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Found 74 results
Author Title [ Type(Desc)] Year
Book Chapter
L. C. Lee, Wenk, J. F., Klepach, D., Kassab, G. S., and Guccione, J. M., Structural-Based Models of Ventricular Myocardium, in Structure-Based Mechanics of Tissues and Organs, Springer US, 2016, pp. 249–263.
Journal Article
M. Genet, Lee, L. C., Kuhl, E., and Guccione, J. M., Abaqus/Standard-based quantification of human cardiac mechanical properties, arXiv preprint arXiv:1602.06161, 2016.
L. C. Lee, Wall, S. T., Klepach, D., Ge, L., Zhang, Z., Lee, R. J., Hinson, A., Gorman, J. H., Gorman, R. C., and Guccione, J. M., Algisyl-LVR™ with coronary artery bypass grafting reduces left ventricular wall stress and improves function in the failing human heart, International journal of cardiology, vol. 168, pp. 2022–2028, 2013.
L. C. Lee, Wenk, J. F., Zhong, L., Klepach, D., Zhang, Z., Ge, L., Ratcliffe, M. B., Zohdi, T. I., Hsu, E., Navia, J. L., and , Analysis of patient-specific surgical ventricular restoration: importance of an ellipsoidal left ventricular geometry for diastolic and systolic function, Journal of Applied Physiology, vol. 115, pp. 136–144, 2013.
L. C. Lee, Genet, M., Dang, A. B., Ge, L., Guccione, J. M., and Ratcliffe, M. B., Applications of computational modeling in cardiac surgery, Journal of cardiac surgery, vol. 29, pp. 293–302, 2014.
L. C. Lee, Wall, S. T., Genet, M., Hinson, A., and Guccione, J. M., Bioinjection treatment: effects of post-injection residual stress on left ventricular wall stress, Journal of biomechanics, vol. 47, pp. 3115–3119, 2014.
C. Wei Ong, Ren, M., Wiputra, H., Mojumder, J., Chan, W. Xuan, Tulzer, A., Tulzer, G., Buist, M. Lindsay, Mattar, C. Nurfarah Z., Lee, L. Chuan, and Yap, C. Hwai, Biomechanics of Human Fetal Hearts with Critical Aortic Stenosis, Annals of biomedical engineering, vol. 49, no. 5, 2021.
C. Hwai Yap, Ong, C. Wei, Ren, M., Wiputra, H., Mojumder, J., Tulzer, A., Tulzer, G., Buist, M., Mattar, C. Nurfarah Z., and Lee, L. Chuan, BS14 Image-based computatinoal simulations of foetal heart function to understand congenital malformations and foetal heart intervention, vol. 107, no. Suppl 1, 2021.
K. S. Campbell, Yengo, C. M., Lee, L. - C., Kotter, J., Sorrell, V. L., Guglin, M., and Wenk, J. F., Closing the therapeutic loop, 2019.
L. Fan, Choy, J. S., Cai, C., Teague, S. D., Guccione, J., Lee, L. Chuan, and Kassab, G. S., Comparison of Left Ventricular Function Derived from Subject-Specific Inverse Finite Element Modeling Based on 3D ECHO and Magnetic Resonance Images, Bioengineering, vol. 11, 2024.
J. Mojumder, Fan, L., Nguyen, T., Campbell, K. S., Wenk, J. F., Guccione, J. M., Abraham, T., and Lee, L. Chuan, Computational analysis of ventricular mechanics in hypertrophic cardiomyopathy patients, Scientific Reports, vol. 13, p. 958, 2023.
J. Derick Abraham, Shavik, S. Mohammad, Mitchell, T. R., Lee, L. Chuan, Ray, B., and Leonardi, C. R., Computational investigation of the role of ventricular remodelling in HFpEF: The key to phenotype dissection, Computers in Biology and Medicine, vol. 180, p. 109019, 2024.
L. C. Lee, Genet, M., Acevedo-Bolton, G., Ordovas, K., Guccione, J. M., and Kuhl, E., A computational model that predicts reverse growth in response to mechanical unloading, Biomechanics and modeling in mechanobiology, vol. 14, pp. 217–229, 2015.
S. Mohammad Shavik, Wall, S., Sundnes, J., Guccione, J. M., Sengupta, P., Solomon, S. D., Burkhoff, D., and Lee, L. Chuan, Computational Modeling Studies of the Roles of Left Ventricular Geometry, Afterload, and Muscle Contractility on Myocardial Strains in Heart Failure with Preserved Ejection Fraction, Journal of cardiovascular translational research, vol. 14, no. 6, 2021.
R. Pourmodheji, Jiang, Z., Tossas-Betancourt, C., Dorfman, A. L., C Figueroa, A., Baek, S., and Lee, L. - C., Computational modelling of multi-temporal ventricular–vascular interactions during the progression of pulmonary arterial hypertension, Journal of the Royal Society Interface, vol. 19, p. 20220534, 2022.
H. Nicolay To Finsberg, Sundnes, J. S., Xi, C., Lee, L. Chuan, Zhao, X., Le Tan, J., Genet, M., Zhong, L., and Wall, S. Thomas, Computational quantification of patient specific changes in ventricular dynamics associated with pulmonary hypertension, American Journal of Physiology-Heart and Circulatory Physiology, 2019.
M. R. Grobbel, Shavik, S. - M., Darios, E., Watts, S. W., Lee, L. - C., and Roccabianca, S., Contribution of left ventricular residual stress by myocytes and collagen: existence of inter-constituent mechanical interaction, Biomechanics and modeling in mechanobiology, pp. 1–15, 2018.
T. Patel, Li, C., Raissi, F., Kassab, G. S., Gao, T., and Lee, L. Chuan, Coupled thermal-hemodynamics computational modeling of cryoballoon ablation for pulmonary vein isolation, Computers in Biology and Medicine, vol. 157, p. 106766, 2023.
C. Tossas-Betancourt, Li, N. Y., Shavik, S. M., Afton, K., Beckman, B., Whiteside, W., Olive, M. K., Lim, H. M., Lu, J. C., Phelps, C. M., and , Data-driven computational models of ventricular-arterial hemodynamics in pediatric pulmonary arterial hypertension, Frontiers in Physiology, p. 1744, 2022.
L. Green, Chan, W. Xuan, Ren, M., Mattar, C. Nurfarah Z., Lee, L. Chuan, and Yap, C. Hwai, The dependency of fetal left ventricular biomechanics function on myocardium helix angle configuration, Biomechanics and Modeling in Mechanobiology, vol. 22, pp. 629–643, 2023.
L. Green, Chan, W. Xuan, Ren, M., Mattar, C. Nurfarah Z., Lee, L. Chuan, and Yap, C. Hwai, The dependency of fetal left ventricular biomechanics function on myocardium helix angle configuration, Biomechanics and Modeling in Mechanobiology, pp. 1–15, 2022.
M. Genet, Lee, L. C., Nguyen, R., Haraldsson, H., Acevedo-Bolton, G., Zhang, Z., Ge, L., Ordovas, K., Kozerke, S., and Guccione, J. M., Distribution of normal human left ventricular myofiber stress at end diastole and end systole: a target for in silico design of heart failure treatments, Journal of Applied Physiology, vol. 117, pp. 142–152, 2014.
J. Sundnes, Lee, L. Chuan, Wall, S. T., and Valdez-Jasso, D., Editorial: Computational models of cardiovascular growth and remodeling, Frontiers in Physiology, vol. 14, 2023.
L. Fan, Namani, R., Choy, J. S., Kassab, G. S., and Lee, L. Chuan, Effects of mechanical dyssynchrony on coronary flow: insights from a computational model of coupled coronary perfusion with systemic circulation, Frontiers in physiology, 2020.
R. Namani, Lee, L. C., Lanir, Y., Kaimovitz, B., Shavik, S. M., and Kassab, G. S., Effects of myocardial function and systemic circulation on regional coronary perfusion, Journal of Applied Physiology, 2020.
H. Finsberg, Xi, C., Tan, J. L., Zhong, L., Genet, M., Sundnes, J., Lee, L. C., and Wall, S. T., Efficient estimation of personalized biventricular mechanical function employing gradient-based optimization., International journal for numerical methods in biomedical engineering, p. e2982, 2018.
M. Genet, Stoeck, C. T., von Deuster, C., Lee, L. C., and Kozerke, S., Equilibrated warping: Finite element image registration with finite strain equilibrium gap regularization, Medical Image Analysis, vol. 50, pp. 1 - 22, 2018.
J. F. Wenk, Klepach, D., Lee, L. C., Zhang, Z., Ge, L., Tseng, E. E., Martin, A., Kozerke, S., Gorman, J. H., Gorman, R. C., and , First evidence of depressed contractility in the border zone of a human myocardial infarction, The Annals of thoracic surgery, vol. 93, pp. 1188–1193, 2012.
C. K. Mann, Lee, L. Chuan, Campbell, K. S., and Wenk, J. F., Force-dependent recruitment from myosin OFF-state increases end-systolic pressure–volume relationship in left ventricle, Biomechanics and modeling in mechanobiology, 2020.
D. Klepach, Lee, L. C., Wenk, J. F., Ratcliffe, M. B., Zohdi, T. I., Navia, J. L., Kassab, G. S., Kuhl, E., and Guccione, J. M., Growth and remodeling of the left ventricle: a case study of myocardial infarction and surgical ventricular restoration, Mechanics research communications, vol. 42, pp. 134–141, 2012.
M. Genet, Rausch, M. K., Lee, L. C., Choy, S., Zhao, X., Kassab, G. S., Kozerke, S., Guccione, J. M., and Kuhl, E., Heterogeneous growth-induced prestrain in the heart, Journal of biomechanics, vol. 48, pp. 2080–2089, 2015.
S. - M. Shavik, Jiang, Z., Baek, S., and Lee, L. - C., High Spatial Resolution Multi-Organ Finite Element Modeling of Ventricular-Arterial Coupling, Frontiers in physiology, vol. 9, p. 119, 2018.
B. Baillargeon, Costa, I., Leach, J. R., Lee, L. C., Genet, M., Toutain, A., Wenk, J. F., Rausch, M. K., Rebelo, N., Acevedo-Bolton, G., and , Human cardiac function simulator for the optimal design of a novel annuloplasty ring with a sub-valvular element for correction of ischemic mitral regurgitation, Cardiovascular engineering and technology, vol. 6, pp. 105–116, 2015.
B. A. Zambrano, McLean, N. A., Zhao, X., Le Tan, J. -, Zhong, L., C Figueroa, A., Lee, L. - C., and Baek, S., Image-based computational assessment of vascular wall mechanics and hemodynamics in pulmonary arterial hypertension patients, Journal of biomechanics, vol. 68, pp. 84–92, 2018.
L. Fan, Choy, J. S., Lee, S., Campbell, K. S., Wenk, J. F., Kassab, G. S., Burkhoff, D., and Lee, L. Chuan, An in silico study of the effects of left ventricular assist device on right ventricular function and inter-ventricular interaction, Artificial Organs, vol. 47, pp. 1831–1847, 2023.
S. Mohammad Shavik, Zhong, L., Zhao, X., and Lee, L. Chuan, In-silico assessment of the effects of right ventricular assist device on pulmonary arterial hypertension using an image based biventricular modeling framework, Mechanics Research Communications, 2019.
L. C. Lee, Sundnes, J., Genet, M., Wenk, J. F., and Wall, S. T., An integrated electromechanical-growth heart model for simulating cardiac therapies, Biomechanics and Modeling in Mechanobiology, vol. 15, pp. 791–803, 2016.
R. Pourmodheji, Jiang, Z., Tossas-Betancourt, C., C Figueroa, A., Baek, S., and Lee, L. - C., Inverse modeling framework for characterizing patient-specific microstructural changes in the pulmonary arteries, Journal of the Mechanical Behavior of Biomedical Materials, vol. 119, 2021.
M. R. Grobbel, Lee, L. C., Watts, S. W., Fink, G. D., and Roccabianca, S., Left Ventricular Geometry, Tissue Composition, and Residual Stress in High Fat Diet Dahl-Salt Sensitive Rats, Experimental Mechanics, 2021.
L. C. Lee, Kassab, G. S., and Guccione, J. M., Mathematical modeling of cardiac growth and remodeling, Wiley Interdisciplinary Reviews: Systems Biology and Medicine, vol. 8, pp. 211–226, 2016.
J. Mojumder, Choy, J. S., L Leng, Z. S., Kassab, G. S., and Lee, L. C., Mechanical stimuli for left ventricular growth during pressure overload, Experimental mechanics, 2021.
L. Fan, Sun, Y., Choy, J. S., Kassab, G. S., and Lee, L. Chuan, Mechanism of exercise intolerance in heart diseases predicted by a computer model of myocardial demand-supply feedback system, Computer Methods and Programs in Biomedicine, vol. 227, p. 107188, 2022.
H. Wang, Fan, L., Choy, J. S., Kassab, G. S., and Lee, L. Chuan, Mechanisms of coronary sinus reducer for treatment of myocardial ischemia: in silico study, Journal of Applied Physiology, vol. 136, pp. 1157–1169, 2024.
C. Xi, Kassab, G. S., and Lee, L. Chuan, Microstructure-based finite element model of left ventricle passive inflation, Acta biomaterialia, vol. 90, 2019.
J. Arumugam, Mojumder, J., Kassab, G., and Lee, L. Chuan, Model of Anisotropic Reverse Cardiac Growth in Mechanical Dyssynchrony, Scientific reports, vol. 9, 2019.
M. Genet, Lee, L. C., Baillargeon, B., Guccione, J. M., and Kuhl, E., Modeling pathologies of diastolic and systolic heart failure, Annals of biomedical engineering, vol. 44, pp. 112–127, 2016.
Y. Zheng, Chan, W. Xuan, Charles, C. J., Richards, A. Mark, Lee, L. Chuan, Leo, H. Liang, and Yap, C. Hwai, Morphological, functional, and biomechanical progression of LV remodelling in a porcine model of HFpEF, Journal of Biomechanics, vol. 144, p. 111348, 2022.
H. Sharifi, Lee, L. Chuan, Campbell, K. S., and Wenk, J. F., A multiscale finite element model of left ventricular mechanics incorporating baroreflex regulation, Computers in Biology and Medicine, vol. 168, p. 107690, 2024.

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