. (2025). VPAL: A novel method to reduce reconstruction time for 5D free-running imaging. 1–15. http://arxiv.org/abs/2503.15711
1360 Steffen Johansson, R., Loewenstein, D., Lodin, K., Bruchfeld, J., Runold, M., Ståhlberg, M., Xue, H., Kellman, P., Caidahl, K., Engblom, H., & Nickander, J. (2025). Long-Term Coronary Microvascular and Cardiac Dysfunction after Severe COVID-19 Hospitalization. JAMA Network Open, e2514411. https://doi.org/10.1001/jamanetworkopen.2025.14411
1359 Hamilton, J. I., Cruz, G., Truesdell, W., Agarwal, P., Rashid, I., & Seiberlich, N. (2025). Multifrequency Time-Dependent Deep Image Prior for Real-Time Free-Breathing Cardiac Imaging. NMR in Biomedicine, 38(9). https://doi.org/10.1002/nbm.70114
1358 Chen, S., Kara, D., Coll-Font, J., Garret, T., Eder, R., Foster, A., Yurista, S., Tandon, A. A., Wazni, O., Tang, W. H. W., Kwon, D., & Nguyen, C. T. (2025). Characterization of Normal Myocardial Microstructure for Healthy Women and Men Cohorts using cDTI with Ultra-High-Performance Gradient MRI Scanner. Journal of Cardiovascular Magnetic Resonance, 101966. https://doi.org/10.1016/j.jocmr.2025.101966
1357 Svedlund Eriksson, E., Lantero Rodriguez, M., Halvorsen, B., Johansson, I., Mårtensson, A. K. F., Wilhelmson, A. S., Huse, C., Ueland, T., Aukrust, P., Broch, K., Gullestad, L., Amundsen, B. H., Andersen, G. Ø., Karlsson, M. C. I., Hagberg Thulin, M., Camponeschi, A., Trompet, D., Hammarsten, O., Redfors, B., … Tivesten, Å. (2025). Testosterone exacerbates neutrophilia and cardiac injury in myocardial infarction via actions in bone marrow. Nature Communications , 16(1). https://doi.org/10.1038/s41467-025-56217-x
1356 Pegoraro, N., Chiarello, S., Bisi, R., Muscogiuri, G., Bertini, M., Carnevale, A., Giganti, M., & Cossu, A. (2025). Correction to: Cardiac Magnetic Resonance in the Assessment of Atrial Cardiomyopathy and Pulmonary Vein Isolation Planning for Atrial Fibrillation (Journal of Imaging, (2025), 11, 5, (143), 10.3390/jimaging11050143). Journal of Imaging, 11(7), 1–18. https://doi.org/10.3390/jimaging11070233
1355 Bessen, M. A., Gayen, C. D., Doig, R. L. O., Dorrian, R. M., Quarrington, R. D., Mulaibrahimovic, A., Kurtcuoglu, V., Walls, A. C., Leonard, A. V., & Jones, C. F. (2025). Cerebrospinal fluid dynamics and subarachnoid space occlusion following traumatic spinal cord injury in the pig: an investigation using magnetic resonance imaging. Fluids and Barriers of the CNS, 22(1). https://doi.org/10.1186/s12987-024-00595-9
1354 Ibrahim, A. M., Roshdy, M., Latif, N., Elsawy, A., Sarathchandra, P., Hosny, M., Hekal, S., Attia, A., Elmozy, W., Elaithy, A., Elguindy, A., Afifi, A., Aguib, Y., & Yacoub, M. (2025). Structural and Functional Characterization of the Aorta in Hypertrophic Obstructive Cardiomyopathy. Circulation: Heart Failure, 18(2), e012384. https://doi.org/10.1161/CIRCHEARTFAILURE.124.012384
1353 Sehly, A., Dallo, M., Hou, M. Y., Devlin, A., Veluswamy, S., Lan, N. S. R., Adler, B., Beilin, L. J., Dwivedi, G., & Mori, T. A. (2025). MRI assessed cardiac structure and function in young adult offspring of hypertensive pregnancies: a 27-year prospective follow-up birth cohort. American Journal of Physiology – Heart and Circulatory Physiology, 329(4), H844–H852. https://doi.org/10.1152/ajpheart.00431.2025
1352 Zhang, H., Yang, W., Zhou, D., Wang, Y., Zhu, L., Jiang, M., Zhang, Q., Sirajuddin, A., Arai, A. E., Zhao, S., & Lu, M. (2025). Prognostic Value of Myocardial T1 Mapping and Extracellular Volume Fraction in Heart Failure: A Meta-Analysis. JACC: Cardiovascular Imaging. https://doi.org/10.1016/j.jcmg.2025.06.017
1351 Bergo, K. K., Nordén, E. S., Bendiksen, B. A., Espe, E. K. S., McGinley, G., Hauge-Iversen, I. M., Hussain, R. I., Leh, S., Marti, H. P., Zhang, L., Sjaastad, I., & Cataliotti, A. (2025). Sacubitril/valsartan preserves kidney function in rats with cardiorenal syndrome after myocardial infarction. Plos One, 20(10 October), 1–14. https://doi.org/10.1371/journal.pone.0335214
1350 Diekmann, J., König, T., Hess, A., Zwadlo, C., Schäfer, A., Ross, T. L., Thackeray, J. T., Bengel, F. M., & Bauersachs, J. (2025). CXCR4 PET/CT Predicts Left Ventricular Recovery 8 Months After Acute Myocardial Infarction. Journal of Nuclear Medicine, jnumed.125.270807. https://doi.org/10.2967/jnumed.125.270807
1349 Torbati, S., Daneshmehr, A., Rezaee, M. R., Pouraliakbar, H., Hossein, S., Tafti, A., Asgharian, M., Vali, H., & Heidari, A. (2025). Design of Epicardial Restraints for Optimized Passive Filling of the Right Ventricle. May. https://doi.org/10.20944/preprints202505.1023.v1
1348 Ikeda, A., Fukushima, K., Katahira, M., Ukon, N., Yamakuni, R., Akama, J., Shimizu, T., Kiko, T., Ishii, S., Oikawa, M., Ito, H., & Takeishi, Y. (2025). Simultaneous measurement of coronary sinus flow and myocardial flow reserve using hybrid 13N-ammonia PETMR in patients with ischemic heart disease. International Journal of Cardiovascular Imaging. https://doi.org/10.1007/s10554-025-03543-2
1347 Zhang, J., Jin, C., Han, X., Wu, P., Cao, J., He, S., Li, L., Wang, R., Zhang, M., Xiao, Y., Guo, H., Zhang, T., Wu, Z., & Li, S. (2025). Effect of exercise training on cardiac function and glucose metabolism in the ischemic border zone: insights from multi-modal imaging techniques. Frontiers in Cardiovascular Medicine, 12(May). https://doi.org/10.3389/fcvm.2025.1583206
1346 Antonucci, G. W., Maria Paola Fucci, Pollice, S., Pollice, P., Sardaro, A., Dargenio, P., & Urbano, M. (2025). Establishing normal T1 mapping values in Cardiac Magnetic Resonance Imaging: a regional study. Journal of Advanced Health Care, 7(3), 2–5. https://doi.org/10.36017/jahc202573423
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1271 Kikuchi, Y., Onohara, D., Silverman, M., Guyton, R. A., & Padala, M. (2024). Mitral regurgitation increases systolic strains in remote zone and worsens left ventricular dyssynchrony in a swine model of ischemic cardiomyopathy. Frontiers in Cardiovascular Medicine, May, 1–13. https://doi.org/10.3389/fcvm.2024.1397079
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1268 El Sayed, R., Lucas, C. J., Cebull, H. L., Nahab, F. B., Haussen, D. C., Allen, J. W., & Oshinski, J. N. (2024). Subjects with carotid webs demonstrate pro-thrombotic hemodynamics compared to subjects with carotid atherosclerosis. Scientific Reports, 14(1), 1–11. https://doi.org/10.1038/s41598-024-60666-7
1267 Torbati, S., Daneshmehr, A., Pouraliakbar, H., Asgharian, M., Tafti, S. H. A., Shum-Tim, D., & Heidari, A. (2024). Personalized Evaluation of the Passive Myocardium in Ischemic Cardiomyopathy via Computational Modeling Using Bayesian Optimization. Research Square. https://app.dimensions.ai/details/publication/pub.1171024191%0Ahttps://www.researchsquare.com/article/rs-4295162/latest.pdf
1266 Chuah, S. H., Tan, L. K., Md Sari, N. A., Chan, B. T., Hasikin, K., Lim, E., Ung, N. M., Abdul Aziz, Y. F., Jayabalan, J., & Liew, Y. M. (2024). Remodeling in Aortic Stenosis With Reduced and Preserved Ejection Fraction: Insight on Motion Abnormality Via 3D + Time Personalized LV Modeling in Cardiac MRI. Journal of Magnetic Resonance Imaging, 59(4), 1–14. https://doi.org/10.1002/jmri.28915
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1264 Zhu, J., Wang, Q., Zheng, Z., Ma, L., Guo, J., Shi, H., Ying, R., Gao, B., Chen, S., Yu, S., Yuan, B., Peng, X., & Ge, J. (2024). MiR-181a protects the heart against myocardial infarction by regulating mitochondrial fission via targeting programmed cell death protein 4. Scientific Reports, 14(1), 1–14. https://doi.org/10.1038/s41598-024-57206-8
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1262 Moustafa, M., & Alfrargy, A. (2024). Correlation between Pre-Operative Myocardial Fibrosis and Early Post CABG Dysrhythmia. Cardiology and Angiology: An International Journal, 13(1), 92–100. https://doi.org/10.9734/CA/2024/v13i1398
1261 Nathan, A., Shadman, S., & Morgan, E. E. (2024). Timing of Regadenoson-induced Peak Hyperemia and the Effects on Coronary Flow Reserve. MedRxiv. https://doi.org/10.1101/2024.01.15.23300449
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1259 Birnefeld, J., Petersson, K., Wåhlin, A., Eklund, A., Birnefeld, E., Qvarlander, S., Haney, M., Malm, J., & Zarrinkoob, L. (2024). Cerebral Blood Flow Assessed with Phase-contrast Magnetic Resonance Imaging during Blood Pressure Changes with Noradrenaline and Labetalol: A Trial in Healthy Volunteers. Anesthesiology, 140(4), 669–678. https://doi.org/10.1097/ALN.0000000000004775
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1256 Endo, K., Fukushima, K., & Katahira, M. (2024). Intra-Ventricular Diastolic Hemodynamics under Pharmacological Stress in Patients with Ischemic Heart Disease : Analysis of 4D-Flow and Myocardial Flow Reserve using hybrid 13 N-ammonia Positron Emission Tomography / Magnetic Resonance. MedRxiv.
1255 Casas, B., Tunedal, K., Viola, F., Cedersund, G., Carlhäll, C.-J., Karlsson, M., & Ebbers, T. (2024). Reproducibility of 4D Flow MRI-based Personalized Cardiovascular Models; Inter-sequence, Intra-observer, and Inter-observer variability. BioRxiv. https://doi.org/10.1101/2024.06.13.597551
1254 Srabanti, M. G., Adams, C., Kadem, L., & Garcia, J. (2024). Role of Non-Invasive Hemodynamic Forces through Four-Dimensional-Flow Magnetic Resonance Imaging ( 4D-Flow MRI ) in Evaluating Mitral Regurgitation with Preserved Ejection Fraction : Seeking Novel Biomarkers. Applied Sciences (Switzerland), 14. https://doi.org/https:// doi.org/10.3390/app14198577
1253 Sun, Y., Huang, J., Lu, Q., Yue, X., & Huang, X. (2024). Modeling fibrous tissue in vascular fluid-structure interaction : a morphology-based pipeline and biomechanical significance. Arxiv, 1–31. https://doi.org/https://doi.org/10.48550/arXiv.2406.07064
1252 Kramer, L. A., Hasan, K. M., Zhang, X., Mulder, E., & Gerlach, D. A. (2024). Artificial Gravity: An Effective Countermeasure for Microgravity-Induced Headward Fluid Shift? Journal of Applied Physiology. https://doi.org/10.1152/japplphysiol.00441.2024
1251 Myklebust, L., Maleckar, M. M., & Arevalo, H. (2024). Fibrosis modeling choice affects morphology of ventricular arrhythmia in non-ischemic cardiomyopathy. Frontiers in Physiology, 15(March), 1–19. https://doi.org/10.3389/fphys.2024.1370795
1250 Liefke, J., Sepúlveda-Martinez, A., Shakya, S., Ehrenborg, K. S., Arheden, H., Morsing, E., Ley, D., Heiberg, E., & Hedström, E. (2023). Early-Onset Fetal Growth Restriction Increases Left Ventricular Sphericity in Adolescents Born Very Preterm. Pediatric Cardiology, 45(8), 1729–1740. https://doi.org/10.1007/s00246-023-03265-z
1249 Hedström, E., Piek, M., Bidhult-Johansson, S., Ryd, D., Testud, F., Töger, J., & Aletras, A. H. (2023). Factors affecting performance of fetal blood T2 measurements for noninvasive estimation of oxygen saturation. Magnetic Resonance in Medicine, 90(6), 2472–2485. https://doi.org/10.1002/mrm.29821
1248 Bradford, W. H., Zhang, J., Gutierrez-Lara, E. J., Liang, Y., Do, A., Wang, T. M., Nguyen, L., Mataraarachchi, N., Wang, J., Gu, Y., McCulloch, A., Peterson, K. L., & Sheikh, F. (2023). Plakophilin 2 gene therapy prevents and rescues arrhythmogenic right ventricular cardiomyopathy in a mouse model harboring patient genetics. Nature Cardiovascular Research, 2(12), 1246–1261. https://doi.org/10.1038/s44161-023-00370-3
1247 Dimasi, C. G., Darby, J. R. T., Cho, S. K. S., Saini, B. S., Holman, S. L., Meakin, A. S., Wiese, M. D., Macgowan, C. K., Seed, M., & Morrison, J. L. (2023). Reduced in utero substrate supply decreases mitochondrial abundance and alters the expression of metabolic signalling molecules in the fetal sheep heart. Journal of Physiology, 0, 1–22. https://doi.org/10.1113/JP285572
1246 Arvidsson, P. M., Green, P. G., Watson, W. D., Shanmuganathan, M., Heiberg, E., De Maria, G. L., Arheden, H., Herring, N., & Rider, O. J. (2023). Non-invasive left ventricular pressure-volume loops from cardiovascular magnetic resonance imaging and brachial blood pressure: validation using pressure catheter measurements. European Heart Journal – Imaging Methods and Practice, 1(2), 1–10. https://doi.org/10.1093/ehjimp/qyad035
1245 Axelsen, J. S., Nielsen-Kudsk, A. H., Schwab, J., Ringgaard, S., Nielsen-Kudsk, J. E., de Man, F. S., Andersen, A., & Andersen, S. (2023). Effects of empagliflozin on right ventricular adaptation to pressure overload. Frontiers in Cardiovascular Medicine, 10(December), 1–11. https://doi.org/10.3389/fcvm.2023.1302265
1244 Edin, C., Ekstedt, M., Karlsson, M., Wegmann, B., Ebbers, T., Swahn, E., Ostgren, C. J., Lundberg, P., & Carlhall, C. J. (2023). Liver fibrosis is associated with left ventricular remodeling: insights into the liver-heart axis. European Heart Journal, 44(Supplement_2), 1–11. https://doi.org/10.1093/eurheartj/ehad655.191
1243 Meléndez, G. C., Kavanagh, K., Gharraee, N., Lacy, J. L., Goslen, K. H., Block, M., Whitfield, J., Widiapradja, A., & Levick, S. P. (2023). Replacement substance P reduces cardiac fibrosis in monkeys with type 2 diabetes. Biomedicine and Pharmacotherapy, 160(February). https://doi.org/10.1016/j.biopha.2023.114365
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1241 Cunnane, C. V., Houston, J. G., Moran, D. T., Broderick, S. P., Ross, R. A., & Walsh, M. T. (2023). Spiral Laminar Flow is Associated with a Reduction in Disturbed Shear in Patient-Specific Models of an Arteriovenous Fistula. Cardiovascular Engineering and Technology, 14(1), 152–165. https://doi.org/10.1007/s13239-022-00644-0
1240 Johansson, M., Binka, E., Barnes, B., Gaur, L., Hedström, E., Kutty, S., & Carlsson, M. (2023). Right ventricular longitudinal function is linked to left ventricular filling pressure in patients with repaired tetralogy of fallot. International Journal of Cardiovascular Imaging, 39(2), 401–409. https://doi.org/10.1007/s10554-022-02728-3
1239 Dorninger, F., Kiss, A., Rothauer, P., Stiglbauer-Tscholakoff, A., Kummer, S., Fallatah, W., Perera-Gonzalez, M., Hamza, O., König, T., Bober, M. B., Cavallé-Garrido, T., Braverman, N. E., Forss-Petter, S., Pifl, C., Bauer, J., Bittner, R. E., Helbich, T. H., Podesser, B. K., Todt, H., & Berger, J. (2023). Overlapping and Distinct Features of Cardiac Pathology in Inherited Human and Murine Ether Lipid Deficiency. International Journal of Molecular Sciences, 24(3). https://doi.org/10.3390/ijms24031884
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1237 Paxton, N. C. (2023). Navigating the intersection of 3D printing, software regulation and quality control for point-of-care manufacturing of personalized anatomical models. 3D Printing in Medicine, 9(1), 9. https://doi.org/10.1186/s41205-023-00175-x
1236 Thorn, S. L., Shuman, J. A., Stacy, M. R., Purcell, B. P., Doviak, H., Burdick, J. A., Spinale, F. G., & Sinusas, A. J. (2023). Matrix Metalloproteinase-Targeted SPECT/CT Imaging for Evaluation of Therapeutic Hydrogels for the Early Modulation of Post-Infarct Myocardial Remodeling. Journal of Cardiovascular Translational Research, 16(1), 155–165. https://doi.org/10.1007/s12265-022-10280-7
1235 Hedeer, F., Akil, S., Oddstig, J., Hindorf, C., Arheden, H., Carlsson, M., & Engblom, H. (2023). Diagnostic accuracy for CZT gamma camera compared to conventional gamma camera technique with myocardial perfusion single-photon emission computed tomography: Assessment of myocardial infarction and function. Journal of Nuclear Cardiology, 1935–1946. https://doi.org/10.1007/s12350-022-03185-0
1234 Fanni, B. M., Antonuccio, M. N., Pizzuto, A., Berti, S., Santoro, G., & Celi, S. (2023). Uncertainty Quantification in the In Vivo Image-Based Estimation of Local Elastic Properties of Vascular Walls. Journal of Cardiovascular Development and Disease, 10(3), 109. https://doi.org/10.3390/jcdd10030109
1233 Fukushima, K., Endo, K., Yamakuni, R., Kiko, T., Sekino, H., Kikori, K., Ukon, N., Ishii, S., Yamaki, T., Ito, H., & Takeishi, Y. (2023). Simultaneous assessment of left ventricular mechanical dyssynchrony using integrated 13N-ammonia PETMR system: direct comparison of PET phase analysis and MR feature tracking. Journal of Nuclear Cardiology. https://doi.org/10.1007/s12350-023-03225-3
1232 Riva, A., Eriksson, J., Viola, F., Sturla, F., Votta, E., Ebbers, T., Carlhäll, C.-J. J. G., & Dyverfeldt, P. (2023). Impact of dobutamine stress on diastolic energetic efficiency of healthy left ventricle: an in vivo kinetic energy analysis. Frontiers in Cardiovascular Medicine, 10(March), 1–10. https://doi.org/10.3389/fcvm.2023.1103751
1231 Åkesson, J., Ostenfeld, E., Carlsson, M., Arheden, H., & Heiberg, E. (2023). Deep learning can yield clinically useful right ventricular segmentations faster than fully manual analysis. Scientific Reports, 13(1), 1–10. https://doi.org/10.1038/s41598-023-28348-y
1230 Eden, M. J., Matz, J., Garg, P., Gonzalez, M. P., McElderry, K., Wang, S., Gollner, M. J., Oakes, J. M., & Bellini, C. (2023). Prolonged smoldering Douglas fir smoke inhalation augments respiratory resistances, stiffens the aorta, and curbs ejection fraction in hypercholesterolemic mice. Science of the Total Environment, 861(June 2022), 160609. https://doi.org/10.1016/j.scitotenv.2022.160609
1229 Tran-Nguyen, N., Yan, A. T., Fremes, S., Triverio, P., & Jimenez-Juan, L. (2023). Abnormal Wall Shear Stress Area is Correlated to Coronary Artery Bypass Graft Remodeling 1 Year After Surgery. Annals of Biomedical Engineering. https://doi.org/10.1007/s10439-023-03167-4
1228 Nickander, J., Steffen Johansson, R., Lodin, K., Wahrby, A., Loewenstein, D., Bruchfeld, J., Runold, M., Xue, H., Kellman, P., & Engblom, H. (2023). Stress native T1 and native T2 mapping compared to myocardial perfusion reserve in long-term follow-up of severe Covid-19. Scientific Reports, 13(1), 1–9. https://doi.org/10.1038/s41598-023-30989-y
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1226 Berkowicz, P., Totoń-Żurańska, J., Kwiatkowski, G., Jasztal, A., Csípő, T., Kus, K., Tyrankiewicz, U., Orzyłowska, A., Wołkow Pawełand Tóth, A., Chlopicki, S., Wołkow, P., Tóth, A., & Chlopicki, S. (2023). Accelerated ageing and coronary microvascular dysfunction in chronic heart failure in Tgαq*44 mice. GeroScience, 0123456789. https://doi.org/10.1007/s11357-022-00716-y
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1224 Bessen, M. A., Gayen, C. D., Quarrington, R. D., Walls, A. C., Leonard, A. V., Kurtcuoglu, V., & Jones, C. F. (2023). Characterising spinal cerebrospinal fluid flow in the pig with phase-contrast magnetic resonance imaging. Fluids and Barriers of the CNS, 20(1), 5. https://doi.org/10.1186/s12987-022-00401-4
1223 Piek, M., Ryd, D., Töger, J., Testud, F., Hedström, E., & Aletras, A. H. (2023). Fetal 3D cardiovascular cine image acquisition using radial sampling and compressed sensing. Magnetic Resonance in Medicine, 89(2), 594–604. https://doi.org/10.1002/mrm.29467
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1221 Yurista, S. R., Chen, S., Eder, R. A., Garrett, T., Butsch, W. S., Aminian, A., Tang, W. H. W. W., Farrar, C. T., Gee, D., Abel, E. D., Das, S., & Nguyen, C. T. (2023). Mapping the Unseen: In Vivo CEST-MRI of Creatine Reveals Improved Cardiac Energetics in Subjects with Obesity Following Bariatric Surgery. Obesity Surgery. https://doi.org/10.1007/s11695-023-06589-0
1220 Frieberg, P., Sjöberg, P., Hedström, E., Carlsson, M., & Liuba, P. (2023). In vivo hepatic flow distribution by computational fluid dynamics can predict pulmonary flow distribution in patients with Fontan circulation. Scientific Reports, 13(1), 1–8. https://doi.org/10.1038/s41598-023-45396-6
1219 Berg, J., Jablonowski, R., Nordlund, D., Ryd, D., Heiberg, E., Carlsson, M., & Arheden, H. (2023). Mild hypothermia attenuates ischaemia/reperfusion injury: insights from serial non-invasive pressure–volume loops. Cardiovascular Research, 119(12), 1–14. https://doi.org/10.1093/cvr/cvad028
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1150 Tougaard, R. S., Laustsen, C., Lassen, T. R., Qi, H., Lindhardt, J. L., Schroeder, M., Jespersen, N. R., Hansen, E. S. S., Ringgaard, S., Bøtker, H. E., Kim, W. Y., Stødkilde-Jørgensen, H., & Wiggers, H. (2022). Remodeling after myocardial infarction and effects of heart failure treatment investigated by hyperpolarized [1-13C]pyruvate magnetic resonance spectroscopy. Magnetic Resonance in Medicine, 87(1), 57–69. https://doi.org/10.1002/mrm.28964
1149 Uhl, F. E., Vanherle, L., Matthes, F., & Meissner, A. (2022). Therapeutic CFTR Correction Normalizes Systemic and Lung-Specific S1P Level Alterations Associated with Heart Failure. International Journal of Molecular Sciences, 23(2). https://doi.org/10.3390/ijms23020866
1148 Edlund, J., Arvidsson, P. M., Nelsson, A., Smith, J. G., Magnusson, M., Heiberg, E., Steding-Ehrenborg, K., & Arheden, H. (2022). Noninvasive Assessment of Left Ventricular Pressure-Volume Relations: Inter- and Intraobserver Variability and Assessment Across Heart Failure Subtypes. American Journal of Cardiology, 184, 48–55. https://doi.org/10.1016/j.amjcard.2022.09.001
1147 Töger, J., Andersen, M., Haglund, O., Kylkilahti, T. M., Lundgaard, I., & Markenroth Bloch, K. (2022). Real-time imaging of respiratory effects on cerebrospinal fluid flow in small diameter passageways. Magnetic Resonance in Medicine, 88(2), 770–786. https://doi.org/10.1002/mrm.29248
1146 Dimov, I. P., Tous, C., Li, N., Barat, M., Bomberna, T., Debbaut, C., Jin, N., Moran, G., Tang, A., & Soulez, G. (2022). Assessment of hepatic arterial hemodynamics with 4D flow MRI: in vitro analysis of motion and spatial resolution related error and in vivo feasibility study in 20 volunteers. European Radiology, 32(12), 8639–8648. https://doi.org/10.1007/s00330-022-08890-5
1145 Liefke, J., Steding-Ehrenborg, K., Sjöberg, P., Ryd, D., Morsing, E., Arheden, H., Ley, D., & Hedström, E. (2022). Higher blood pressure in adolescent boys after very preterm birth and fetal growth restriction. Pediatric Research, 93(August), 1–9. https://doi.org/10.1038/s41390-022-02367-3
1144 Can, E., Smith, M., Boukens, B. J., Coronel, R., Buffenstein, R., & Riegler, J. (2022). Naked mole-rats maintain cardiac function and body composition well into their fourth decade of life. GeroScience, 44(2), 731–746. https://doi.org/10.1007/s11357-022-00522-6
1143 François, C. J., Barton, G. P., Corrado, P. A., Broman, A. T., Chesler, N. C., Eldridge, M. W., Wieben, O., & Goss, K. N. (2022). Diffuse Myocardial Fibrosis at Cardiac MRI in Young Adults Born Prematurely: A Cross-sectional Cohort Study. Radiology: Cardiothoracic Imaging, 4(3), 1–9. https://doi.org/10.1148/ryct.210224
1142 Gu, Q., Xu, F., Orgil, B.-O. O., Khuchua, Z., Munkhsaikhan, U., Johnson, J. N., Alberson, N. R., Pierre, J. F., Black, D. D., Dong, D., Brennan, J. A., Cathey, B. M., Efimov, I. R., Towbin, J. A., Purevjav, E., & Lu, L. (2022). Systems genetics analysis defines importance of TMEM43/LUMA for cardiac-and metabolic-related pathways. Physiological Genomics, 54(1), 22–35. https://doi.org/10.1152/PHYSIOLGENOMICS.00066.2021
1141 Dorniak, K., Daniłowicz-Szymanowicz, L., Sikorska, K., Rozwadowska, K., Fijałkowska, J., Glińska, A., Tuzimek, M., Sabisz, A., Żarczyńska-Buchowiecka, M., Świątczak Michałand Dudziak, M., Szurowska, E., Świątczak, M., Dudziak, M., & Szurowska, E. (2022). Left Ventricular Function and Iron Loading Status in a Tertiary Center Hemochromatosis Cohort—A Cardiac Magnetic Resonance Study. Diagnostics, 12(11). https://doi.org/10.3390/diagnostics12112620
1140 Udjus, C., Sjaastad, I., Hjørnholm, U., Tunestveit, T. K., Hoffmann, P., Hinojosa, A., Espe, E. K. S. S., Christensen, G., Skjønsberg, O. H., Larsen, K. O., & Rostrup, M. (2022). Extreme altitude induces divergent mass reduction of right and left ventricle in mountain climbers. Physiological Reports, 10(3), 1–11. https://doi.org/10.14814/phy2.15184
1139 Seemann, F., Javed, A., Chae, R., Ramasawmy, R., O’Brien, K., Baute, S., Xue, H., Lederman, R. J., Campbell-Washburn, A. E., O’Brien, K., Baute, S., Xue, H., Lederman, R. J., & Campbell-Washburn, A. E. (2022). Imaging gravity-induced lung water redistribution with automated inline processing at 0.55 T cardiovascular magnetic resonance. Journal of Cardiovascular Magnetic Resonance, 24(1), 1–13. https://doi.org/10.1186/s12968-022-00862-4
1138 Meissner, A., Garcia-Serrano, A. M., Vanherle, L., Rafiee, Z., Don-Doncow, N., Skoug, C., Larsson, S., Gottschalk, M., Magnusson, M., & Duarte, J. M. N. N. (2022). Alterations to Cerebral Perfusion, Metabolite Profiles, and Neuronal Morphology in the Hippocampus and Cortex of Male and Female Mice during Chronic Exposure to a High-Salt Diet. International Journal of Molecular Sciences, 24(1), 300. https://doi.org/10.3390/ijms24010300
1137 Ryd, D., Nilsson, A., Heiberg, E., & Hedström, E. (2022). Automatic Segmentation of the Fetus in 3D Magnetic Resonance Images Using Deep Learning: Accurate and Fast Fetal Volume Quantification for Clinical Use. Pediatric Cardiology, 44(0123456789), 1311–1318. https://doi.org/10.1007/s00246-022-03038-0
1136 Liefke, J., Heijl, C., Steding-Ehrenborg, K., Morsing, E., Arheden, H., Ley, D., Hedström, E., Steding, K., Eva, E., Håkan, M., David, A., Hedström, E., Steding-Ehrenborg, K., Morsing, E., Arheden, H., Ley, D., & Hedström, E. (2022). Fetal growth restriction followed by very preterm birth is associated with smaller kidneys but preserved kidney function in adolescence. Pediatric Nephrology, 38(6), 1855–1866. https://doi.org/10.1007/s00467-022-05785-x
1135 Lundström, S., Liefke, J., Heiberg, E., & Hedström, E. (2022). Pulse Wave Velocity Measurements by Magnetic Resonance Imaging in Neonates and Adolescents: Methodological Aspects and Their Clinical Implications. Pediatric Cardiology, 43(7), 1631–1644. https://doi.org/10.1007/s00246-022-02894-0
1134 Balaban, G., Westrum Aabel, E., Ribe, M., Isotta Castrini, A., Haugaa, K., M. Maleckar”, M., Balaban, “Gabriel, Westrum Aabel, E., Ribe, M., Isotta Castrini, A., Haugaa, K., & M. Maleckar”, M. (2022). Towards An Automated Pipeline to Create Patient Specific 3D LV Geometry Models of Patients with Mitral Annular Disjunction. 2022 Computing in Cardiology Conference (CinC), 49, 3–6. https://doi.org/10.22489/cinc.2022.022
1133 Hernandez-Casillas, A., Del-Canto, I., Ruiz-Espana, S., Lopez-Lereu, M. P., Monmeneu, J. V., & Moratal, D. (2022). Detection and Classification of Myocardial Infarction Transmurality Using Cardiac MR Image Analysis and Machine Learning Algorithms. Proceedings of the Annual International Conference of the IEEE Engineering in Medicine and Biology Society, EMBS, 2022July, 1686–1689. https://doi.org/10.1109/EMBC48229.2022.9871924
1132 Kočková, R., Línková, H., Hlubocká, Z., Mědílek, K., Tuna, M., Vojáček, J., Skalský, I., Černý, Š., Malý, J., Hlubocký, J., Mizukami, T., De Colle, C., & Pěnička, M. (2022). Multiparametric Strategy to Predict Early Disease Decompensation in Asymptomatic Severe Aortic Regurgitation. Circulation: Cardiovascular Imaging, 15(12), E014901. https://doi.org/10.1161/CIRCIMAGING.122.014901
1131 Sjöberg, P., Liuba, P., Arheden, H., Heiberg, E., & Carlsson, M. (2022). Non-invasive quantification of pressure–volume loops in patients with Fontan circulation. BMC Cardiovascular Disorders, 22(1), 1–9. https://doi.org/10.1186/s12872-022-02686-7
1130 Corrado, P. A., Wentland, A. L., Starekova, J., Dhyani, A., Goss, K. N., & Wieben, O. (2022). Fully automated intracardiac 4D flow MRI post-processing using deep learning for biventricular segmentation. European Radiology, 32(8), 5669–5678. https://doi.org/10.1007/s00330-022-08616-7
1129 Berg, J., Åkesson, J., Jablonowski, R., Solem, K., Heiberg, E., Borgquist, R., Arheden, H., & Carlsson, M. (2022). Ventricular longitudinal function by cardiovascular magnetic resonance predicts cardiovascular morbidity in HFrEF patients. ESC Heart Failure, 9(4), 2313–2324. https://doi.org/10.1002/ehf2.13916
1128 Pradella, M., Anastasopoulos, C., Yang, S., Moor, M., Badertscher, P., Gehweiler, J. E., Spies, F., Haaf, P., Zellweger, M., Sommer, G., Stieltjes, B., Bremerich, J., Osswald, S., Kuhne, M., Sticherling, C., & Knecht, S. (2022). Associations between fully-automated, 3Dbased functional analysis of the left atrium and classification schemes in atrial fibrillation. PLoS ONE, 17(8 August), 1–19. https://doi.org/10.1371/journal.pone.0272011
1127 Migotto, B. D. J. J., Gill, S., Sem, M., Macpherson, A. K., & Hynes, L. M. (2022). Sex-related differences in sternocleidomastoid muscle morphology in healthy young adults: A cross-sectional magnetic resonance imaging measurement study. Musculoskeletal Science and Practice, 61(May), 102590. https://doi.org/10.1016/j.msksp.2022.102590
1126 Nordström, J., Kvernby, S., Kero, T., Sörensen, J., Harms, H. J., & Lubberink, M. (2022). Left-ventricular volumes and ejection fraction from cardiac ECG-gated 15O-water positron emission tomography compared to cardiac magnetic resonance imaging using simultaneous hybrid PET/MR. Journal of Nuclear Cardiology. https://doi.org/10.1007/s12350-022-03154-7
1125 Mpweme Bangando, H., Simard, C., Aize, M., Lebrun, A., Manrique, A., & Guinamard, R. (2022). TRPM4 Participates in Irradiation-Induced Aortic Valve Remodeling in Mice. Cancers, 14(18). https://doi.org/10.3390/cancers14184477
1124 Pola, K., Bergström, E., Töger, J., Rådegran, G., Arvidsson, P. M., Carlsson, M., Arheden, H., & Ostenfeld, E. (2022). Increased biventricular hemodynamic forces in precapillary pulmonary hypertension. Scientific Reports, 12(1), 1–13. https://doi.org/10.1038/s41598-022-24267-6
1123 Cicolari, D., Lizio, D., Pedrotti, P., Moioli, M. T., Lascialfari, A., Mariani, M., & Torresin, A. (2022). A method for T1 and T2 relaxation times validation and harmonization as a support to MRI mapping. Journal of Magnetic Resonance, 334, 107110. https://doi.org/10.1016/j.jmr.2021.107110
1122 Crispi, F., Bernardino, G., Sepulveda-Martinez, A., Rodriguez-Lopez, M., Prat-Gonzalez, S., Pajuelo, C., Perea, R. J., Caralt, M. T., Crovetto, F., Gonzalez-Ballester, M. A., Sitges, M., Gratacos, E., & Bijnens, B. (2022). Unique cardiac remodeling in young adults born Small for Gestational Age with subsequent central obesity. European Heart Journal, 43(Supplement_2), 1–8. https://doi.org/10.1093/eurheartj/ehac544.1838
1121 Shar, J. A., Keswani, S. G., Grande-Allen, K. J., & Sucosky, P. (2022). Significance of aortoseptal angle anomalies to left ventricular hemodynamics and subaortic stenosis: A numerical study. Computers in Biology and Medicine, 146(May), 105613. https://doi.org/10.1016/j.compbiomed.2022.105613
1120 Heidari, A., Elkhodary, K. I., Pop, C., Badran, M., Vali, H., Abdel-Raouf, Y. M. A. A., Torbati, S., Asgharian, M., Steele, R. J., Mahmoudzadeh Kani, I., Sheibani, S., Pouraliakbar, H., Sadeghian, H., Cecere, R., Friedrich, M. G. W. W., & Tafti, H. A. (2022). Patient-specific finite element analysis of heart failure and the impact of surgical intervention in pulmonary hypertension secondary to mitral valve disease. Medical and Biological Engineering and Computing, 60(6), 1723–1744. https://doi.org/10.1007/s11517-022-02556-6
1119 He, Y., Northrup, H., Le, H., Cheung, A. K., Berceli, S. A., & Shiu, Y. T. (2022). Medical Image-Based Computational Fluid Dynamics and Fluid-Structure Interaction Analysis in Vascular Diseases. Frontiers in Bioengineering and Biotechnology, 10(April), 1–17. https://doi.org/10.3389/fbioe.2022.855791
1118 Chen, H., Warncke, M. L., Muellerleile, K., Saering, D., Beitzen-Heineke, A., Kisters, A., Swiderska, M., Cavus, E., Jahnke, C. M., Adam, G., Lund, G. K., & Tahir, E. (2022). Acute impact of an endurance race on biventricular and biatrial myocardial strain in competitive male and female triathletes evaluated by feature-tracking CMR. European Radiology, 32(5), 3423–3435. https://doi.org/10.1007/s00330-021-08401-y
1117 Iffrig, E., Timmins, L. H., El Sayed, R., Taylor, W. R., & Oshinski, J. N. (2022). A New Method for Quantifying Abdominal Aortic Wall Shear Stress Using Phase Contrast Magnetic Resonance Imaging and the Womersley Solution. Journal of Biomechanical Engineering, 144(9), 1–11. https://doi.org/10.1115/1.4054236
1116 Erley, J., Starekova, J., Sinn, M., Muellerleile, K., Chen, H., Harms, P., Naimi, L., Meyer, M., Cavus, E., Schneider, J., Blankenberg, S., Lund, G. K., Adam, G., & Tahir, E. (2022). Cardiac magnetic resonance feature tracking global and segmental strain in acute and chronic ST-elevation myocardial infarction. Scientific Reports, 12(1), 1–11. https://doi.org/10.1038/s41598-022-26968-4
1115 Strauss, B., Bisserier, M., Obus, E., Katz, M. G., Fargnoli, A., Cacheux, M., Akar, J. G., Hummel, J. P., Hadri, L., Sassi, Y., & Akar, F. G. (2022). Right predominant electrical remodeling in a pure model of pulmonary hypertension promotes reentrant arrhythmias. Heart Rhythm, 19(1), 113–124. https://doi.org/10.1016/j.hrthm.2021.09.021
1114 Gyllenhammar, T., Carlsson, M., Jögi, J., Arheden, H., & Engblom, H. (2022). Myocardial perfusion by CMR coronary sinus flow shows sex differences and lowered perfusion at stress in patients with suspected microvascular angina. Clinical Physiology and Functional Imaging, 42(3), 208–219. https://doi.org/10.1111/cpf.12750
1113 Miller, C. E., Jordan, J. H., Douglas, E., Ansley, K., Thomas, A., & Weis, J. A. (2022). Reproducibility assessment of a biomechanical model-based elasticity imaging method for identifying changes in left ventricular mechanical stiffness. Journal of Medical Imaging, 9(05), 1–16. https://doi.org/10.1117/1.jmi.9.5.056001
1112 Gleditsch, J., Jervan, Haukeland-Parker, S., Tavoly, M., Geier, O., Holst, R., Klok, F. A., Johannessen, H. H., Ghanima, W., & Hopp, E. (2022). Effects of pulmonary rehabilitation on cardiac magnetic resonance parameters in patients with persistent dyspnea following pulmonary embolism. IJC Heart and Vasculature, 40(March), 100995. https://doi.org/10.1016/j.ijcha.2022.100995
1111 Lee, L. E., Chandrasekar, B., Yu, P., & Ma, L. (2022). Quantification of myocardial fibrosis using noninvasive T2-mapping magnetic resonance imaging: Preclinical models of aging and pressure overload. NMR in Biomedicine, 35(3), 1–15. https://doi.org/10.1002/nbm.4641
1110 Abou-Arab, O., Beyls, C., Moussa, M. D., Huette, P., Beaudelot, E., Guilbart, M., De Broca, B., Yzet, T., Dupont, H., Bouzerar, R., & Mahjoub, Y. (2022). Portal Vein Pulsatility Index as a Potential Risk of Venous Congestion Assessed by Magnetic Resonance Imaging: A Prospective Study on Healthy Volunteers. Frontiers in Physiology, 13(April), 1–10. https://doi.org/10.3389/fphys.2022.811286
1109 Holst, T., Petersen, J., Adam, G., Reichenspurner, H., Girdauskas, E., & Tahir, E. (2022). A novel technique to quantify aortic valve annulus deformation: A pilot study. Journal of Cardiac Surgery, 37(9), 2734–2737. https://doi.org/10.1111/jocs.16683
1108 Lindholm, A., Kjellström, B., Seemann, F., Carlsson, M., Hesselstrand, R., Rådegran, G., Arheden, H., & Ostenfeld, E. (2022). Atrioventricular plane displacement and regional function to predict outcome in pulmonary arterial hypertension. International Journal of Cardiovascular Imaging, 38(10), 2235–2248. https://doi.org/10.1007/s10554-022-02616-w
1107 Petousis, S., Hamilos, M., Pagonidis, K., Vardas, P., Lazopoulos, G., Anastasiou, I., Zacharis, E., Kochiadakis, G., & Skalidis, E. (2022). Assessment of myocardial salvage in patients with STEMI undergoing thrombolysis: ticagrelor versus clopidogrel. BMC Cardiovascular Disorders, 22(1), 1–10. https://doi.org/10.1186/s12872-022-02735-1
1106 Northrup, H., He, Y., Le, H., Berceli, S. A., Cheung, A. K., & Shiu, Y. T. (2022). Differential hemodynamics between arteriovenous fistulas with or without intervention before successful use. Frontiers in Cardiovascular Medicine, 9(November), 1–18. https://doi.org/10.3389/fcvm.2022.1001267
1105 Postigo, A., Viola, F., Chazo, C., Martínez-Legazpi, P., González-Mansilla, A., Rodríguez-González, E., Fernández-Avilés, F., del Álamo, J. C., Ebbers, T., & Bermejo, J. (2022). Assessment of Blood Flow Transport in the Left Ventricle Using Ultrasound. Validation Against 4-D Flow Cardiac Magnetic Resonance. Ultrasound in Medicine and Biology, 48(9), 1822–1832. https://doi.org/10.1016/j.ultrasmedbio.2022.05.007
1104 Tran-Nguyen, N., Condemi, F., Yan, A., Fremes, S., Triverio, P., & Jimenez-Juan, L. (2022). Wall Shear Stress Differences Between Arterial and Venous Coronary Artery Bypass Grafts One Month After Surgery. Annals of Biomedical Engineering, 50(12), 1882–1894. https://doi.org/10.1007/s10439-022-03007-x
1103 Elsayed, A., Mauger, C. A., Ferdian, E., Gilbert, K., Scadeng, M., Occleshaw, C. J., Lowe, B. S., McCulloch, A. D., Omens, J. H., Govil, S., Pushparajah, K., & Young, A. A. (2022). Right Ventricular Flow Vorticity Relationships With Biventricular Shape in Adult Tetralogy of Fallot. Frontiers in Cardiovascular Medicine, 8(January), 1–10. https://doi.org/10.3389/fcvm.2021.806107
1102 Fernández-Llaneza, D., Gondová, A., Vince, H., Patra, A., Zurek, M., Konings, P., Kagelid, P., Hultin, L., Llaneza, D. F., Gondová, A., Vince, H., Patra, A., Zurek, M., Konings, P., Kagelid, P., Hultin, L., & End-diastole, E. D. (2022). Towards fully automated segmentation of rat cardiac MRI by leveraging deep learning frameworks. Scientific Reports, 12(1), 1–13. https://doi.org/10.1038/s41598-022-12378-z
1101 Xu, J., Yang, W., Zhao, S., & Lu, M. (2022). State-of-the-art myocardial strain by CMR feature tracking: clinical applications and future perspectives. European Radiology, 32(8), 5424–5435. https://doi.org/10.1007/s00330-022-08629-2
1100 Sophocleous, F., Standen, L., Doolub, G., Laymouna, R., Bucciarelli-Ducci, C., Caputo, M., Manghat, N., Hamilton, M., Curtis, S., & Biglino, G. (2022). Analysing functional implications of differences in left ventricular morphology using statistical shape modelling. Scientific Reports, 12(1), 1–12. https://doi.org/10.1038/s41598-022-15888-y
1099 Pöyhönen, P., Kuusisto, J., Pirinen, J., Räty, H., Lehmonen, L., Paakkanen, R., Martinez-Majander, N., Saeed, S., Gerdts, E., Putaala, J., Sinisalo, J., & Järvinen, V. (2022). Orientation of the Atrial Septum to the Inferior Vena Cava May Contribute to the Persistent Patency of the Foramen Ovale. Cardiology, 147(2), 169–178. https://doi.org/10.1159/000522017
1098 Zabidi, N. A., Nazri, F., Syafinaz, I., Amin, M., Salahuddin, M., Basri, M., Basha, R. K., & Othman, S. H. (2022). Jo ur na l P. International Journal of Biological Macromolecules, 2(2), 33–47. https://doi.org/10.1016/j.mri.2024.03.043
1097 Mirmojarabian, S. A., Lammentausta, E., Liukkonen, E., Ahvenjärvi, L., Junttila, J., Nieminen, M. T., & Liimatainen, T. (2022). Myocardium Assessment by Relaxation along Fictitious Field, Extracellular Volume, Feature Tracking, and Myocardial Strain in Hypertensive Patients with Left Ventricular Hypertrophy. International Journal of Biomedical Imaging, 2022. https://doi.org/10.1155/2022/9198691
1096 Hlubocká, Z., Kočková, R., Línková, H., Pravečková, A., Hlubocký, J., Dostálová, G., Bláha, M., Pěnička, M., & Linhart, A. (2022). Assessment of asymptomatic severe aortic regurgitation by doppler-derived echo indices: Comparison with magnetic resonance quantification. Journal of Clinical Medicine, 11(1). https://doi.org/10.3390/jcm11010152
1095 Kwon, O. S., Lee, J., Park, J. W., Yang, S. H., Hwang, I., Yu, H. T., Shin, H., & Pak, H. N. (2022). Three-Dimensional Atrial Wall Thickness Measurement Algorithm From a Segmented Atrial Wall Using a Partial Differential Equation. IEEE Access, 10, 32161–32170. https://doi.org/10.1109/ACCESS.2022.3159795
1094 Alessandro Barbarossa, Francesca Coraducci, Laura Cipolletta, Federico Guerra, A. D. R. (2022). Very Mobile Left Ventricular Outflow Tract Papillary Fibroelastoma Presenting with Multiple Ischemic Strokes: A Case Report and Brief Review of the Literature. Journal of Cardiovascular Echography, 32(4), 93–98. https://doi.org/10.4103/jcecho.jcecho
1093 Liefke, J., Steding-Ehrenborg, K., Asgeirsson, D., Nordlund, D., Kopic, S., Morsing, E., & Hedström, E. (2022). Non-contrast-enhanced magnetic resonance imaging can be used to assess renal cortical and medullary volumes—A validation study. Acta Radiologica Open, 11(1), 205846012110722. https://doi.org/10.1177/20584601211072281
1092 Maagaard, M., Boutrup, N., Udholm, S., Ahlstrup, M., Nielsen-Kudsk, J. E., Ringgaard, S., & Hjortdal, V. (2022). Adults with small, unrepaired atrial septal defects have reduced cardiac index during exercise. Cardiology in the Young, 1–11. https://doi.org/10.1017/s1047951122003742
1091 Edin, C., Ekstedt, M., Scheffel, T., Karlsson, M., Swahn, E., Östgren, C. J., Engvall, J., Ebbers, T., Leinhard, O. D., Lundberg, P., & Carlhäll, C. J. (2022). Ectopic fat is associated with cardiac remodeling—A comprehensive assessment of regional fat depots in type 2 diabetes using multi-parametric MRI. Frontiers in Cardiovascular Medicine, 9. https://doi.org/10.3389/fcvm.2022.813427
1090 Joergensen, S. H., Hansen, E. S. S., Bøgh, N., Bertelsen, L. B., Staehr, P. B., Schulte, R. F., Malloy, C., Wiggers, H., & Laustsen, C. (2022). Detection of increased pyruvate dehydrogenase flux in the human heart during adenosine stress test using hyperpolarized [1-13C]pyruvate cardiovascular magnetic resonance imaging. Journal of Cardiovascular Magnetic Resonance, 24(1), 1–9. https://doi.org/10.1186/s12968-022-00860-6
1089 Vanherle, L., Lidington, D., Uhl, F. E., Steiner, S., Vassallo, S., Skoug, C., Duarte, J. M. N. N., Ramu, S., Uller, L., Desjardins, J. F., Connelly, K. A., Bolz, S. S., & Meissner, A. (2022). Restoring myocardial infarction-induced long-term memory impairment by targeting the cystic fibrosis transmembrane regulator. EBioMedicine, 86, 104384. https://doi.org/10.1016/j.ebiom.2022.104384
1088 Polacin, M., Hünermund, T., Müggler, O., Alkadhi, H., Kozerke, S., & Manka, R. (2022). Patient-Specific Cardiac Magnetic Resonance Feature Tracking Approach for Scar Detection in Concomitant Ischemic and Non-Ischemic Heart Disease. Cardiology and Cardiovascular Medicine, 06(06), 542–549. https://doi.org/10.26502/fccm.92920297
1087 Xanthis, C. G., Jablonowski, R., Bidhult-Johansson, S., Nordlund, D., Haidich, A.-B., Lala, T., Arheden, H., & Aletras, A. H. (2022). Unravelling the mechanisms of CE-SSFP in imaging myocardium at risk: The effect of relaxation times on myocardial contrast. International Journal of Biological Macromolecules, 2(2), 33–47. https://doi.org/10.1016/j.mri.2024.03.043
1086 Zhang, M. (2022). Predictive Value of 68 Ga-FAPI-04 PET / MR for Left Ventricular Remodeling in Patients with Acute Myocardial Infarction. Research Square, 1–21.
1085 Xu, D., McBride, E., Kalra, K., Wong, K., Guyton, R. A., Sarin, E. L., & Padala, M. (2022). Undersizing mitral annuloplasty alters left ventricular mechanics in a swine model of ischemic mitral regurgitation. Journal of Thoracic and Cardiovascular Surgery, 164(3), 850–861.e8. https://doi.org/10.1016/j.jtcvs.2020.09.141
1084 Mirza, J., Sunder, S. S., Karthikeyan, B., Kattel, S., Pokharel, S., Quigley, B., & Sharma, U. C. (2022). Echocardiographic and Cardiac MRI Comparison of Longitudinal Strain and Strain Rate in Cancer Patients Treated with Immune Checkpoint Inhibitors. Journal of Personalized Medicine, 12(8), 1–17. https://doi.org/10.3390/jpm12081332
1083 Sundin, J., Bustamante, M., Ebbers, T., Dyverfeldt, P., & Carlhäll, C. J. (2022). Turbulent Intensity of Blood Flow in the Healthy Aorta Increases With Dobutamine Stress and is Related to Cardiac Output. Frontiers in Physiology, 13(May), 1–11. https://doi.org/10.3389/fphys.2022.869701
1082 Nita, N., Kersten, J., Pott, A., Weber, F., Tesfay, T., Benea, M. T., Metze, P., Li, H., Rottbauer, W., Rasche, V., & Buckert, D. (2022). Real-Time Spiral CMR Is Superior to Conventional Segmented Cine-Imaging for Left-Ventricular Functional Assessment in Patients with Arrhythmia. Journal of Clinical Medicine, 11(8). https://doi.org/10.3390/jcm11082088
1081 Jablonowski, R., Bennet, L., Engblom, H., Aletras, A. H., Xue, H., Kellman, P., Carlsson, M., & Arheden, H. (2022). Quantitative myocardial perfusion during stress using CMR is impaired in healthy Middle Eastern immigrants without CV risk factors. Scientific Reports, 12(1), 1–9. https://doi.org/10.1038/s41598-022-23131-x
1080 Lehmonen, L., Putaala, J., Pöyhönen, P., Kuusisto, J., Pirinen, J., Sinisalo, J., & Järvinen, V. (2022). MRI-derived cardiac washout is slowed in the left ventricle and associated with left ventricular non-compaction in young patients with cryptogenic ischemic stroke. International Journal of Cardiovascular Imaging, 38(11), 2395–2402. https://doi.org/10.1007/s10554-022-02643-7
1079 Wood, G., Kirkevang, T. S., Agergaard, J., Leth, S., Hansen, E. S. S., Laustsen, C., Larsen, A. H., Jensen, H. K., Østergaard, L. J., Bøtker, H. E., Poulsen, S. H., & Kim, W. Y. (2022). Cardiac Performance and Cardiopulmonary Fitness After Infection With SARS-CoV-2. Frontiers in Cardiovascular Medicine, 9(May), 1–9. https://doi.org/10.3389/fcvm.2022.871603
1078 Ghorbannia, A., Ellepola, C. D., Woods, R. K., Ibrahim, E. S. H., Maadooliat, M., Ramirez, H. M., & LaDisa, J. F. (2022). Clinical, Experimental, and Computational Validation of a New Doppler-Based Index for Coarctation Severity Assessment. Journal of the American Society of Echocardiography, 35(12), 1311–1321. https://doi.org/10.1016/j.echo.2022.09.006
1077 Gonzales, R. A., Lamy, J., Seemann, F., Heiberg, E., & Peters, D. C. (2022). Automated Measurements of Mitral and Tricuspid Annular Dimensions in Cardiovascular Magnetic Resonance. Proceedings – International Symposium on Biomedical Imaging, 2022March, 2–5. https://doi.org/10.1109/ISBI52829.2022.9761595
1076 Collins, S. P., Storrow, A., Liu, D., Jenkins, C. A., Miller, K. F., Kampe, C., & Butler, J. (2021). No Title 済無No Title No Title No Title. 167–186.
1075 Gonzales, R. A., Lamy, J., Seemann, F., Heiberg, E., Onofrey, J. A., & Peters, D. C. (2021). TVnet: Automated Time-Resolved Tracking of the Tricuspid Valve Plane in MRI Long-Axis Cine Images with a Dual-Stage Deep Learning Pipeline. Lecture Notes in Computer Science (Including Subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics), 12906 LNCS, 567–576. https://doi.org/10.1007/978-3-030-87231-1_55
1074 Wei, Z. A., Ratnayaka, K., Si, B., Singh-Gryzbon, S., Cetatoiu, M. A., Fogel, M. A., Slesnick, T., Yoganathan, A. P., & Nigro, J. J. (2021). An Anterior Anastomosis for the Modified Fontan Connection: A Hemodynamic Analysis. Seminars in Thoracic and Cardiovascular Surgery, 33(3), 816–823. https://doi.org/10.1053/j.semtcvs.2021.01.056
1073 Shaaban, M., Tantawy, S. W., Elkafrawy, F., Romeih, S., & Elmozy, W. (2021). Multiparametric Rest and Dobutamine Stress Magnetic Resonance in Assessment of Myocardial Viability. Journal of Magnetic Resonance Imaging, 54(6), 1773–1781. https://doi.org/10.1002/jmri.27733
1072 Degtiarova, G., Claus, P., Duchenne, J., Bogaert, J., Nuyts, J., Vöros, G., Willems, R., Larsen, C. K., Aalen, J. M., Fjeld, J. G., Stokke, C., Hopp, E., Smiseth, O. A., Voigt, J. U., & Gheysens, O. (2021). Left ventricular regional glucose metabolism in combination with septal scar extent identifies CRT responders. European Journal of Nuclear Medicine and Molecular Imaging, 48(8), 2437–2446. https://doi.org/10.1007/s00259-020-05161-7
1071 Tantawy, S. W., Mohammad, S. A., Osman, A. M., El Mozy, W., & Ibrahim, A. S. (2021). Strain analysis using feature tracking cardiac magnetic resonance (FT-CMR) in the assessment of myocardial viability in chronic ischemic patients. International Journal of Cardiovascular Imaging, 37(2), 587–596. https://doi.org/10.1007/s10554-020-02018-w
1070 Bonthrone, A. F., Dimitrova, R., Chew, A., Kelly, C. J., Cordero-Grande, L., Carney, O., Egloff, A., Hughes, E., Vecchiato, K., Simpson, J., Hajnal, J. V., Pushparajah, K., Victor, S., Nosarti, C., Rutherford, M. A., Edwards, A. D., O’Muircheartaigh, J., & Counsell, S. J. (2021). Individualized brain development and cognitive outcome in infants with congenital heart disease. Brain Communications, 3(2), 1–14. https://doi.org/10.1093/braincomms/fcab046
1069 Kattel, S., Bhatt, H., Gurung, S., Karthikeyan, B., & Sharma, U. C. (2021). Elevated myocardial wall stress after percutaneous coronary intervention in acute ST elevation myocardial infraction is associated with increased mortality. Echocardiography, 38(8), 1263–1271. https://doi.org/10.1111/echo.15131
1068 Militaru, S., Panovsky, R., Hanet, V., Amzulescu, M. S., Langet, H., Pisciotti, M. M., Pouleur, A. C., Vanoverschelde, J. L. J., & Gerber, B. L. (2021). Multivendor comparison of global and regional 2D cardiovascular magnetic resonance feature tracking strains vs tissue tagging at 3T. Journal of Cardiovascular Magnetic Resonance, 23(1), 1–16. https://doi.org/10.1186/s12968-021-00742-3
1067 Tyrankiewicz, U., Kwiatkowski, G., & Chlopicki, S. (2021). Preservation of Left Ventricle Peak and Mean Pulse Flow Blood Velocity Despite Progressive Deterioration of Cardiac Function in a Chronic Heart Failure Murine Model. Journal of Physiology and Pharmacology, 72(4), 595–603. https://doi.org/10.26402/jpp.2021.4.11
1066 Frederiksen, C. A., Waziri, F., Ringgaard, S., Mellemkjær, S., Clemmensen, T. S., Hjortdal, V. E., Nielsen, S. L., & Poulsen, S. H. (2021). Reverse remodeling of tricuspid valve morphology and function in chronic thromboembolic pulmonary hypertension patients following pulmonary thromboendarterectomy: a cardiac magnetic resonance imaging and invasive hemodynamic study. BMC Cardiovascular Disorders, 21(1), 1–10. https://doi.org/10.1186/s12872-021-02248-3
1065 Qi, Y., Dasa, O., Maden, M., Vohra, R., Batra, A., Walter, G., Yarrow, J. F., Aranda, J. M., Raizada, M. K., & Pepine, C. J. (2021). Functional heart recovery in an adult mammal, the spiny mouse. International Journal of Cardiology, 338, 196–203. https://doi.org/10.1016/j.ijcard.2021.06.015
1064 Lang, C. I., Vasudevan, P., Döring, P., Gäbel, R., Lemcke, H., Lindner, T., Steinhoff, G., Krause, B. J., Vollmar, B., Meinel, F. G., Yücel, S., Öner, A., Ince, H., & David, R. (2021). Expedient assessment of post-infarct remodeling by native cardiac magnetic resonance imaging in mice. Scientific Reports, 11(1), 1–10. https://doi.org/10.1038/s41598-021-91096-4
1063 Kwiatkowski, G., & Kozerke, S. (2021). Quantitative myocardial first-pass perfusion imaging of CO2-induced vasodilation in rats. NMR in Biomedicine, 34(12), 1–12. https://doi.org/10.1002/nbm.4593
1062 Fan, Y., Coll-Font, J., van den Boomen, M., Kim, J. H., Chen, S., Eder, R. A., Roche, E. T., & Nguyen, C. T. (2021). Characterization of Exercise-Induced Myocardium Growth Using Finite Element Modeling and Bayesian Optimization. Frontiers in Physiology, 12(August), 1–14. https://doi.org/10.3389/fphys.2021.694940
1061 Gerach, T., Schuler, S., Fröhlich, J., Lindner, L., Kovacheva, E., Moss, R., Wülfers, E. M., Seemann, G., Wieners, C., & Loewe, A. (2021). Electro-mechanical whole-heart digital twins: A fully coupled multi-physics approach. Mathematics, 9(11), 1–33. https://doi.org/10.3390/math9111247
1060 Maleckar, M. M., Myklebust, L., Uv, J., Florvaag, P. M., Strøm, V., Glinge, C., Jabbari, R., Vejlstrup, N., Engstrøm, T., Ahtarovski, K., Jespersen, T., Tfelt-Hansen, J., Naumova, V., & Arevalo, H. (2021). Combined In-silico and Machine Learning Approaches Toward Predicting Arrhythmic Risk in Post-infarction Patients. Frontiers in Physiology, 12(November), 1–14. https://doi.org/10.3389/fphys.2021.745349
1059 Laganà, M. M., Jakimovski, D., Bergsland, N., Dwyer, M. G., Baglio, F., & Zivadinov, R. (2021). Measuring aqueduct of sylvius cerebrospinal fluid flow in multiple sclerosis using different software. Diagnostics, 11(2). https://doi.org/10.3390/diagnostics11020325
1058 Albatat, M., Arevalo, H., Bergsland, J., Strøm, V., Balasingham, I., & Odland, H. H. (2021). Optimal pacing sites in cardiac resynchronization by left ventricular activation front analysis. Computers in Biology and Medicine, 128(September 2020). https://doi.org/10.1016/j.compbiomed.2020.104159
1057 Kjeld, T., Møller, J., Fogh, K., Hansen, E. G., Arendrup, H. C., Isbrand, A. B., Zerahn, B., Højberg, J., Ostenfeld, E., Thomsen, H., Gormsen, L. C., & Carlsson, M. (2021). Cardiac hypoxic resistance and decreasing lactate during maximum apnea in elite breath hold divers. Scientific Reports, 11(1), 1–10. https://doi.org/10.1038/s41598-021-81797-1
1056 Salvador, M., Fedele, M., Africa, P. C., Sung, E., Dede’, L., Prakosa, A., Chrispin, J., Trayanova, N., & Quarteroni, A. (2021). Electromechanical modeling of human ventricles with ischemic cardiomyopathy: numerical simulations in sinus rhythm and under arrhythmia. Computers in Biology and Medicine, 136, 104674. https://doi.org/10.1016/j.compbiomed.2021.104674
1055 Li, H., Qu, Y., Metze, P., Sommerfeld, F., Just, S., Abaei, A., & Rasche, V. (2021). Quantification of Biventricular Myocardial Strain Using CMR Feature Tracking: Reproducibility in Small Animals. BioMed Research International, 2021, 1–14. https://doi.org/10.1155/2021/8492705
1054 Goolaub, D. S., Marini, D., Seed, M., & Macgowan, C. K. (2021). Human fetal blood flow quantification with magnetic resonance imaging and motion compensation. Journal of Visualized Experiments, 2021(167), 1–13. https://doi.org/10.3791/61953
1053 Alabed, S., Saunders, L., Garg, P., Shahin, Y., Alandejani, F., Rolf, A., Puntmann, V. O., Nagel, E., Wild, J. M., Kiely, D. G., & Swift, A. J. (2021). Myocardial T1-mapping and extracellular volume in pulmonary arterial hypertension: A systematic review and meta-analysis. Magnetic Resonance Imaging, 79(November 2020), 66–75. https://doi.org/10.1016/j.mri.2021.03.011
1052 Morciano, G., Pedriali, G., Bonora, M., Pavasini, R., Mikus, E., Calvi, S., Bovolenta, M., Lebiedzinska-Arciszewska, M., Pinotti, M., Albertini, A., Wieckowski, M. R., Giorgi, C., Ferrari, R., Galluzzi, L., Campo, G., & Pinton, P. (2021). A naturally occurring mutation in ATP synthase subunit c is associated with increased damage following hypoxia/reoxygenation in STEMI patients. Cell Reports, 35(2), 108983. https://doi.org/10.1016/j.celrep.2021.108983
1051 Namisaki, H., Nabeshima, Y., Kitano, T., Otani, K., & Takeuchi, M. (2021). Prognostic Value of the Right Ventricular Ejection Fraction, Assessed by Fully Automated Three-Dimensional Echocardiography: A Direct Comparison of Analyses Using Right Ventricular–Focused Views versus Apical Four-Chamber Views. Journal of the American Society of Echocardiography, 34(2), 117–126. https://doi.org/10.1016/j.echo.2020.09.016
1050 Priya, S., Aggarwal, T., Ward, C., Bathla, G., Jacob, M., Gerke, A., Hoffman, E. A., & Nagpal, P. (2021). Radiomics side experiments and DAFIT approach in identifying pulmonary hypertension using Cardiac MRI derived radiomics based machine learning models. Scientific Reports, 11(1), 1–13. https://doi.org/10.1038/s41598-021-92155-6
1049 Shar, J. A., Keswani, S. G., Grande-Allen, K. J., & Sucosky, P. (2021). Computational Assessment of Valvular Dysfunction in Discrete Subaortic Stenosis: A Parametric Study. Cardiovascular Engineering and Technology, 12(6), 559–575. https://doi.org/10.1007/s13239-020-00513-8
1048 Dimasi, C. G., Lazniewska, J., Plush, S. E., Saini, B. S., Holman, S. L., Cho, S. K. S. S., Wiese, M. D., Sorvina, A., Macgowan, C. K., Seed, M., Brooks, D. A., Morrison, J. L., & Darby, J. R. T. T. (2021). Redox ratio in the left ventricle of the growth restricted fetus is positively correlated with cardiac output. Journal of Biophotonics, 14(12), 1–13. https://doi.org/10.1002/jbio.202100157
1047 Lam, H. Van, Groth, M., Mir, T., Bannas, P., Lund, G. K., Jahnke, C. M., Warncke, M., Maas, K.-J., Adam, G., Herrmann, J., & Tahir, E. (2021). Impact of chest wall deformity on cardiac function by CMR and feature-tracking strain analysis in paediatric patients with Marfan syndrome. European Radiology, 31(6), 3973–3982. https://doi.org/10.1007/s00330-020-07616-9
1046 Fadil, H., Totman, J. J., Hausenloy, D. J., Ho, H. H., Joseph, P., Low, A. F. H., Richards, A. M., Chan, M. Y., & Marchesseau, S. (2021). A deep learning pipeline for automatic analysis of multi-scan cardiovascular magnetic resonance. Journal of Cardiovascular Magnetic Resonance, 23(1), 1–13. https://doi.org/10.1186/s12968-020-00695-z
1045 Corrado, P. A., Barton, G. P., Macdonald, J. A., François, C. J., Eldridge, M. W., Goss, K. N., & Wieben, O. (2021). Altered right ventricular filling at four-dimensional flow mri in young adults born prematurely. Radiology: Cardiothoracic Imaging, 3(3). https://doi.org/10.1148/ryct.2021200618
1044 Hedeer, F., Ostenfeld, E., Hedén, B., Prinzen, F. W., Arheden, H., Carlsson, M., & Engblom, H. (2021). To what extent are perfusion defects seen by myocardial perfusion SPECT in patients with left bundle branch block related to myocardial infarction, ECG characteristics, and myocardial wall motion? Journal of Nuclear Cardiology, 28(6), 2910–2922. https://doi.org/10.1007/s12350-020-02180-7
1043 Boumpouli, M., Sauvage, E. L., Capelli, C., Schievano, S., & Kazakidi, A. (2021). Characterization of Flow Dynamics in the Pulmonary Bifurcation of Patients With Repaired Tetralogy of Fallot: A Computational Approach. Frontiers in Cardiovascular Medicine, 8(September). https://doi.org/10.3389/fcvm.2021.703717
1042 Corrado, P. A., Barton, G. P., Francois, C. J., Wieben, O., & Goss, K. N. (2021). Sildenafil administration improves right ventricular function on 4D flow MRI in young adults born premature. American Journal of Physiology – Heart and Circulatory Physiology, 320(6), H2295–H2304. https://doi.org/10.1152/AJPHEART.00824.2020
1041 Cheng, W., Sun, Y., Wu, Q., Ooi, K., Feng, Y., Xia, C., & Zhu, D. (2021). Paraventricular Nucleus P2X7 Receptors Aggravate Acute Myocardial Infarction Injury via ROS-Induced Vasopressin-V1b Activation in Rats. Neuroscience Bulletin, 37(5), 641–656. https://doi.org/10.1007/s12264-021-00641-8
1040 Bordones-Crom, A., Patnaik, S. S., Menon, P. G., Murali, S., & Finol, E. (2021). Morphological analysis of the right ventricular endocardial wall in pulmonary hypertension. Journal of Biomechanical Engineering, 143(7), 1–8. https://doi.org/10.1115/1.4050457
1039 Liu, X., Kao, E., Haraldsson, H., Ballweber, M., Martin, A., Li, Y., Wang, Y., & Saloner, D. (2021). Identification of intra-individual variation in intracranial arterial flow by MRI and the effect on computed hemodynamic descriptors. Magnetic Resonance Materials in Physics, Biology and Medicine, 34(5), 659–666. https://doi.org/10.1007/s10334-021-00917-0
1038 Kero, T., Johansson, E., Engström, M., Eggers, K. M., Johansson, L., Ahlström, H., & Lubberink, M. (2021). Evaluation of quantitative CMR perfusion imaging by comparison with simultaneous 15O-water-PET. Journal of Nuclear Cardiology, 28(4), 1252–1266. https://doi.org/10.1007/s12350-019-01810-z
1037 Romano, S., Dell’atti, D., Judd, R. M., Kim, R. J., Weinsaft, J. W., Kim, J., Heitner, J. F., Hahn, R. T., & Farzaneh-Far, A. (2021). Prognostic Value of Feature-Tracking Right Ventricular Longitudinal Strain in Severe Functional Tricuspid Regurgitation: A Multicenter Study. JACC: Cardiovascular Imaging, 14(8), 1561–1568. https://doi.org/10.1016/j.jcmg.2021.02.009
1036 Stoeck, C. T., von Deuster, C., Fuetterer, M., Polacin, M., Waschkies, C. F., van Gorkum, R. J. H. H., Kron, M., Fleischmann, T., Cesarovic, N., Weisskopf, M., & Kozerke, S. (2021). Cardiovascular magnetic resonance imaging of functional and microstructural changes of the heart in a longitudinal pig model of acute to chronic myocardial infarction. Journal of Cardiovascular Magnetic Resonance, 23(1), 1–14. https://doi.org/10.1186/s12968-021-00794-5
1035 Pruitt, A., Rich, A., Liu, Y., Jin, N., Potter, L., Tong, M., Rajpal, S., Simonetti, O., & Ahmad, R. (2021). Fully self-gated whole-heart 4D flow imaging from a 5-minute scan. Magnetic Resonance in Medicine, 85(3), 1222–1236. https://doi.org/10.1002/mrm.28491
1034 Wei, Z. A., Si, B., Ge, X., Zhu, M., Cetatoiu, M. A., Tian, C., Sun, L., & Qiao, B. (2021). Is Doppler Echocardiography Adequate for Surgical Planning of Single Ventricle Patients? Cardiovascular Engineering and Technology, 12(6), 606–617. https://doi.org/10.1007/s13239-021-00533-y
1033 Barton, G. P., Corrado, P. A., Francois, C. J., Chesler, N. C., Eldridge, M. W., Wieben, O., & Goss, K. N. (2021). Exaggerated cardiac contractile response to hypoxia in adults born preterm. Journal of Clinical Medicine, 10(6), 1–14. https://doi.org/10.3390/jcm10061166
1032 He, Y., Northrup, H., Roy-Chaudhury, P., Cheung, A. K., Berceli, S. A., & Shiu, Y. T. (2021). Analyses of hemodialysis arteriovenous fistula geometric configuration and its associations with maturation and reintervention. Journal of Vascular Surgery, 73(5), 1778–1786.e1. https://doi.org/10.1016/j.jvs.2020.09.033
1031 Houard, L., Militaru, S., Tanaka, K., Pasquet, A., Vancraeynest, D., Vanoverschelde, J. L., Pouleur, A. C., & Gerber, B. L. (2021). Test-retest reliability of left and right ventricular systolic function by new and conventional echocardiographic and cardiac magnetic resonance parameters. European Heart Journal Cardiovascular Imaging, 22(10), 1157–1167. https://doi.org/10.1093/ehjci/jeaa206
1030 Canu, M., Margerit, L., Mekhdoul, I., Broisat, A., Riou, L., Djaileb, L., Charlon, C., Jankowski, A., Magnesa, M., Augier, C., Marlière, S., Salvat, M., Casset, C., Maurin, M., Saunier, C., Fagret, D., Ghezzi, C., Vanzetto, G., & Barone-Rochette, G. (2021). Prognosis of coronary atherosclerotic burden in non-ischemic dilated cardiomyopathies. Journal of Clinical Medicine, 10(10), 1–13. https://doi.org/10.3390/jcm10102183
1029 Kirkham, A. A., Paterson, D. I., Haykowsky, M. J., Beaudry, R. I., Mackey, J. R., Pituskin, E., Grenier, J. G., & Thompson, R. B. (2021). Aerobic Fitness Is Related to Myocardial Fibrosis Post-Anthracycline Therapy. Medicine and Science in Sports and Exercise, 53(2), 267–274. https://doi.org/10.1249/MSS.0000000000002469
1028 Priya, S., Aggarwal, T., Ward, C., & Jacob, M. (2021). Cardiac MRI derived radiomics based machine learning (ML) models in identifying pulmonary hypertension (PH) – Impact of segmentation , radiomics side experiments and DAFIT approach on model performance. Research Square, Ml, 1–21.
1027 Brundin, M., Wågsäter, D., Alehagen, U., & Carlhäll, C. J. (2021). Circulating microRNA-29-5p can add to the discrimination between dilated cardiomyopathy and ischaemic heart disease. ESC Heart Failure, 8(5), 3865–3874. https://doi.org/10.1002/ehf2.13458
1026 Pöyhönen, P., Kuusisto, J., Pirinen, J., Räty, H., Lehmonen, L., Paakkanen, R., Martinez-Majander, N., Gerdts, E., Putaala, J., Sinisalo, J., & Järvinen, V. (2021). Right atrium and cryptogenic ischaemic stroke in the young: A case-control study. Open Heart, 8(1), 2–10. https://doi.org/10.1136/openhrt-2021-001596
1025 Kirkham, A. A., Goonasekera, M. V., Mattiello, B. C., Grenier, J. G., Haykowsky, M. J., & Thompson, R. B. (2021). Reliability and reproducibility of cardiac MRI quantification of peak exercise function with long-Axis views. PLoS ONE, 16(2 February), 1–12. https://doi.org/10.1371/journal.pone.0245912
1024 Wenzel, K., Krämer, E., Geertz, B., Carrier, L., Felix, S. B., Könemann, S., & Schlossarek, S. (2021). A Transgenic Mouse Model of Eccentric Left Ventricular Hypertrophy With Preserved Ejection Fraction Exhibits Alterations in the Autophagy-Lysosomal Pathway. Frontiers in Physiology, 12(April), 1–12. https://doi.org/10.3389/fphys.2021.614878
1023 Houard, L., Amzulescu, M. S., Colin, G., Langet, H., Militaru, S., Rousseau, M. F., Ahn, S. A., Vanoverschelde, J. L. J., Pouleur, A. C., & Gerber, B. L. (2021). Prognostic Value of Pulmonary Transit Time by Cardiac Magnetic Resonance on Mortality and Heart Failure Hospitalization in Patients With Advanced Heart Failure and Reduced Ejection Fraction. Circulation: Cardiovascular Imaging, 14(1), E011680. https://doi.org/10.1161/CIRCIMAGING.120.011680
1022 Perera‐gonzalez, M., Kiss, A., Kaiser, P., Holzweber, M., Nagel, F., Watzinger, S., Acar, E., Szabo, P. L., Gonçalves, I. F., Weber, L., Pilz, P. M., Budinsky, L., Helbich, T., & Podesser, B. K. (2021). The role of tenascin c in cardiac reverse remodeling following banding–debanding of the ascending aorta. International Journal of Molecular Sciences, 22(4), 1–14. https://doi.org/10.3390/ijms22042023
1021 Kuusisto, J. K., Pöyhönen, P. A. K. K. K., Pirinen, J., Lehmonen, L. J., Räty, H. P., Majander, N. M., Putaala, J., Sinisalo, J., Järvinen, V., Martinez-Majander, N., Putaala, J., Sinisalo, J., & Järvinen, V. (2021). Revisiting left atrial volumetry by magnetic resonance imaging: the role of atrial shape and 3D angle between left ventricular and left atrial axis. BMC Medical Imaging, 21(1), 1–12. https://doi.org/10.1186/s12880-021-00701-5
1020 Zhang, J.-M., Han, H., Tan, R.-S., Chai, P., Fam, J. M., Teo, L., Chin, C. Y., Ong, C. C., Low, R., Chandola, G., Leng, S., Huang, W., Allen, J. C., Baskaran, L., Kassab, G. S., Low, A. F. H., Chan, M. Y.-Y., Chan, K. H., Loh, P. H., … Zhong, L. (2021). Diagnostic Performance of Fractional Flow Reserve From CT Coronary Angiography With Analytical Method. Frontiers in Cardiovascular Medicine, 8(October), 1–12. https://doi.org/10.3389/fcvm.2021.739633
1019 Mariager, C. Ø., Hansen, E. S. S., Bech, S. K., Eiskjær, H., Nielsen, P. F., Ringgaard, S., Kimose, H. H., & Laustsen, C. (2021). Development of a human heart-sized perfusion system for metabolic imaging studies using hyperpolarized [1-13C]pyruvate MRI. Magnetic Resonance in Medicine, 85(6), 3510–3521. https://doi.org/10.1002/mrm.28639
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1016 Kwiatkowski, G., Bar, A., Jasztal, A., & Chłopicki, S. (2021). MRI-based in vivo detection of coronary microvascular dysfunction before alterations in cardiac function induced by short-term high-fat diet in mice. Scientific Reports, 11(1), 1–13. https://doi.org/10.1038/s41598-021-98401-1
1015 Kylkilahti, T. M., Berends, E., Ramos, M., Shanbhag, N. C., Töger, J., Markenroth Bloch, K., & Lundgaard, I. (2021). Achieving brain clearance and preventing neurodegenerative diseases—A glymphatic perspective. Journal of Cerebral Blood Flow and Metabolism, 41(9), 2137–2149. https://doi.org/10.1177/0271678X20982388
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1013 Sepúlveda-Martínez, A., Steding-Ehrenborg, K., Rodríguez-López, M., Ostenfeld, E., Valenzuela-Alcaráz, B., Heiberg, E., Gratacós, E., Prat-González, S., Crispi, F., & Hedström, E. (2021). Atrioventricular plane displacement versus mitral and tricuspid annular plane systolic excursion: A comparison between cardiac magnetic resonance and M-mode echocardiography. Clinical Physiology and Functional Imaging, 41(3), 262–270. https://doi.org/10.1111/cpf.12693
1012 Lim, C., Blaszczyk, E., Riazy, L., Wiesemann, S., Schüler, J., von Knobelsdorff-Brenkenhoff, F., & Schulz-Menger, J. (2021). Quantification of myocardial strain assessed by cardiovascular magnetic resonance feature tracking in healthy subjects—influence of segmentation and analysis software. European Radiology, 31(6), 3962–3972. https://doi.org/10.1007/s00330-020-07539-5
1011 Szabó, P. L., Ebner, J., Koenig, X., Hamza, O., Watzinger, S., Trojanek, S., Abraham, D., Todt, H., Kubista, H., Schicker, K., Remy, S., Anegon, I., Kiss, A., Podesser, B. K., & Hilber, K. (2021). Cardiovascular phenotype of the DMDmdx rat – A suitable animal model for Duchenne muscular dystrophy. DMM Disease Models and Mechanisms, 14(2). https://doi.org/10.1242/DMM.047704
1010 Nordén, E. S., Bendiksen, B. A., Andresen, H., Bergo, K. K., Espe, E. K., Hasic, A., Hauge-Iversen, I. M., Veras, I., Hussain, R. I., Sjaastad, I., Christensen, G., & Cataliotti, A. (2021). Sacubitril/valsartan ameliorates cardiac hypertrophy and preserves diastolic function in cardiac pressure overload. ESC Heart Failure, 8(2), 918–927. https://doi.org/10.1002/ehf2.13177
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1008 Vach, M., Vogelhuber, J., Weber, M., Sprinkart, A. M., Pieper, C. C., Block, W., Kuetting, D., Attenberger, U. I., & Luetkens, J. A. (2021). Feasibility of CT-derived myocardial strain measurement in patients with advanced cardiac valve disease. Scientific Reports, 11(1), 1–10. https://doi.org/10.1038/s41598-021-88294-5
1007 Hopper, S. E., Cuomo, F., Ferruzzi, J., Burris, N. S., Roccabianca, S., Humphrey, J. D., & Figueroa, C. A. (2021). Comparative Study of Human and Murine Aortic Biomechanics and Hemodynamics in Vascular Aging. Frontiers in Physiology, 12(October), 1–14. https://doi.org/10.3389/fphys.2021.746796
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1005 Johnston, L., Allen, R., Hall Barrientos, P., Mason, A., & Kazakidi, A. (2021). Hemodynamic Abnormalities in the Aorta of Turner Syndrome Girls. Frontiers in Cardiovascular Medicine, 8(June), 1–18. https://doi.org/10.3389/fcvm.2021.670841
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1003 Pewowaruk, R. J., Barton, G. P., Johnson, C., Ralphe, J. C., Francois, C. J., Lamers, L., & Roldán-Alzate, A. (2021). Stent interventions for pulmonary artery stenosis improve bi-ventricular flow efficiency in a swine model. Journal of Cardiovascular Magnetic Resonance, 23(1), 1–11. https://doi.org/10.1186/s12968-021-00709-4
1002 Tunac, J., Valeriote, F., Media, J., & Knight, R. (2021). Novel Animal Model for Ventricular Ejection Fraction Measured by MRI. Cardiology and Cardiovascular Research, 5(3), 147. https://doi.org/10.11648/j.ccr.20210503.13
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1000 Tengbom, J., Cederström, S., Verouhis, D., Böhm, F., Eriksson, P., Folkersen, L., Gabrielsen, A., Jernberg, T., Lundman, P., Persson, J., Saleh, N., Settergren, M., Sörensson, P., Tratsiakovich, Y., Tornvall, P., Jung, C., & Pernow, J. (2021). Arginase 1 is upregulated at admission in patients with ST-elevation myocardial infarction. Journal of Internal Medicine, 290(5), 1061–1070. https://doi.org/10.1111/joim.13358
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996 Osokina, A., Karetnikova, V., Polikutina, O., Ivanova, A., Gruzdeva, O., Dyleva, Y., Kokov, A., Brel, N., Pecherina, T., & Barbarash, O. (2021). Prognostic potential of cardiac structural and functional parameters and N-terminal propeptide of type III procollagen in predicting cardiac fibrosis one year after myocardial infarction with preserved left ventricular ejection fraction. Aging, 13(1), 194–203. https://doi.org/10.18632/aging.202495
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993 Benitez, J., Fontanarosa, D., Wang, J., Paritala, P. K., McGahan, T., Lloyd, T., & Li, Z. (2021). Evaluating the Impact of Calcification on Plaque Vulnerability from the Aspect of Mechanical Interaction Between Blood Flow and Artery Based on MRI. Annals of Biomedical Engineering, 49(4), 1169–1182. https://doi.org/10.1007/s10439-020-02655-1
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991 Al-Talabany, S., Mohan, M., Weir-McCall, J., Gandy, S., Singh, J. S. S. S., Mordi, I. R., Baig, F., Maria J Choy, A., George, J., Houston, J. G., Struthers, A. D., Khan, F., & Lang, C. C. (2021). Effect of metformin on epicardial adipose tissue in patients with coronary artery disease without diabetes: A cardiac MRI substudy of the MET-remodel trial. Obesity Medicine, 24(May), 100349. https://doi.org/10.1016/j.obmed.2021.100349
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989 Charest-Pekeski, A. J., Sheta, A., Taniguchi, L., McVey, M. J., Floh, A., Sun, L., Aujla, T., Cho, S. K. S. S., Ren, J., Crawford-Lean, L., Foreman, C., Lim, J. M., Saini, B. S., Estrada, M., Lam, A., Belik, J., Mroczek, D., Quinn, M., Holman, S. L., … Haller, C. (2021). Achieving sustained extrauterine life: Challenges of an artificial placenta in fetal pigs as a model of the preterm human fetus. Physiological Reports, 9(5), 1–20. https://doi.org/10.14814/phy2.14742
988 Österberg, A. W., Östman-Smith, I., Jablonowski, R., Carlsson, M., Green, H., Gunnarsson, C., Liuba, P., & Fernlund, E. (2021). High ECG Risk-Scores Predict Late Gadolinium Enhancement on Magnetic Resonance Imaging in HCM in the Young. Pediatric Cardiology, 42(3), 492–500. https://doi.org/10.1007/s00246-020-02506-9
987 Mauger, C. A., Govil, S., Chabiniok, R., Gilbert, K., Hegde, S., Hussain, T., McCulloch, A. D., Occleshaw, C. J., Omens, J., Perry, J. C., Pushparajah, K., Suinesiaputra, A., Zhong, L., & Young, A. A. (2021). Right-left ventricular shape variations in tetralogy of Fallot: associations with pulmonary regurgitation. Journal of Cardiovascular Magnetic Resonance, 23(1), 1–14. https://doi.org/10.1186/s12968-021-00780-x
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985 Andersson, M., & Karlsson, M. (2021). Characterization of anisotropic turbulence behavior in pulsatile blood flow. Biomechanics and Modeling in Mechanobiology, 20(2), 491–506. https://doi.org/10.1007/s10237-020-01396-3
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982 Priya, S., Aggarwal, T., Ward, C., Bathla, G., Jacob, M., Gerke, A., Hoffman, E. A., & Nagpal, P. (2021). Radiomics detection of pulmonary hypertension via texture‐based assessments of cardiac mri: A machine‐learning model comparison—cardiac mri radiomics in pulmonary hypertension. Journal of Clinical Medicine, 10(9). https://doi.org/10.3390/jcm10091921
981 Gonzales, R. A., Seemann, F., Lamy, J., Arvidsson, P. M., Heiberg, E., Murray, V., & Peters, D. C. (2021). Automated left atrial time-resolved segmentation in MRI long-axis cine images using active contours. BMC Medical Imaging, 21(1), 1–12. https://doi.org/10.1186/s12880-021-00630-3
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979 Kristiansen, M., Lindén, C., Qvarlander, S., Wåhlin, A., Ambarki, K., Hallberg, P., Eklund, A., & Jóhannesson, G. (2021). Feasibility of MRI to assess differences in ophthalmic artery blood flow rate in normal tension glaucoma and healthy controls. Acta Ophthalmologica, 99(5), e679–e685. https://doi.org/10.1111/aos.14673
978 Chouhan, M. D., Fitzke, H. E., Bainbridge, A., Atkinson, D., Halligan, S., Davies, N., Lythgoe, M. F., Mookerjee, R. P., Menys, A., & Taylor, S. A. (2021). Cardiac-induced liver deformation as a measure of liver stiffness using dynamic imaging without magnetization tagging—preclinical proof-of-concept, clinical translation, reproducibility and feasibility in patients with cirrhosis. Abdominal Radiology, 46(10), 4660–4670. https://doi.org/10.1007/s00261-021-03168-8
977 Hughes, E. J., Price, A. N., McCabe, L., Hiscocks, S., Waite, L., Green, E., Hutter, J., Pegoretti, K., Cordero-Grande, L., Edwards, A. D., Hajnal, J. V., & Rutherford, M. A. (2021). The effect of maternal position on venous return for pregnant women during MRI. NMR in Biomedicine, 34(4), 1–11. https://doi.org/10.1002/nbm.4475
976 Akil, S., Hedeer, F., Oddstig, J., Olsson, T., Jögi, J., Erlinge, D., Carlsson, M., Arheden, H., Hindorf, C., & Engblom, H. (2021). Appropriate coronary revascularization can be accomplished if myocardial perfusion is quantified by positron emission tomography prior to treatment decision. Journal of Nuclear Cardiology, 28(4), 1664–1672. https://doi.org/10.1007/s12350-019-01938-y
975 Ren, J., Darby, J. R. T. T., Lock, M. C., Holman, S. L., Saini, B. S., Bradshaw, E. L., Orgeig, S., Perumal, S. R., Wiese, M. D., Macgowan, C. K., Seed, M., & Morrison, J. L. (2021). Impact of maternal late gestation undernutrition on surfactant maturation, pulmonary blood flow and oxygen delivery measured by magnetic resonance imaging in the sheep fetus. Journal of Physiology, 599(20), 4705–4724. https://doi.org/10.1113/JP281292
974 Hair, J., Timmins, L., El Sayed, R., Samady, H., & Oshinski, J. (2021). Effect of Patient-Specific Coronary Flow Reserve Values on the Accuracy of MRI-Based Virtual Fractional Flow Reserve. Frontiers in Cardiovascular Medicine, 8(July), 1–9. https://doi.org/10.3389/fcvm.2021.663767
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971 Küstner, T., Bustin, A., Jaubert, O., Hajhosseiny, R., Masci, P. G., Neji, R., Botnar, R., & Prieto, C. (2021). Fully self-gated free-running 3D Cartesian cardiac CINE with isotropic whole-heart coverage in less than 2 min. NMR in Biomedicine, 34(1), 1–13. https://doi.org/10.1002/nbm.4409
970 Polacin, M., Karolyi, M., Eberhard, M., Gotschy, A., Baessler, B., Alkadhi, H., Kozerke, S., & Manka, R. (2021). Segmental strain analysis for the detection of chronic ischemic scars in non-contrast cardiac MRI cine images. Scientific Reports, 11(1), 1–11. https://doi.org/10.1038/s41598-021-90283-7
969 Kwiatkowski, G., Bar, A., Jasztal, A., & Chłopicki, S. (2021). OPEN MRI ‑ based in vivo detection of coronary microvascular dysfunction before alterations in cardiac function induced by short ‑ term high ‑ fat diet in mice. Scientific Reports, 1–13. https://doi.org/10.1038/s41598-021-98401-1
968 Aujla, T., Darby, J. R. T. T., Saini, B. S., Lock, M. C., Holman, S. L., Bradshaw, E. L., Perumal, S. R., McInnes, S. J. P. P., Voelcker, N. H., Wiese, M. D., Macgowan, C. K., Seed, M., & Morrison, J. L. (2021). Impact of resveratrol-mediated increase in uterine artery blood flow on fetal haemodynamics, blood pressure and oxygenation in sheep. Experimental Physiology, 106(5), 1166–1180. https://doi.org/10.1113/EP089237
967 Antonuccio, M. N., Mariotti, A., Fanni, B. M., Capellini, K., Capelli, C., Sauvage, E., & Celi, S. (2021). Effects of Uncertainty of Outlet Boundary Conditions in a Patient-Specific Case of Aortic Coarctation. Annals of Biomedical Engineering, 49(12), 3494–3507. https://doi.org/10.1007/s10439-021-02841-9
966 Naby, A. R. A. El, Elmasry, M. M., Salama, M. M. A. E., Setiha, M. E. S. El, & Elsheikh, R. G. (2021). Assessment of Myocardial Salvage Index after Primary Percutaneous Intervention of ST Elevation Myocardial Infarction Patients Using Myocardial Magnetic Resonance Imaging Techniques. Journal of Advances in Medicine and Medical Research, 33(19), 126–138. https://doi.org/10.9734/jammr/2021/v33i1931087
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964 Truedsson, F., Polte, C. L., Gao, S. A., Johnsson, Å. A., Bech-Hanssen, O., & Lagerstrand, K. M. (2021). Importance of complex blood flow in the assessment of aortic regurgitation severity using phase contrast magnetic resonance imaging. International Journal of Cardiovascular Imaging, 37(12), 3561–3572. https://doi.org/10.1007/s10554-021-02341-w
963 Jasmin, N. H., Thin, M. Z., Johnson, R. D., Jackson, L. H., Roberts, T. A., David, A. L., Lythgoe, M. F., Yang, P. C., Davidson, S. M., Camelliti, P., & Stuckey, D. J. (2021). Myocardial Viability Imaging using Manganese-Enhanced MRI in the First Hours after Myocardial Infarction. Advanced Science, 8(11), 1–12. https://doi.org/10.1002/advs.202003987
962 Demkes, E. J., Wenker, S., Silvis, M. J. M. M., van Nieuwburg, M. M. J. J., Visser, M. J., Jansen, M. S., Brans, M. A. D. D., Velema, E., Sluijter, J. P. G. G., Hoefer, I. E., de Kleijn, D. P. V. V, Timmers, L., & de Jager, S. C. A. A. (2021). Neutral Effects of Combined Treatment With GLP-1R Agonist Exenatide and MR Antagonist Potassium Canrenoate on Cardiac Function in Porcine and Murine Chronic Heart Failure Models. Frontiers in Pharmacology, 12(July), 1–11. https://doi.org/10.3389/fphar.2021.702326
961 Barbosa, M. F., Contti, M. M., de Andrade, L. G. M., Mauricio, A. del C. V., Ribeiro, S. M., & Szarf, G. (2021). Feature-tracking cardiac magnetic resonance left ventricular global longitudinal strain improves 6 months after kidney transplantation associated with reverse remodeling, not myocardial tissue characteristics. International Journal of Cardiovascular Imaging, 37(10), 3027–3037. https://doi.org/10.1007/s10554-021-02284-2
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930 Xiao, L., Salem, J. E., Clauss, S., Hanley, A., Bapat, A., Hulsmans, M., Iwamoto, Y., Wojtkiewicz, G., Cetinbas, M., Schloss, M. J., Tedeschi, J., Lebrun-Vignes, B., Lundby, A., Sadreyev, R. I., Moslehi, J., Nahrendorf, M., Ellinor, P. T., & Milan, D. J. (2020). Ibrutinib-Mediated Atrial Fibrillation Attributable to Inhibition of C-Terminal Src Kinase. Circulation, 142(25), 2443–2455. https://doi.org/10.1161/CIRCULATIONAHA.120.049210
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874 Castelhano, J., Ribeiro, B., Sanches, M., Graça, B., Saraiva, J., Oliveiros, B., Neves, C., Rodrigues, T., Sereno, J., Gonçalves, S., Ferreira, M. J., Seiça, R., Matafome, P., & Castelo-Branco, M. (2020). A rat model of enhanced glycation mimics cardiac phenotypic components of human type 2 diabetes : A translational study using MRI. Journal of Diabetes and Its Complications, 34(5). https://doi.org/10.1016/j.jdiacomp.2020.107554
873 Moussavi, A., Mietsch, M., Drummer, C., Behr, R., Mylius, J., & Boretius, S. (2020). Cardiac MRI in common marmosets revealing age-dependency of cardiac function. Scientific Reports, 10(1), 1–10. https://doi.org/10.1038/s41598-020-67157-5
872 Guo, H., Karakikes, I., Chang, H. Y., Wu, J. C., Wilson, K. D., Ameen, M., Guo, H., Abilez, O. J., Tian, L., & Mumbach, M. R. (2020). Article Endogenous Retrovirus-Derived lncRNA BANCR Promotes Cardiomyocyte Migration in Humans and Non-human Primates ll Article Endogenous Retrovirus-Derived lncRNA BANCR Promotes Cardiomyocyte Migration in Humans and Non-human Primates. Developmental Cell, 54(6), 694–709.e9. https://doi.org/10.1016/j.devcel.2020.07.006
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870 Leong, C. N., Dokos, S., Andriyana, A., Liew, Y. M., Chan, B. T., Abdul Aziz, Y. F., Chee, K. H., Sridhar, G. S., & Lim, E. (2020). The role of end-diastolic myocardial fibre stretch on infarct extension. International Journal for Numerical Methods in Biomedical Engineering, 36(1), 1–17. https://doi.org/10.1002/cnm.3291
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866 Bucius, P., Erley, J., Tanacli, R., Zieschang, V., Giusca, S., Korosoglou, G., Steen, H., Stehning, C., Pieske, B., Pieske-Kraigher, E., Schuster, A., Lapinskas, T., & Kelle, S. (2020). Comparison of feature tracking, fast-SENC, and myocardial tagging for global and segmental left ventricular strain. ESC Heart Failure, 7(2), 523–532. https://doi.org/10.1002/ehf2.12576
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862 Riedlbauchová, L., Adla, T., Suchánek, V., Ložek, M., Tomis, J., Hozman, J., Tomek, V., Veselka, J., & Janoušek, J. (2020). Is left bundle branch block pattern on the ECG caused by variable ventricular activation sequence? PACE – Pacing and Clinical Electrophysiology, 43(5), 486–494. https://doi.org/10.1111/pace.13914
861 Mendieta, J. B., Fontanarosa, D., Wang, J., Paritala, P. K., McGahan, T., Lloyd, T., & Li, Z. (2020). The importance of blood rheology in patient-specific computational fluid dynamics simulation of stenotic carotid arteries. Biomechanics and Modeling in Mechanobiology, 19(5), 1477–1490. https://doi.org/10.1007/s10237-019-01282-7
860 Lejeune, S., Roy, C., Ciocea, V., Slimani, A., de Meester, C., Amzulescu, M., Pasquet, A., Vancraeynest, D., Beauloye, C., Vanoverschelde, J. L., Gerber, B. L., & Pouleur, A. C. (2020). Right Ventricular Global Longitudinal Strain and Outcomes in Heart Failure with Preserved Ejection Fraction. Journal of the American Society of Echocardiography, 33(8), 973–984.e2. https://doi.org/10.1016/j.echo.2020.02.016
859 Santer, D., Nagel, F., Gonçalves, I. F., Kaun, C., Wojta, J., Fagyas, M., Krššák, M., Balogh, Á., Papp, Z., Tóth, A., Bánhegyi, V., Trescher, K., Kiss, A., & Podesser, B. K. (2020). Tenascin-C aggravates ventricular dilatation and angiotensin-converting enzyme activity after myocardial infarction in mice. ESC Heart Failure, 7(5), 2113–2122. https://doi.org/10.1002/ehf2.12794
858 Kihlberg, J., Gupta, V., Haraldsson, H., Sigfridsson, A., Sarvari, S. I., Ebbers, T., & Engvall, J. E. (2020). Clinical validation of three cardiovascular magnetic resonance techniques to measure strain and torsion in patients with suspected coronary artery disease. Journal of Cardiovascular Magnetic Resonance, 22(1), 1–11. https://doi.org/10.1186/s12968-020-00684-2
857 Starekova, J., Thottakara, T., Lund, G. K., Welsch, G. H., Brunner, F. J., Muellerleile, K., Adam, G., Regier, M., & Tahir, E. (2020). Increased myocardial mass and attenuation of myocardial strain in professional male soccer players and competitive male triathletes. International Journal of Cardiovascular Imaging, 36(11), 2187–2197. https://doi.org/10.1007/s10554-020-01918-1
856 Tamayo, M., Martín-Nunes, L., Val-Blasco, A., Maria, M. J., Navarro-García, J. A., Lage, E., Prieto, P., Ruiz-Hurtado, G., Fernández-Velasco, M., & Delgado, C. (2020). Beneficial effects of paricalcitol on cardiac dysfunction and remodelling in a model of established heart failure. British Journal of Pharmacology, 177(14), 3273–3290. https://doi.org/10.1111/bph.15048
855 Gyöngyösi, M., Lukovic, D., Zlabinger, K., Spannbauer, A., Gugerell, A., Pavo, N., Traxler, D., Pils, D., Maurer, G., Jakab, A., Riesenhuber, M., Pircher, A., Winkler, J., & Bergler-Klein, J. (2020). Liposomal doxorubicin attenuates cardiotoxicity via induction of interferon-related DNA damage resistance. Cardiovascular Research, 116(5), 970–982. https://doi.org/10.1093/cvr/cvz192
854 Deyranlou, A., Naish, J. H., Miller, C. A., Revell, A., & Keshmiri, A. (2020). Numerical Study of Atrial Fibrillation Effects on Flow Distribution in Aortic Circulation. Annals of Biomedical Engineering, 48(4), 1291–1308. https://doi.org/10.1007/s10439-020-02448-6
853 Conley, A. C., Karayanidis, F., Jolly, T. A. D. D., Yang, M. H., & Hsieh, S. (2020). Cerebral Arterial Pulsatility and Global White Matter Microstructure Impact Spatial Working Memory in Older Adults With and Without Cardiovascular Risk Factors. Frontiers in Aging Neuroscience, 12(August), 1–10. https://doi.org/10.3389/fnagi.2020.00245
852 Sjöberg, P., Ostenfeld, E., Hedström, E., Arheden, H., Gustafsson, R., Nozohoor, S., & Carlsson, M. (2020). Changes in left and right ventricular longitudinal function after pulmonary valve replacement in patients with Tetralogy of Fallot. American Journal of Physiology. Heart and Circulatory Physiology, 318(2), H345–H353. https://doi.org/10.1152/ajpheart.00417.2019
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846 Pilz, P. M., Lang, M., Hamza, O., Szabo, P. L., Inci, M., Kramer, A. M., Koch, M., Huber, J., Podesser, B. K., & Kiss, A. (2020). Semi-minimal invasive method to induce myocardial infarction in rats and the assessment of cardiac function by an isolated working heart system. Journal of Visualized Experiments, 2020(160), 1–16. https://doi.org/10.3791/61033
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842 Jenner, J., Sörensson, P., Pernow, J., Caidahl, K., & Eriksson, M. J. (2019). Contrast Enhancement and Image Quality Influence Two- and Three-dimensional Echocardiographic Determination of Left Ventricular Volumes: Comparison With Magnetic Resonance Imaging. Clinical Medicine Insights: Cardiology, 13. https://doi.org/10.1177/1179546819831980
841 Kočková, R., Línková, H., Hlubocká, Z., Pravečková, A., Polednová, A., Súkupová, L., Bláha, M., Malý, J., Honsová, E., Sedmera, D., & Pěnička, M. (2019). New imaging markers of clinical outcome in asymptomatic patients with severe aortic regurgitation. Journal of Clinical Medicine, 8(10), 1–14. https://doi.org/10.3390/jcm8101654
840 Lehmonen, L., Kaasalainen, T., Atula, S., Mustonen, T., & Holmström, M. (2019). Myocardial tissue characterization in patients with hereditary gelsolin (AGel) amyloidosis using novel cardiovascular magnetic resonance techniques. International Journal of Cardiovascular Imaging, 35(2), 351–358. https://doi.org/10.1007/s10554-019-01570-4
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838 Wu, V. C. C., Kitano, T., Nabeshima, Y., Otani, K., Chu, P. H., & Takeuchi, M. (2019). Optimal threshold of three-dimensional echocardiographic fully automated software for quantification of left ventricular volumes and ejection fraction: Comparison with cardiac magnetic resonance disk-area summation method and feature tracking method. PLoS ONE, 14(1), 1–16. https://doi.org/10.1371/journal.pone.0211154
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