Publications Using Segment

Publications using Segment

This list was last updated September 2014. If you find something missing on this page, please report to support@medviso.com

[1] P. A. Cain, M. Ugander, J. Palmer, M. Carlsson, E. Heiberg, and H. Arheden, Quantitative polar representation of left ventricular myocardial perfusion, function and viability using SPECT and cardiac magnetic resonance: initial results, Clin Physiol Funct Imaging 25(4) pp. 215-22, 2005.

[2] T. Edvardsen and B. D. Rosen, Why do we need magnetic resonance imaging in cardiology?, Scand Cardiovasc J 39(5) pp. 260-3, 2005.

[3] H. Engblom, E. Hedstrom, E. Heiberg, G. S. Wagner, O. Pahlm, and H. Arheden, Size and transmural extent of first-time reperfused myocardial infarction assessed by cardiac magnetic resonance can be estimated by 12-lead electrocardiogram, Am Heart J 150(5) p 920, 2005.

[4] E. Heiberg, H. Engblom, J. Engvall, E. Hedstrom, M. Ugander, and H. Arheden, Semi-automatic quantification of myocardial infarction from delayed contrast enhanced magnetic resonance imaging, Scand Cardiovasc J 39(5) pp. 267-75, 2005.

[5] E. Heiberg, L. Wigstrom, M. Carlsson, A. F. Bolger, and M. Karlsson, Time Resolved Three-dimensional Automated Segmentation of the Left Ventricle. In Proceedings of IEEE Computers in Cardiology 2005(32), pp. 599-602, Lyon, France, 2005.

[6] A. Stempien-Otero, A. Plawman, J. Meznarich, T. Dyamenahalli, G. Otsuka, and D. A. Dichek, Mechanisms of cardiac fibrosis induced by urokinase plasminogen activator, J Biol Chem 281(22) pp. 15345-51, 2006.

[7] A. Stewart, U. Dyamenahalli, S. B. Greenberg, and J. Drummond-Webb, Ductus arteriosus aneurysm with community-acquired methicillin-resistant Staphylococcus aureus infection and spontaneous rupture: a potentially fatal quandary, Pediatrics 117(6) pp. e1259-62, 2006.

[8] J. Svensson, R. Gårdhagen, E. Heiberg, T. Ebbers, D. Loyd, T. Länne, and M. Karlsson, Feasibility of Patient Specific Aortic Blood Flow CFD Simulation. In Proceedings of MICCAI, pp. 77-86, Copenhagen, 2006.

[9] I. Banerjee, J. W. Fuseler, R. L. Price, T. K. Borg, and T. A. Baudino, Determination of cell types and numbers during cardiac development in the neonatal and adult rat and mouse, Am J Physiol Heart Circ Physiol 293(3) pp. H1883-91, 2007.

[10] G. S. Camastra, L. Cacciotti, F. Marconi, S. Sbarbati, B. Pironi, and G. Ansalone, Late enhancement detected by cardiac magnetic resonance imaging in acute myocarditis mimicking acute myocardial infarction: location patterns and lack of correlation with systolic function, J Cardiovasc Med (Hagerstown) 8(12) pp. 1029-33, 2007.

[11] M. Carlsson, M. Ugander, E. Heiberg, and H. Arheden, The quantitative relationship between longitudinal and radial function in left, right, and total heart pumping in humans, Am J Physiol Heart Circ Physiol 293(1) pp. H636-44, 2007.

[12] M. Carlsson, M. Ugander, H. Mosen, T. Buhre, and H. Arheden, Atrioventricular plane displacement is the major contributor to left ventricular pumping in healthy adults, athletes, and patients with dilated cardiomyopathy, Am J Physiol Heart Circ Physiol 292(3) pp. H1452-9, 2007.

[13] U. Dyamenahalli, B. Abraham, E. Fontenot, V. Prasad, and M. Imamura, Pathologic aneurysmal dilation of the ascending aorta and dilation of the main pulmonary artery in patients with Kabuki syndrome: valve-sparing aortic root replacement, Congenit Heart Dis 2(6) pp. 424-8, 2007.

[14] H. Engblom, H. Arheden, J. E. Foster, and T. N. Martin, Myocardial infarct quantification: is magnetic resonance imaging ready to serve as a gold standard for electrocardiography?, J Electrocardiol 40(3) pp. 243-5, 2007.

[15] H. Engblom, M. B. Carlsson, E. Hedstrom, E. Heiberg, M. Ugander, G. S. Wagner, and H. Arheden, The endocardial extent of reperfused first-time myocardial infarction is more predictive of pathologic Q waves than is infarct transmurality: a magnetic resonance imaging study, Clin Physiol Funct Imaging 27(2) pp. 101-8, 2007.

[16] W. D. Gilson and D. L. Kraitchman, Cardiac magnetic resonance imaging in small rodents using clinical 1.5 T and 3.0 T scanners, Methods 43(1) pp. 35-45, 2007.

[17] E. Hedstrom, K. Astrom-Olsson, H. Ohlin, F. Frogner, M. Carlsson, T. Billgren, S. Jovinge, P. Cain, G. S. Wagner, and H. Arheden, Peak CKMB and cTnT accurately estimates myocardial infarct size after reperfusion, Scand Cardiovasc J 41(1) pp. 44-50, 2007.

[18] E. Heiberg, H. Engblom, M. Ugander, and H. Arheden, Automated Calculation of Infarct Transmurality,IEEE Computers in Cardiology. Durham, USA, 2007.

[19] M. Imamura, U. Dyamenahalli, R. Sachdeva, E. R. Kokoska, and R. D. Jaquiss, Hypoplastic left heart syndrome, interrupted inferior vena cava, biliary atresia, Ann Thorac Surg 84(5) pp. 1746-8, 2007.

[20] J. Kosman, N. Carmean, E. M. Leaf, K. Dyamenahalli, and J. A. Bassuk, The motif of SPARC that inhibits DNA synthesis is not a nuclear localization signal, J Mol Biol 371(4) pp. 883-901, 2007.

[21] J. Kosman, N. Carmean, E. M. Leaf, K. Dyamenahalli, and J. A. Bassuk, Translocation of fibroblast growth factor-10 and its receptor into nuclei of human urothelial cells, J Cell Biochem 102(3) pp. 769-85, 2007.

[22] W. A. McKamie, M. L. Schmitz, C. E. Johnson, T. Ray, G. B. Sanford, U. Dyamenahalli, and M. Imamura, Superior vena cava perforation in a child from a lawnmower projectile, Clin Pediatr (Phila) 46(9) pp. 847-9, 2007.

[23] R. Petzina, M. Ugander, L. Gustafsson, H. Engblom, J. Sjogren, R. Hetzer, R. Ingemansson, H. Arheden, and M. Malmsjo, Hemodynamic effects of vacuum-assisted closure therapy in cardiac surgery: assessment using magnetic resonance imaging, J Thorac Cardiovasc Surg 133(5) pp. 1154-62, 2007.

[24] A. Sigfridsson, J. P. Kvitting, H. Knutsson, and L. Wigstrom, Five-dimensional MRI incorporating simultaneous resolution of cardiac and respiratory phases for volumetric imaging, J Magn Reson Imaging 25(1) pp. 113-21, 2007.

[25] E. X. Wu, Y. Wu, J. M. Nicholls, J. Wang, S. Liao, S. Zhu, C. P. Lau, and H. F. Tse, MR diffusion tensor imaging study of postinfarct myocardium structural remodeling in a porcine model, Magn Reson Med 58(4) pp. 687-95, 2007.

[26] U. I. Attenberger, S. P. Sourbron, M. Notohamiprodjo, K. P. Lodemann, C. G. Glaser, M. F. Reiser, S. O. Schoenberg, and H. J. Michaely, MR-based semi-automated quantification of renal functional parameters with a two-compartment model–an interobserver analysis, Eur J Radiol 65(1) pp. 59-65, 2008.

[27] M. Carlsson, H. Arheden, C. B. Higgins, and M. Saeed, Magnetic resonance imaging as a potential gold standard for infarct quantification, J Electrocardiol, 2008.

[28] M. Carlsson, N. F. Osman, P. C. Ursell, A. J. Martin, and M. Saeed, Quantitative MR measurements of regional and global left ventricular function and strain after intramyocardial transfer of VM202 into infarcted swine myocardium, Am J Physiol Heart Circ Physiol 295(2) pp. H522-32, 2008.

[29] M. Carlsson and M. Saeed, Intracoronary injection of contrast media maps the territory of the coronary artery: an MRI technique for assessing the effects of locally delivered angiogenic therapies, Acad Radiol 15(11) pp. 1354-9, 2008.

[30] T. Y. Chow, J. S. Cheung, Y. Wu, H. Guo, K. C. Chan, E. S. Hui, and E. X. Wu, Measurement of common carotid artery lumen dynamics during the cardiac cycle using magnetic resonance TrueFISP cine imaging, Journal of Magnetic Resonance Imaging 28(6) pp. 1527-1532, 2008.

[31] C. Ciofolo and M. Fradkin, Segmentation of pathologic hearts in long-axis late-enhancement MRI, Med Image Comput Comput Assist Interv Int Conf Med Image Comput Comput Assist Interv 11(Pt 1) pp. 186-93, 2008.

[32] F. Dawoud, G. S. Wagner, G. Moody, and B. M. Horacek, Using inverse electrocardiography to image myocardial infarction–reflecting on the 2007 PhysioNet/Computers in Cardiology Challenge, J Electrocardiol 41(6) pp. 630-5, 2008.

[33] A. D. Furtado, M. Carlsson, M. Wintermark, K. Ordovas, and M. Saeed, Identification of residual ischemia, infarction, and microvascular impairment in revascularized myocardial infarction using 64-slice MDCT, Contrast Media Mol Imaging 3(5) pp. 198-206, 2008.

[34] K. Golman, J. S. Petersson, P. Magnusson, E. Johansson, P. Akeson, C. M. Chai, G. Hansson, and S. Mansson, Cardiac metabolism measured noninvasively by hyperpolarized 13C MRI, Magn Reson Med 59(5) pp. 1005-13, 2008.

[35] M. Gotberg, G. K. Olivecrona, H. Engblom, M. Ugander, J. van der Pals, E. Heiberg, H. Arheden, and D. Erlinge, Rapid short-duration hypothermia with cold saline and endovascular cooling before reperfusion reduces microvascular obstruction and myocardial infarct size, BMC Cardiovasc Disord 8 p 7, 2008.

[36] N. Hakacova, A. M. Robinson, C. W. Olson, R. H. Selvester, and G. S. Wagner, The relationship between mitral papillary muscles positions and characteristics of the QRS complex, J Electrocardiol 41(6) pp. 487-90, 2008.

[37] H. Haraldsson, L. Wigstrom, M. Lundberg, A. F. Bolger, J. Engvall, T. Ebbers, and J. P. Kvitting, Improved estimation and visualization of two-dimensional myocardial strain rate using MR velocity mapping, J Magn Reson Imaging 28(3) pp. 604-11, 2008.

[38] E. Heiberg, M. Ugander, H. Engblom, M. Gotberg, G. K. Olivecrona, D. Erlinge, and H. Arheden, Automated quantification of myocardial infarction from MR images by accounting for partial volume effects: animal, phantom, and human study, Radiology 246(2) pp. 581-8, 2008.

[39] T. Hoashi, G. Matsumiya, Y. Sakata, S. Kogaki, and Y. Sawa, A novel system of assessing myocardial recovery during left ventricular support: report of a case, Surg Today 38(2) pp. 154-6, 2008.

[40] A. Jacquier, D. Revel, and M. Saeed, MDCT of the myocardium: a new contribution to ischemic heart disease, Acad Radiol 15(4) pp. 477-87, 2008.

[41] E. Mayumi, A. Nishitani, Y. Yuki, T. Nakatsu, S. Toyonaga, K. Mashima, H. Ogawa, S. Hirohata, S. Usui, R. Shinohata, K. Sakaguchi, and S. Kusachi, Increased blood pressure levels relative to subjective feelings of intensity of exercise determined with the Borg scale in male patients with hypertension, Clin Exp Hypertens 30(3) pp. 191-201, 2008.

[42] R. Petzina, M. Ugander, L. Gustafsson, H. Engblom, R. Hetzer, H. Arheden, R. Ingemansson, and M. Malmsjo, Topical negative pressure therapy of a sternotomy wound increases sternal fluid content but does not affect internal thoracic artery blood flow: assessment using magnetic resonance imaging, J Thorac Cardiovasc Surg 135(5) pp. 1007-13, 2008.

[43] L. Rosendahl, P. Blomstrand, E. Heiberg, J. Ohlsson, P. G. Bjorklund, B. M. Ahlander, and J. Engvall, Computer-assisted calculation of myocardial infarct size shortens the evaluation time of contrast-enhanced cardiac MRI, Clin Physiol Funct Imaging 28(1) pp. 1-7, 2008.

[44] L. Rosendahl, P. Blomstrand, J. L. Ohlsson, P. G. Bjorklund, B. M. Ahlander, S. A. Starck, and J. E. Engvall, Late gadolinium uptake demonstrated with magnetic resonance in patients where automated PERFIT analysis of myocardial SPECT suggests irreversible perfusion defect, BMC Med Imaging 8 p 17, 2008.

[45] M. Saeed, A. Martin, P. Ursell, L. Do, M. Bucknor, C. B. Higgins, and D. Saloner, MR assessment of myocardial perfusion, viability, and function after intramyocardial transfer of VM202, a new plasmid human hepatocyte growth factor in ischemic swine myocardium, Radiology 249(1) pp. 107-18, 2008.

[46] M. Ugander, B. Ekmehag, and H. Arheden, The relationship between left ventricular ejection fraction and infarct size assessed by MRI, Scand Cardiovasc J 42(2) pp. 137-45, 2008.

[47] L. Bacharova, A. Mateasik, J. Carnicky, J. F. Ubachs, E. Hedstrom, H. Arheden, and H. Engblom, The Dipolar ElectroCARdioTOpographic (DECARTO)-like method for graphic presentation of location and extent of area at risk estimated from ST-segment deviations in patients with acute myocardial infarction, J Electrocardiol, 2009.

[48] A. M. Beek, O. Bondarenko, F. Afsharzada, and A. C. Van Rossum, Quantification of late gadolinium enhanced CMR in viability assessment in chronic ischemic heart disease: a comparison to functional outcome, Journal of Cardiovascular Magnetic Resonance 11(1) p 6, 2009.

[49] K. M. Bloch, M. Carlsson, H. Arheden, and F. Stahlberg, Quantifying coronary sinus flow and global LV perfusion at 3T, BMC Med Imaging 9 p 9, 2009.

[50] L. Buckmiller, U. Dyamenahalli, and G. T. Richter, Propranolol for airway hemangiomas: case report of novel treatment, Laryngoscope 119(10) pp. 2051-4, 2009.

[51] A. G. Cabrera, U. Dyamenahalli, J. Gossett, P. Prodhan, W. R. Morrow, M. Imamura, R. D. Jaquiss, and A. T. Bhutta, Preoperative lymphopenia is a predictor of postoperative adverse outcomes in children with congenital heart disease, J Thorac Cardiovasc Surg 138(5) pp. 1172-9, 2009.

[52] G. S. Camastra, L. Cacciotti, R. Semeraro, F. Marconi, S. Sbarbati, M. Danti, S. Della Sala, and G. Ansalone, Contrast-enhanced MRI to recognize myocarditis with STEMI presentation, Intern Emerg Med 4(2) pp. 183-5, 2009.

[53] M. Carlsson, A. J. Martin, P. C. Ursell, D. Saloner, and M. Saeed, Magnetic resonance imaging quantification of left ventricular dysfunction following coronary microembolization, Magn Reson Med 61(3) pp. 595-602, 2009.

[54] M. Carlsson, J. F. Ubachs, E. Hedstrom, E. Heiberg, S. Jovinge, and H. Arheden, Myocardium at risk after acute infarction in humans on cardiac magnetic resonance: quantitative assessment during follow-up and validation with single-photon emission computed tomography, JACC Cardiovasc Imaging 2(5) pp. 569-76, 2009.

[55] M. Carlsson, P. C. Ursell, D. Saloner, and M. Saeed, Multidetector computed tomography for characterization of calcium deposits in reperfused myocardial infarction, Acta Radiol 50(4) pp. 396-405, 2009.

[56] M. Carlsson, M. Wilson, A. J. Martin, and M. Saeed, Myocardial microinfarction after coronary microembolization in swine: MR imaging characterization, Radiology 250(3) pp. 703-13, 2009.

[57] M. Danti, S. Sbarbati, N. Alsadi, A. Di Filippo, G. Gangitano, L. Giglio, V. Salvini, M. Amoruso, G. S. Camastra, G. Ansalone, and S. Della Sala, Cardiac magnetic resonance imaging: diagnostic value and utility in the follow-up of patients with acute myocarditis mimicking myocardial infarction, Radiol Med 114(2) pp. 229-38, 2009.

[58] D. Dicks, D. Saloner, A. Martin, M. Carlsson, and M. Saeed, Percutaneous transendocardial VEGF gene therapy: MRI guided delivery and characterization of 3D myocardial strain, Int J Cardiol, 2009.

[59] D. L. Dicks, M. Carlsson, E. Heiberg, A. Martin, D. Saloner, H. Arheden, and M. Saeed, Persistent decline in longitudinal and radial strain after coronary microembolization detected on velocity encoded phase contrast magnetic resonance imaging, J Magn Reson Imaging 30(1) pp. 69-76, 2009.

[60] H. Engblom, E. Hedstrom, E. Heiberg, G. S. Wagner, O. Pahlm, and H. Arheden, Rapid initial reduction of hyperenhanced myocardium after reperfused first myocardial infarction suggests recovery of the peri-infarction zone: one-year follow-up by MRI, Circ Cardiovasc Imaging 2(1) pp. 47-55, 2009.

[61] L. Galeotti, D. G. Strauss, J. F. Ubachs, O. Pahlm, and E. Heiberg, Development of an automated method for display of ischemic myocardium from simulated electrocardiograms, J Electrocardiol 42(2) pp. 204-12, 2009.

[62] S. C. Gnyawali, S. Roy, M. McCoy, S. Biswas, and C. K. Sen, Remodeling of the ischemia-reperfused murine heart: 11.7-T cardiac magnetic resonance imaging of contrast-enhanced infarct patches and transmurality, Antioxid Redox Signal 11(8) pp. 1829-39, 2009.

[63] S. C. Gnyawali, S. Roy, M. McCoy, S. Biswas, and C. K. Sen, Forum Original Research Communication Remodeling of the Ischemia-Reperfused Murine Heart: 11.7-T Cardiac Magnetic Resonance Imaging of Contrast-Enhanced Infarct Patches and Transmurality, ANTIOXIDANTS & REDOX SIGNALING 11(8), 2009.

[64] Y. B. Goldsmith, J. Liu, J. Chou, J. Hoffman, R. L. Comenzo, and R. M. Steingart, Frequencies and types of arrhythmias in patients with systemic light-chain amyloidosis with cardiac involvement undergoing stem cell transplantation on telemetry monitoring, Am J Cardiol 104(7) pp. 990-4, 2009.

[65] A. HajiRassouliha and A. Ayatollahi, Automatic Obtaining of Left Ventricular Area and Analyzing the Area Changes. In Proceedings of Digital Image Processing, 2009 International Conference on, pp. 95-99, 2009.

[66] A. HajiRassouliha and A. Ayatollahi, Estimation of Changes in Left Ventricular Wall Thickness in Full Short Axis CMRI to Diagnosis Myocardium Infarctions. In Proceedings of Digital Image Processing, 2009 International Conference on, pp. 90-94, 2009.

[67] N. Hakacova, Cardiac imaging of anatomy and electrocardiology–and in hand in future steps, J Electrocardiol 42(2) pp. 103-5, 2009.

[68] N. Hakacova, G. D. Bass, C. W. Olson, A. M. Robinson, and R. H. Selvester, Simulation of the QRS complex using papillary muscle positions as the site of early activation in human subjects, J Electrocardiol 42(2) pp. 158-64, 2009.

[69] N. Hakacova, A. M. Robinson, C. Maynard, G. S. Wagner, and S. F. Idriss, Determination of the mitral papillary muscle positions by the septal-to-free wall arc ratio method, Clin Physiol Funct Imaging 29(3) pp. 181-6, 2009.

[70] N. Hakacova, G. S. Wagner, and S. F. Idriss, Electroanatomic relationships in patients with primum atrioventricular septal defect, JACC Cardiovasc Imaging 2(12) pp. 1357-65, 2009.

[71] M. L. Handoko, R. R. Lamberts, E. M. Redout, F. S. de Man, C. Boer, W. S. Simonides, W. J. Paulus, N. Westerhof, C. P. Allaart, and A. Vonk-Noordegraaf, Right ventricular pacing improves right heart function in experimental pulmonary arterial hypertension: a study in the isolated heart, Am J Physiol Heart Circ Physiol 297(5) pp. H1752-9, 2009.

[72] B. Hedén, E. Persson, M. Carlsson, O. Pahlm, and H. Arheden, Disappearance of myocardial perfusion defects on prone SPECT imaging: Comparison with cardiac magnetic resonance imaging in patients without established coronary artery disease, BMC Medical Imaging 9(1) p 16, 2009.

[73] E. Hedstrom, H. Engblom, F. Frogner, K. Astrom-Olsson, H. Ohlin, S. Jovinge, and H. Arheden, Infarct evolution in man studied in patients with first-time coronary occlusion in comparison to different species – implications for assessment of myocardial salvage, J Cardiovasc Magn Reson 11(1) p 38, 2009.

[74] P. Iassonov, T. Gebrenegus, and M. Tuller, Segmentation of X-ray computed tomography images of porous materials: A crucial step for characterization and quantitative analysis of pore structures, Water Resources Research 45(9) p W09415, 2009.

[75] B. P. Iliopoulou and B. T. Huber, Emergence of chronic Lyme arthritis: putting the breaks on CD28 costimulation, Immunopharmacol Immunotoxicol 31(2) pp. 180-5, 2009.

[76] M. Imamura, A. M. Dossey, P. Prodhan, M. Schmitz, E. Frazier, U. Dyamenahalli, A. Bhutta, W. R. Morrow, and R. D. Jaquiss, Bridge to cardiac transplant in children: Berlin Heart versus extracorporeal membrane oxygenation, Ann Thorac Surg 87(6) pp. 1894-901; discussion 1901, 2009.

[77] K. Kazmierczak, Y. Xu, M. Jones, G. Guzman, O. M. Hernandez, W. G. Kerrick, and D. Szczesna-Cordary, The role of the N-terminus of the myosin essential light chain in cardiac muscle contraction, J Mol Biol 387(3) pp. 706-25, 2009.

[78] H. W. Kim, I. Klem, D. J. Shah, E. Wu, S. N. Meyers, M. A. Parker, A. L. Crowley, R. O. Bonow, R. M. Judd, and R. J. Kim, Unrecognized non-Q-wave myocardial infarction: prevalence and prognostic significance in patients with suspected coronary disease, PLoS Med 6(4), 2009.

[79] M. Malmsjo, R. Petzina, M. Ugander, H. Engblom, C. Torbrand, A. Mokhtari, R. Hetzer, H. Arheden, and R. Ingemansson, Preventing heart injury during negative pressure wound therapy in cardiac surgery: assessment using real-time magnetic resonance imaging, J Thorac Cardiovasc Surg 138(3) pp. 712-7, 2009.

[80] E. Maret, Noninvasive Evaluation of Myocardial Ischemia and Left Ventricular Function, PhD Thesis, Institutionen för medicin och hälsa, Klinisk fysiologi, Linköping University, 2009.

[81] E. Maret, T. Todt, L. Brudin, E. Nylander, E. Swahn, J. L. Ohlsson, and J. E. Engvall, Functional measurements based on feature tracking of cine magnetic resonance images identify left ventricular segments with myocardial scar, Cardiovasc Ultrasound 7 p 53, 2009.

[82] I. A. Mendichovszky, M. Cutajar, and I. Gordon, Reproducibility of the aortic input function (AIF) derived from dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) of the kidneys in a volunteer study, European journal of radiology 71(3) pp. 576-581, 2009.

[83] D. P. O’Regan, R. Ahmed, N. Karunanithy, C. Neuwirth, Y. Tan, G. Durighel, J. V. Hajnal, I. Nadra, S. J. Corbett, and S. A. Cook, Reperfusion hemorrhage following acute myocardial infarction: assessment with T2* mapping and effect on measuring the area at risk, Radiology 250(3) pp. 916-22, 2009.

[84] D. P. O’Regan, R. Ahmed, C. Neuwirth, Y. Tan, G. Durighel, J. V. Hajnal, I. Nadra, S. J. Corbett, and S. A. Cook, Cardiac MRI of myocardial salvage at the peri-infarct border zones after primary coronary intervention, Am J Physiol Heart Circ Physiol 297(1) pp. H340-6, 2009.

[85] P. Prodhan, R. T. Fiser, U. Dyamenahalli, J. Gossett, M. Imamura, R. D. Jaquiss, and A. T. Bhutta, Outcomes after extracorporeal cardiopulmonary resuscitation (ECPR) following refractory pediatric cardiac arrest in the intensive care unit, Resuscitation 80(10) pp. 1124-9, 2009.

[86] P. Prodhan, B. Greenberg, A. T. Bhutta, C. Hyde, A. Vankatesan, M. Imamura, R. D. Jaquiss, and U. Dyamenahalli, Recombinant human deoxyribonuclease improves atelectasis in mechanically ventilated children with cardiac disease, Congenit Heart Dis 4(3) pp. 166-73, 2009.

[87] J. Renner, D. Loyd, T. Länne, and M. Karlsson, Is a Flat Inlet Profile Sufficient for WSS Estimation in the Aortic Arch, WSEAS Transactions on Fluid Mechanics 4(4), 2009.

[88] L. Rosendahl, B. M. Ahlander, P. G. Bjorklund, P. Blomstrand, L. Brudin, and J. E. Engvall, Image quality and myocardial scar size determined with magnetic resonance imaging in patients with permanent atrial fibrillation: a comparison of two imaging protocols, Clin Physiol Funct Imaging, 2009.

[89] K. H. Schuleri, G. S. Feigenbaum, M. Centola, E. S. Weiss, J. M. Zimmet, J. Turney, J. Kellner, M. M. Zviman, K. E. Hatzistergos, B. Detrick, J. V. Conte, I. McNiece, C. Steenbergen, A. C. Lardo, and J. M. Hare, Autologous mesenchymal stem cells produce reverse remodelling in chronic ischaemic cardiomyopathy, Eur Heart J 30(22) pp. 2722-32, 2009.

[90] T. R. Skaug, T. Hergum, B. H. Amundsen, T. Skjaerpe, H. Torp, and B. O. Haugen, Quantification of Mitral Regurgitation Using High Pulse Repetition Frequency Three-Dimensional Color Doppler, J Am Soc Echocardiogr, 2009.

[91] H. Soneson, J. F. Ubachs, M. Ugander, H. Arheden, and E. Heiberg, An improved method for automatic segmentation of the left ventricle in myocardial perfusion SPECT, J Nucl Med 50(2) pp. 205-13, 2009.

[92] M. S. Song, A. Hu, U. Dyamenahalli, D. Chitayat, E. J. Winsor, G. Ryan, J. Smallhorn, J. Barrett, S. J. Yoo, and L. K. Hornberger, Extracardiac lesions and chromosomal abnormalities associated with major fetal heart defects: comparison of intrauterine, postnatal and postmortem diagnoses, Ultrasound Obstet Gynecol 33(5) pp. 552-9, 2009.

[93] D. G. Strauss, C. W. Olson, K. C. Wu, E. Heiberg, E. Persson, R. H. Selvester, O. Pahlm, and H. Arheden, Vectorcardiogram synthesized from the 12-lead electrocardiogram to image ischemia, J Electrocardiol 42(2) pp. 190-7, 2009.

[94] D. G. Strauss and R. H. Selvester, The QRS complex–a biomarker that “images” the heart: QRS scores to quantify myocardial scar in the presence of normal and abnormal ventricular conduction, J Electrocardiol 42(1) pp. 85-96, 2009.

[95] K. Sun, N. Stander, C. S. Jhun, Z. Zhang, T. Suzuki, G. Y. Wang, M. Saeed, A. W. Wallace, E. E. Tseng, A. J. Baker, D. Saloner, D. R. Einstein, M. B. Ratcliffe, and J. M. Guccione, A computationally efficient formal optimization of regional myocardial contractility in a sheep with left ventricular aneurysm, J Biomech Eng 131(11) p 111001, 2009.

[96] J. F. Ubachs, H. Engblom, E. Hedstrom, R. H. Selvester, S. A. Knippenberg, G. S. Wagner, A. P. Gorgels, and H. Arheden, Location of myocardium at risk in patients with first-time ST-elevation infarction: comparison among single photon emission computed tomography, magnetic resonance imaging, and electrocardiography, J Electrocardiol 42(2) pp. 198-203, 2009.

[97] M. Ugander, M. Carlsson, and H. Arheden, Short-axis epicardial volume change is a measure of cardiac left ventricular short-axis function which is independent of myocardial wall thickness, Am J Physiol Heart Circ Physiol, 2009.

[98] M. Ugander, E. Jense, and H. Arheden, Pulmonary intravascular blood volume changes through the cardiac cycle in healthy volunteers studied by cardiovascular magnetic resonance measurements of arterial and venous flow, J Cardiovasc Magn Reson 11 p 42, 2009.

[99] G. S. Wagner and N. Hakacova, Electrocardiographic measures of myocardial function and necrosis, JACC Cardiovasc Imaging 2(10) pp. 1195-7, 2009.

[100] Y. Wu, C. W. Chan, J. M. Nicholls, S. Liao, H. F. Tse, and E. X. Wu, MR study of the effect of infarct size and location on left ventricular functional and microstructural alterations in porcine models, J Magn Reson Imaging 29(2) pp. 305-12, 2009.

[101] Y. Wu and E. X. Wu, MR study of postnatal development of myocardial structure and left ventricular function, Journal of Magnetic Resonance Imaging 30(1) pp. 47-53, 2009.

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