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    Martin Genet


    My original background is in Computational Mechanics and Computational Materials Science. The ultimate aspiration of my current research is to use the fundamental laws of physics and the power of modern computing and imaging facilities to improve cardiology.

    Professional page: https://m3disim.saclay.inria.fr/people/martin-genet


    Article dans une revue26 documents

    • Manuel K. Rausch, Martin Genet, Jay D. Humphrey. An augmented iterative method for identifying a stress-free reference configuration in image-based biomechanical modeling. Journal of Biomechanics, Elsevier, 2017, 58, pp.227 - 231. 〈10.1016/j.jbiomech.2017.04.021〉. 〈hal-01571436〉
    • Lik Chuan Lee, Joakim Sundnes, Martin Genet, Samuel T. Wall. Physics-based computer simulation of the long-term effects of cardiac regenerative therapies. Aerospace Technology, 2016, 04 (01), pp.23 - 29. 〈10.1142/S2339547816400069〉. 〈hal-01427485〉
    • Martin Genet, L. C. Lee, B. Baillargeon, J. M. Guccione, E. Kuhl. Modeling Pathologies of Diastolic and Systolic Heart Failure. Annals of Biomedical Engineering, Springer Verlag, 2016, 44 (1), pp.112 - 127. 〈10.1007/s10439-015-1351-2〉. 〈hal-01274929〉
    • Kevin L. Sack, Brian Baillargeon, Gabriel Acevedo-Bolton, Martin Genet, Nuno Rebelo, et al.. Partial LVAD restores ventricular outputs and normalizes LV but not RV stress distributions in the acutely failing heart in silico. International Journal of Artificial Organs, Wichtig Editore, 2016, 39 (8), pp.421 - 430. 〈10.5301/ijao.5000520〉. 〈hal-01427529〉
    • Ce Xi, Candace Latnie, Ju Le Tan, Samuel T. Wall, Martin Genet, et al.. Patient-Specific Computational Analysis of Ventricular Mechanics in Pulmonary Arterial Hypertension. Journal of Biomechanical Engineering, American Society of Mechanical Engineers, 2016, 138 (11), 〈10.1115/1.4034559〉. 〈hal-01427545〉
    • Manuel K. Rausch, Alexander M. Zöllner, Martin Genet, Brian Baillargeon, Wolfgang Bothe, et al.. A virtual sizing tool for mitral valve annuloplasty. International Journal for Numerical Methods in Biomedical Engineering, John Wiley and Sons, 2016, 〈10.1002/cnm.2788〉. 〈hal-01427479〉
    • Martin Genet, Lik Chuan Lee, Liang Ge, Gabriel Acevedo-Bolton, Nick Jeung, et al.. A Novel Method for Quantifying Smooth Regional Variations in Myocardial Contractility Within an Infarcted Human Left Ventricle Based on Delay-Enhanced Magnetic Resonance Imaging. Journal of Biomechanical Engineering, American Society of Mechanical Engineers, 2015, 137 (8), pp.10. 〈10.1115/1.4030667〉. 〈hal-01196425〉
    • Brian Baillargeon, Ivan Costa, Joseph R. Leach, Lik Chuan Lee, Martin Genet, et al.. 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, Springer, 2015, 6 (2), pp.12. 〈10.1007/s13239-015-0216-z〉. 〈hal-01196412〉
    • Yasuaki Tanaka, Martin Genet, Lik Chuan Lee, Alastair J. Martin, Richard Sievers, et al.. Utility of high-resolution electroanatomic mapping of the left ventricle using a multispline basket catheter in a swine model of chronic myocardial infarction. Heart Rhythm, Elsevier, 2015, 12 (1), pp.11. 〈10.1016/j.hrthm.2014.08.036〉. 〈hal-01196408〉
    • Martin Genet, Manuel Rausch, Lik Chuan Lee, S Choy, X Zhao, et al.. Heterogeneous growth-induced prestrain in the heart. Journal of Biomechanics, Elsevier, 2015, pp.10. 〈10.1016/j.jbiomech.2015.03.012〉. 〈hal-01196418〉
    • Christian T. Stoeck, Constantin Von Deuster, Martin Genet, David Atkinson, Sebastian Kozerke. Second-order motion-compensated spin echo diffusion tensor imaging of the human heart. Magnetic Resonance in Medicine, Wiley, 2015, pp.10. 〈10.1002/mrm.25784〉. 〈hal-01196430〉
    • Constantin Von Deuster, Christian T. Stoeck, Martin Genet, David Atkinson, Sebastian Kozerke. Spin echo versus stimulated echo diffusion tensor imaging of the in vivo human heart. Magnetic Resonance Materials in Physics, Biology and Medicine, Springer Verlag, 2015, 〈10.1002/mrm.25998〉. 〈hal-01274925〉
    • Lik Chuan Lee, Joakim Sundnes, Martin Genet, Jonathan F. Wenk, Samuel T. Wall. An integrated electromechanical-reversible growth heart model for simulating cardiac therapies. Biomechanics and Modeling in Mechanobiology, Springer Verlag, 2015, 15 (4), pp.791 - 803. 〈10.1007/s10237-015-0723-8〉. 〈hal-01274923〉
    • Lik Chuan Lee, Martin Genet, Gabriel Acevedo-Bolton, Karen Ordovas, Julius M. Guccione, et al.. A computational model that predicts reverse growth in response to mechanical unloading. Biomechanics and Modeling in Mechanobiology, Springer Verlag, 2015, 14 (2), pp.12. 〈10.1007/s10237-014-0598-0〉. 〈hal-01196384〉
    • Martin Genet, Lik Chuan Lee, Rebecca Nguyen, Henrik Haraldsson, Gabriel Acevedo-Bolton, et al.. 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, American Physiological Society, 2014, 117 (2), pp.11. 〈10.1152/japplphysiol.00255.2014〉. 〈hal-01196388〉
    • Lik Chuan Lee, Martin Genet, Alan B. Dang, Liang Ge, Julius M. Guccione, et al.. Applications of Computational Modeling in Cardiac Surgery. Journal of Cardiac Surgery, Wiley, 2014, 29 (3), pp.293-302. 〈10.1111/jocs.12332〉. 〈hal-01196376〉
    • Lik Chuan Lee, Samuel T. Wall, Martin Genet, Andy Hinson, Julius M. Guccione. Bioinjection treatment: Effects of post-injection residual stress on left ventricular wall stress. Journal of Biomechanics, Elsevier, 2014, 47 (12), pp.4. 〈10.1016/j.jbiomech.2014.06.026〉. 〈hal-01196372〉
    • Martin Genet, Guillaume Couégnat, Antoni P. Tomsia, Robert O. Ritchie. Scaling strength distributions in quasi-brittle materials from micro- to macro-scales: A computational approach to modeling Nature-inspired structural ceramics. Journal of the Mechanics and Physics of Solids, Elsevier, 2014, 68, pp.13. 〈10.1016/j.jmps.2014.03.011〉. 〈hal-01196360〉
    • C. Fagiano, Martin Genet, Emmanuel Baranger, Pierre Ladevèze. Computational geometrical and mechanical modeling of woven ceramic composites at the mesoscale. Composite Structures, Elsevier, 2014, Computational geometrical and mechanical modeling of woven ceramic composites at the mesoscale, 112, pp.146-156. 〈10.1016/j.compstruct.2014.01.045〉. 〈hal-01081418〉
    • Manuel Houmard, Qiang Fu, Martin Genet, Eduardo Saiz, Antoni P. Tomsia. On the structural, mechanical, and biodegradation properties of HA/β-TCP robocast scaffolds. Journal of Biomedical Materials Research, John Wiley & Sons, 2013, 101 (7), pp.9. 〈10.1002/jbm.b.32935〉. 〈hal-01196354〉
    • Martin Genet, Lionel Marcin, Pierre Ladevèze. On structural computations until fracture based on an anisotropic and unilateral damage theory. International Journal of Damage Mechanics, SAGE Publications, 2013. 〈hal-00851003〉
    • Martin Genet, Manuel Houmard, Salvador Eslava, Eduardo Saiz, Antoni P. Tomsia. A two-scale Weibull approach to the failure of porous ceramic structures made by robocasting: possibilities and limits. Journal of the European Ceramic Society, Elsevier, 2013, 33 (4), pp.679-688. 〈10.1016/j.jeurceramsoc.2013.01.014〉. 〈hal-00851004〉
    • Martin Genet, Lionel Marcin, Emmanuel Baranger, Christophe Cluzel, Pierre Ladevèze, et al.. Computational prediction of the lifetime of self-healing CMC structures. Composites Part A: Applied Science and Manufacturing, Elsevier, 2011, pp.294-303. 〈10.1016/j.compositesa.2011.11.004〉. 〈hal-00749632〉
    • Pierre Ladevèze, Martin Genet. A new approach to the subcritical cracking of ceramic fibers. Composites Science and Technology, Elsevier, 2010, 70 (11), pp.1575. 〈10.1016/j.compscitech.2010.04.013〉. 〈hal-00666482〉
    • Shane Flores, Anthony G. Evans, Frank W. Zok, Martin Genet, Brian Cox, et al.. Treating matrix nonlinearity in the binary model formulation for 3D ceramic composite structures. Composites Part A: Applied Science and Manufacturing, Elsevier, 2010, 41 (2), pp.8. 〈10.1016/j.compositesa.2009.10.020〉. 〈hal-01193310〉
    • Martin Genet, Wenyi Yan, Thanh Tran-Cong. Investigation of a hydraulic impact: a technology in rock breaking. Archive of Applied Mechanics, Springer Verlag, 2009, 79 (9), pp.825-841. 〈10.1007/s00419-008-0256-z〉. 〈hal-00411531〉

    Communication dans un congrès22 documents

    • Martin Genet, Lik Chuan Lee, Sebastian Kozerke. A continuum finite strain formulation of the equilibrium gap regularizer for finite element image correlation. 13ème Colloque National en Calcul des Structures, May 2017, Giens, France. 〈hal-01661810〉
    • Martin Genet, Lik Chuan Lee, Sebastian Kozerke. Equilibrated Warping: Finite Element Image Correlation with Mechanical Regularization. FEniCS'2017, Jun 2017, Luxembourg, Luxembourg. 〈hal-01661825〉
    • Martin Genet, Christian Stoeck, Constantin Von Deuster, Lik Chuan Lee, Julius Guccione, et al.. Finite Element Digital Image Correlation for Cardiac Strain Analysis from 3D Whole-Heart Tagging. ISMRM 24rd Annual Meeting and Exhibition 2016, May 2016, Singapore, Singapore. 2016. 〈hal-01571506〉
    • Ce Xi, Xiaodan Zhao, Liang Zhong, Martin Genet, Chuan Lee. Quantification of biventricular myocardial strain from magnetic resonance images of pulmonary hypertensive patients using hyperelastic warping. Summer Biomechanics, Bioengineering and Biotransport Conference (SB3C2016), Jun 2016, National Harbor, United States. 2016, 〈http://archive.sb3c.org/2016-proceedings/〉. 〈hal-01571500〉
    • Lik Chuan Lee, Martin Genet, Jonathan Wenk, Joakim Sundnes, Samuel Wall. Cardiac reversible growth & remodeling model: predicting and understanding the chronic effects of bioinjection therapy. Summer Biomechanics, Bioengineering and Biotransport Conference (SB3C2015), Jun 2015, Snowbird Resort, United States. 2015, 〈http://archive.sb3c.org/2015-proceedings/〉. 〈hal-01571504〉
    • Martin Genet, Lik Chuan Lee, Arnaud Toutain, Brian Baillargeon, Sebastian Kozerke, et al.. A whole heart model with finite growth for hypertension-induced pathologies. 9th European Solid Mechanics Conference (ESMC 2015), Jul 2015, Madrid, Spain. 2015. 〈hal-01274905〉
    • Martin Genet, Constantin Von Deuster, Christian T. Stoeck, Sebastian Kozerke. Is ventricular deformation affine?. 2nd International Workshop on Latest Advances in Cardiac Modeling (LACM 2015), Mar 2015, Munich, Germany. 〈hal-01274902〉
    • Martin Genet, Constantin Von Deuster, Christian T. Stoeck, Sebastian Kozerke. 3D myofiber reconstruction from in vivo cardiac DTI data through extraction of low rank modes. ISMRM 23rd Annual Meeting and Exhibition 2015, May 2015, Toronto, Canada. 〈hal-01274904〉
    • Martin Genet, Manuel Rausch, Lik Chuan Lee, Julius Guccione, Ellen Kuhl. Differential growth-induced residual stress in arteries and the heart. 11th World Congress on Computational Mechanics (WCCM XI), Jul 2014, Barcelone, Spain. 〈hal-01274900〉
    • Martin Genet, Lik Chuan Lee, Rebecca Nguyen, Zhihong Zhang, Liang Ge, et al.. MRI strain-based validation of patient-specific computational models of human hearts—building a target for in silico studies of surgical procedures. 2nd USACM Thematic Conference on Multiscale Methods and Validation in Medicine and Biology (MMVMB2), Feb 2014, Berkeley, United States. 〈hal-01274892〉
    • Martin Genet, Lik Chuan Lee, Ellen Kuhl, Julius Guccione. Abaqus/Standard-based quantification of human cardiac mechanical properties. 2014 SIMULIA Community Conference (SCC2014), May 2014, Providence, Rhode Island, United States. 2014. 〈hal-01274893〉
    • Martin Genet, Lik Chuan Lee, Ellen Kuhl, Sebastian Kozerke, Julius M. Guccione. In vivo MRI-validation of a micromechanics-based active contraction model of healthy and diseased human hearts. 7th World Congress of Biomechanics (WCB 2014), Jul 2014, Boston, Massachusetts, United States. 〈hal-01274895〉
    • Martin Genet, Antoni P. Tomsia, Robert O. Ritchie. An homogenized damage model for bio-inspired ceramic structures made by freezecasting. 10th World Congress on Computational Mechanics (WCCM2012), Jul 2012, Sao Paulo, Brazil. 〈hal-01274890〉
    • Martin Genet, Eduardo Saiz, Antoni Tomsia. Toward the modeling of Freeze Casting. 8th International Workshop on Interfaces, Jun 2011, Saint-Jacques de Compostelle, Spain. 2011. 〈hal-01274883〉
    • Martin Genet, Manuel Houmard, Salvador Eslava, Eduardo Saiz, Antoni P. Tomsia. Multi-scale analysis and modeling of robocasted scaffolds mechanical properties. Materials Research Society Meeting Fall 2011, Nov 2011, Boston, United States. 2011. 〈hal-01274889〉
    • Emmanuel Baranger, Lionel Marcin, Martin Genet, Christophe Cluzel, Pierre Ladevèze, et al.. Toward a damage tolerance analysis of CMCs with a self-healing matrix. ICSHM2011 - Third International Conference on Self-Healing Materials 2011, 2011, Bristol, United Kingdom. 〈hal-00640694〉
    • Lionel Marcin, Martin Genet, Emmanuel Baranger, P. Ladevèze. Vers la tolérance au dommage pour les CMCs : prédiction de la durée de vie de structures. AMAC. 17èmes Journées Nationales sur les Composites (JNC17), Jun 2011, Poitiers-Futuroscope, France. pp.155, 2011. 〈hal-00597049〉
    • Martin Genet, Pierre Ladevèze. A new approach to the subcritical propagation of cracks in ceramics. 14th European Conference on Composites Materials (ECCM14), Jun 2010, Budapest, Hungary. 2010. 〈hal-01274841〉
    • Martin Genet, Pierre Ladevèze. A Family of Prediction Tools for Fine Ceramic Fibers Subcritical Cracking. 7th International Conference on High Temperature Ceramic Matrix Composites (HTCMC7), Sep 2010, Bayreuth, Germany. 2010. 〈hal-01274846〉
    • Martin Genet, Pierre Ladevèze, Gilles Lubineau. Toward virtual ceramic composites. 17th International Conference on Composite Materials, Jul 2009, Edinburgh, United Kingdom. 2009. 〈hal-01274832〉
    • Martin Genet, Pierre Ladevèze, Gilles Lubineau. Vers des composites céramiques virtuels = Toward virtual ceramic composites. Philippe OLIVIER et Jacques LAMON. JNC 16, Jun 2009, Toulouse, France. AMAC, 9 p., 2009. 〈hal-00387775〉
    • Martin Genet, Pierre Ladevèze, Gilles Lubineau, Emmanuel Baranger, A Mouret. Toward a virtual material for lifetime prediction of CMCs. 13th European Conference on Composites Materials, Jun 2008, Stockholm, Sweden. 2008. 〈hal-01274810〉

    Chapitre d'ouvrage1 document

    • Pierre Ladevèze, Emmanuel Baranger, Martin Genet, Christophe Cluzel. Damage and lifetime modeling for structure computations. Ceramic Matrix Composites: Materials, Modeling and Technology, 2014. 〈hal-01274916〉

    Thèse1 document

    • Martin Genet. Vers un matériau virtuel pour les composites céramiques. Mécanique [physics.med-ph]. École normale supérieure de Cachan - ENS Cachan, 2010. Français. 〈tel-00473030v2〉