Construction of 3D MR image-based computer models of pathologic hearts, augmented with histology and optical fluorescence imaging to characterize action potential propagation
暂无分享,去创建一个
Hervé Delingette | Nicholas Ayache | Maxime Sermesant | Tommaso Mansi | Mihaela Pop | Alexander Dick | Graham A. Wright | Elliot R. McVeigh | Jatin Relan | Jean-Marc Peyrat | Alan Soong | Michael V. Truong | Garry Liu | Paul Fefer | N. Ayache | H. Delingette | E. McVeigh | Maxime Sermesant | Tommaso Mansi | J. Peyrat | J. Relan | M. Pop | G. Wright | P. Fefer | A. Dick | G. Liu | M. Truong | Alan Soong | Garry Liu
[1] Ruben Coronel,et al. Activation Delay After Premature Stimulation in Chronically Diseased Human Myocardium Relates to the Architecture of Interstitial Fibrosis , 2001, Circulation.
[2] Junjie Chen,et al. Image‐based models of cardiac structure in health and disease , 2010, Wiley interdisciplinary reviews. Systems biology and medicine.
[3] Hervé Delingette,et al. Parameter Estimation of a 3D Cardiac Electrophysiology Model Including the Restitution Curve Using Optical and MR Data , 2009 .
[4] M. Janse,et al. Electrophysiological mechanisms of ventricular arrhythmias resulting from myocardial ischemia and infarction. , 1989, Physiological reviews.
[5] L. Younes,et al. Ex vivo 3D diffusion tensor imaging and quantification of cardiac laminar structure , 2005, Magnetic resonance in medicine.
[6] Hervé Delingette,et al. Volumetric Prediction of Cardiac Electrophysiology using a Heart Model Personalised to Surface Data , 2009 .
[7] Natalia Trayanova,et al. Defibrillation of the heart: insights into mechanisms from modelling studies , 2006, Experimental physiology.
[8] James P. Keener,et al. Mathematical physiology , 1998 .
[9] Bruno Taccardi,et al. Epicardial and intramural excitation during ventricular pacing: effect of myocardial structure. , 2008, American journal of physiology. Heart and circulatory physiology.
[10] Vladimir P. Nikolski,et al. Fluorescent real‐time monitoring of HIFU cardiac focal ablation , 2004 .
[11] Hervé Delingette,et al. An electromechanical model of the heart for image analysis and simulation , 2006, IEEE Transactions on Medical Imaging.
[12] Eugene Crystal,et al. An Experimental Framework to Validate 3D Models of Cardiac Electrophysiology Via Optical Imaging and MRI , 2007, FIMH.
[13] P. Ursell,et al. Structural and Electrophysiological Changes in the Epicardial Border Zone of Canine Myocardial Infarcts during Infarct Healing , 1985, Circulation research.
[14] Y. Rudy,et al. Basic mechanisms of cardiac impulse propagation and associated arrhythmias. , 2004, Physiological reviews.
[15] D. Rosenbaum,et al. Role of Structural Barriers in the Mechanism of Alternans-Induced Reentry , 2000, Circulation research.
[16] Mark Potse,et al. A Comparison of Monodomain and Bidomain Reaction-Diffusion Models for Action Potential Propagation in the Human Heart , 2006, IEEE Transactions on Biomedical Engineering.
[17] N. Chattipakorn,et al. Electrophysiological Mechanisms of Ventricular Fibrillation Induction , 2005, Indian pacing and electrophysiology journal.
[18] Eric Kerfoot,et al. Verification of cardiac tissue electrophysiology simulators using an N-version benchmark , 2011, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[19] David Gavaghan,et al. Mathematical models in physiology , 2006, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[20] Peter Hunter,et al. A strategy for integrative computational physiology. , 2005, Physiology.
[21] A. McCulloch,et al. Model-Based Analysis of Optically Mapped Epicardial Activation Patterns and Conduction Velocity , 2000, Annals of Biomedical Engineering.
[22] M. Cerqueira,et al. Standardized myocardial segmentation and nomenclature for tomographic imaging of the heart. A statement for healthcare professionals from the Cardiac Imaging Committee of the Council on Clinical Cardiology of the American Heart Association. , 2002, Journal of nuclear cardiology : official publication of the American Society of Nuclear Cardiology.
[23] Natalia Trayanova. In the spotlight: cardiovascular engineering. , 2011, IEEE reviews in biomedical engineering.
[24] Olivier Bernus,et al. Depth-resolved optical imaging of transmural electrical propagation in perfused heart. , 2007, Optics express.
[25] R. Ideker,et al. Effects of heart isolation, voltage-sensitive dye, and electromechanical uncoupling agents on ventricular fibrillation. , 2003, American journal of physiology. Heart and circulatory physiology.
[26] Simon R. Arridge,et al. Model-Based Imaging of Cardiac Apparent Conductivity and Local Conduction Velocity for Diagnosis and Planning of Therapy , 2008, IEEE Transactions on Medical Imaging.
[27] J J Heger,et al. Sudden cardiac death. , 1998, Circulation.
[28] R. Aliev,et al. A simple two-variable model of cardiac excitation , 1996 .
[29] Michael A. E. Schneider,et al. Clinical experience with a novel multielectrode basket catheter in right atrial tachycardias. , 1999, Circulation.
[30] H A Fozzard,et al. The conducted action potential. Models and comparison to experiments. , 1983, Biophysical journal.
[31] Gernot Plank,et al. Automatically Generated, Anatomically Accurate Meshes for Cardiac Electrophysiology Problems , 2009, IEEE Transactions on Biomedical Engineering.
[32] G. Salama,et al. Optical Imaging of the Heart , 2004, Circulation research.
[33] M. Nash,et al. Electromechanical model of excitable tissue to study reentrant cardiac arrhythmias. , 2004, Progress in biophysics and molecular biology.
[34] Hervé Delingette,et al. Building maps of local apparent conductivity of the epicardium with a 2-D electrophysiological model of the heart , 2006, IEEE Transactions on Biomedical Engineering.
[35] S Niederer,et al. Inter-model consistency and complementarity: learning from ex-vivo imaging and electrophysiological data towards an integrated understanding of cardiac physiology. , 2011, Progress in biophysics and molecular biology.
[36] Andrew J. Pullan,et al. Solving the cardiac bidomain equations for discontinuous conductivities , 2006, IEEE Transactions on Biomedical Engineering.
[37] Katherine C. Wu,et al. Infarct Tissue Heterogeneity by Magnetic Resonance Imaging Identifies Enhanced Cardiac Arrhythmia Susceptibility in Patients With Left Ventricular Dysfunction , 2007, Circulation.
[38] C. Henriquez,et al. Validation of three-dimensional conduction models using experimental mapping: are we getting closer? , 1998, Progress in biophysics and molecular biology.
[39] Gernot Plank,et al. Image-based models of cardiac structure with applications in arrhythmia and defibrillation studies. , 2009, Journal of electrocardiology.
[40] R. Ideker,et al. Estimation of conduction velocity vector fields from epicardial mapping data , 1998, IEEE Transactions on Biomedical Engineering.
[41] A. Garfinkel,et al. A simulation study of the effects of cardiac anatomy in ventricular fibrillation. , 2004, The Journal of clinical investigation.
[42] Suneet Mittal,et al. Effect of beta-adrenergic blockade on dynamic electrical restitution in vivo. , 2004, American journal of physiology. Heart and circulatory physiology.
[43] Hervé Delingette,et al. Preliminary Validation Using in vivo Measures of a Macroscopic Electrical Model of the Heart , 2003, IS4TH.
[44] Kumaraswamy Nanthakumar,et al. Optical mapping of Langendorff-perfused human hearts: establishing a model for the study of ventricular fibrillation in humans. , 2007, American journal of physiology. Heart and circulatory physiology.
[45] Edward Vigmond,et al. Towards predictive modelling of the electrophysiology of the heart , 2009, Experimental physiology.
[46] B. Surawicz,et al. Cycle length effect on restitution of action potential duration in dog cardiac fibers. , 1983, The American journal of physiology.
[47] Gernot Plank,et al. Development of an anatomically detailed MRI-derived rabbit ventricular model and assessment of its impact on simulations of electrophysiological function , 2009, American journal of physiology. Heart and circulatory physiology.
[48] J. Goldberger,et al. Transcutaneous multielectrode basket catheter for endocardial mapping and ablation of ventricular tachycardia in the pig. , 1997, Circulation.
[49] Nicholas I. M. Gould,et al. Trust Region Methods , 2000, MOS-SIAM Series on Optimization.
[50] Richard A Gray,et al. Effect of Action Potential Duration and Conduction Velocity Restitution and Their Spatial Dispersion on Alternans and the Stability of Arrhythmias , 2002, Journal of cardiovascular electrophysiology.
[51] James S. Duncan,et al. Medical Image Analysis , 1999, IEEE Pulse.
[52] Frederick J Vetter,et al. Epicardial Fiber Organization in Swine Right Ventricle and Its Impact on Propagation , 2005, Circulation research.
[53] A V Panfilov,et al. A guide to modelling cardiac electrical activity in anatomically detailed ventricles. , 2008, Progress in biophysics and molecular biology.
[54] R. Clayton. Computational models of normal and abnormal action potential propagation in cardiac tissue: linking experimental and clinical cardiology , 2001, Physiological measurement.
[55] G. Salama,et al. Optical Mapping of Repolarization and Refractoriness From Intact Hearts , 1994, Circulation.
[56] Henry R. Halperin,et al. Magnetic Resonance–Based Anatomical Analysis of Scar-Related Ventricular Tachycardia: Implications for Catheter Ablation , 2007, Circulation research.
[57] V. Wedeen,et al. Diffusion Tensor Magnetic Resonance Imaging Mapping the Fiber Architecture Remodeling in Human Myocardium After Infarction: Correlation With Viability and Wall Motion , 2006, Circulation.
[58] Berthold K. P. Horn,et al. Closed-form solution of absolute orientation using unit quaternions , 1987 .
[59] Maxime Sermesant,et al. Stereo Reconstruction of the Epicardium for Optical Fluorescence Imaging , 2006 .
[60] W. Stevenson,et al. Characterization of the Peri-Infarct Zone by Contrast-Enhanced Cardiac Magnetic Resonance Imaging Is a Powerful Predictor of Post–Myocardial Infarction Mortality , 2006, Circulation.
[61] Hong Zhang,et al. Study for relevance of the acute myocardial ischemia to arrhythmia by the optical mapping method , 2007, Physiological measurement.
[62] Hervé Delingette,et al. Cardiac Electrophysiology Model Adjustment Using the Fusion of MR and Optical Imaging , 2008, MICCAI.
[63] J M de Bakker,et al. Reentry as a cause of ventricular tachycardia in patients with chronic ischemic heart disease: electrophysiologic and anatomic correlation. , 1988, Circulation.
[64] W. R. Mills,et al. Optical mapping of late myocardial infarction in rats. , 2006, American journal of physiology. Heart and circulatory physiology.
[65] David J. Christini,et al. Effect of β-adrenergic blockade on dynamic electrical restitution in vivo , 2004 .
[66] Yin Wu,et al. MR diffusion tensor imaging study of postinfarct myocardium structural remodeling in a porcine model , 2007, Magnetic resonance in medicine.
[67] Maggie Fung,et al. Electroanatomic Mapping of the Left Ventricle in a Porcine Model of Chronic Myocardial Infarction With Magnetic Resonance–Based Catheter Tracking , 2008, Circulation.
[68] R. Virmani,et al. Sudden cardiac death. , 1987, Human pathology.
[69] Matthew W. Kay,et al. Three-dimensional surface reconstruction and panoramic optical mapping of large hearts , 2004, IEEE Transactions on Biomedical Engineering.
[70] I. LeGrice,et al. Intramural Measurement of Transmembrane Potential in the Isolated Pig Heart: Validation of a Novel Technique , 2005, Journal of cardiovascular electrophysiology.
[71] Hervé Delingette,et al. Simulation of cardiac pathologies using an electromechanical biventricular model and XMR interventional imaging , 2005, Medical Image Anal..
[72] Hervé Delingette,et al. Personalization of a Cardiac Electrophysiology Model Using Optical Mapping and MRI for Prediction of Changes With Pacing , 2011, IEEE Transactions on Biomedical Engineering.
[73] C W Balke,et al. Interaction of fiber orientation and direction of impulse propagation with anatomic barriers in anisotropic canine myocardium. , 1988, Circulation.
[74] P. Hunter,et al. Bioinformatics, multiscale modeling and the IUPS Physiome Project , 2008, Briefings Bioinform..
[75] Hui-Nam Pak,et al. Action potential duration restitution kinetics in human atrial fibrillation. , 2002, Journal of the American College of Cardiology.
[76] Koenraad Van Leemput,et al. Automated segmentation of multiple sclerosis lesions by model outlier detection , 2001, IEEE Transactions on Medical Imaging.
[77] Hervé Delingette,et al. Fusion of optical imaging and MRI for the evaluation and adjustment of macroscopic models of cardiac electrophysiology: A feasibility study , 2009, Medical Image Anal..
[78] K. Sipido,et al. M cells and transmural heterogeneity of action potential configuration in myocytes from the left ventricular wall of the pig heart. , 2000, Cardiovascular research.
[79] D. Rosenbaum,et al. Role of Wavelength Adaptation in the Initiation, Maintenance, and Pharmacologic Suppression of Reentry , 2001, Journal of cardiovascular electrophysiology.
[80] Frederick J Vetter,et al. Optical Action Potential Upstroke Morphology Reveals Near-Surface Transmural Propagation Direction , 2005, Circulation research.
[81] Alexander V Panfilov,et al. Influence of diffuse fibrosis on wave propagation in human ventricular tissue. , 2007, Europace : European pacing, arrhythmias, and cardiac electrophysiology : journal of the working groups on cardiac pacing, arrhythmias, and cardiac cellular electrophysiology of the European Society of Cardiology.
[82] M J Yaffe,et al. Whole‐specimen histopathology: a method to produce whole‐mount breast serial sections for 3‐D digital histopathology imaging , 2007, Histopathology.
[83] M. Cerqueira,et al. Standardized myocardial segmentation and nomenclature for tomographic imaging of the heart: A statement for healthcare professionals from the Cardiac Imaging Committee of the Council on Clinical Cardiology of the American Heart Association , 2002, The international journal of cardiovascular imaging.
[84] A V Panfilov,et al. Modeling of heart excitation patterns caused by a local inhomogeneity. , 1996, Journal of theoretical biology.