教育背景
1996.03—2000.06 清华大学力学系,博士
1990.05-1996.02 江苏大学动力系,讲师
1983.09—1990.4 江苏大学动力系,本科,硕士
工作经历
2007.6—至今 江苏大学流体机械工程技术研究,教授
2005.08—至今 美国德州理工大学机械工程系副教授
2003.07—2005.08 美国佐治亚工学院研究工程师
2000.07—2003.7 美国佐治亚工学院-艾默里大学生物医学工程系博士后
项目课题经历
近年来主持或参加了美国国家卫生院和心脏协会科研项目
论文、成果、著作等
发表学术论文30余篇,均被SCI收录。
主要论文论著
1.Hu Y, Shi L, Du D, Ρarameswaran S, Ηe ZM, An elongation model of left ventricle deformation in diastole, Computer Methods in Biomechanics and Biomedical Engineering, 2011, 16:66-72
2.Hu Y, Shi L, Parameswaran S, Smirnov S, He ZM, Left Ventricular Vortex under mitral valve edge-to-edge repair, Cardiovascular Engineering and Technology, 2010, 1: 235-243
3.He ZM, Bhattacharya S, Mitral valve annulus tension and mechanism of annulus dilatation: an in-vitro study, Journal of Heart Valve Disease, 2010, 19: 701-707
4.Padala M, Sacks MS, Liou WS, Balachandran K, He ZM, Yoganathan AP. Mechanics of the mitral valve strut chordate insertion region, Journal of Biomechanial Engineering. 2010, 132: 081004
5.He ZM, Gao B, Bhattacharya S, Harrist T, Mathew S Sun W. In vitro stretches of the mitral valve anterior leaflet during diastole under edge-to-edge repair, Journal of Biomechanical Engineering, 2009,131:111012
6.Bhattacharya S, He ZM. Role of annulus tension in annulus dilatation, Journal of Heart Valve Disease, 2009,18:481-487
7.Shi L, He ZM, Hemodynamics of the mitral valve under edge-to-edge repair: an in-vitro study, Journal of Biomechanical Engineering, 2009;131:051010
8.Gao B, Sun W, Mathew S, He ZM. Effect of papillary muscle position on anterior leaflet stretches under mitral valve edge-to-edge repair, Journal of heart valve disease, 2009; 18 : 135-141
9.He ZM, Jowers C. A novel method to measure mitral valve chordal tension, Journal of Biomechanical Engineering, 2009; 131: 014501
10.He ZM, Jowers C. Effect of mitral valve strut chord cutting on marginal chordal tension, Journal of Heart Valve Disease, 2008; 17: 628-634
11.He ZM, Bhattacharya S. Papillary muscle and annulus size effect on anterior and posterior annulus tension of the mitral valve, Journal of Biomechanics, 2008; 41(11): 2524-2532
12.Ma Y, Cui Q, Shen L, He ZM, X-ray diffraction study of nanocrystalline tungsten nitride and tungsten to 31 GPa, Journal of Applied Physics (online). 2007;102, 013525
13.Jimenez JH, Liou SW, Padala M, He ZM, Sacks M, Gorman RC, Gorman JH 3rd, Yoganathan AP. A saddle-shaped annulus reduces systolic strain on the central region of the mitral valve anterior leaflet. Journal of Thoracic and Cardiovascular Surgery, 2007; 134(6):1562-1568
14.Jimenez JH, Forbess J, Croft LR, Small L, He ZM, Yoganathan AP. Effects of annular size, transmitral pressure, and mitral flow rate on the edge-to-edge repair: an in vitro study. Annals of Thoracic Surgery. 2006; 82(4):1362-1368.
15.Ritchie J, Jimenez J, He ZM, Sacks MS, Yoganathan AP. The material properties of the native porcine mitral valve chordae tendineae: an in vitro investigation. Journal of Biomechanics. 2006; 39(6): 1129-1135
16.Warnock J, Konduri S, He ZM, Yoganathan AP. Design of a sterile organ culture system for the ex vivo study of aortic heart valves, Journal of Biomechanical Engineering, 2005; 127(5): 857-861
17.Konduri S, Xing Y, Warnock JN, He ZM, Yoganathan AP. Normal physiological conditions maintain the biological characteristics of porcine aortic heart valves: an ex vivo organ culture study, Annals of Biomedical Engineering, 2005; 33(9): 1158-1166
18.He ZM, Ritchie J, Grashow J, Sacks MS, Yoganathan AP. In vitro dynamic Strain behavior of the mitral valve posterior leaflet, Journal of Biomechanical Engineering. 2005; 127(3):504-511
19.Jimenez JH, Soerensen DD, He ZM, Ritchie J, Yoganathan AP, Mitral valve function and chordal force distribution using a flexible annulus model: an in vitro study, Annals of Biomedical Engineering. 2005;33(5):557-566
20.Jimenez JH, Soerensen DD, He ZM, Ritchie J, Yoganathan AP. Effects of a papillary muscle position on chordal force distribution: an in vitro study, Journal of Heart Valve Disease, 2005;15:295-302
21.Yoganathan AP, He ZM, Casey Jones, Heart valves, Annual Review of Biomedical Engineering. Aug, 2004, 6 : 331-362
22.Xing Y, Warnock J, He ZM, Hilbert SL, Yoganathan AP. Cyclic pressure affects the biological properties of porcine aortic valve leaflets in a magnitude and frequency dependent manner, Annals of Biomedical Engineering, 2004; 32:1461-1470
23.Xing, Y, He ZM, Warnock J, Hilbert SL, Yoganathan AJ. Effects of constant static pressure on the biological properties of porcine heart valve cusps. Annals of Biomedical Engineering. 2003; 32(4):555-562
24.Jimenez JH, He S, Soerensen DD, He ZM, Yoganathan AP. Effects of a saddle shaped mitral annulus on regurgitation and chordal force distribution: an in vitro study. Annals of Biomedical Engineering, 2003;31(10): 1171-1181
25.He ZM, Sacks MS, Baijens L, Wanant S, Shah P, Yoganathan A. Effects of Papillary Muscle Position on the in vitro dynamic strain on the porcine mitral valve, Journal of Heart Valve Disease. 2003; 12: 488-494
26.He S, Jimenez J, He ZM, Yoganathan AP. Mitral leaflet geometry perturbations with papillary muscle displacement and annulus dilatation: an in vitro study of ischemic mitral regurgitation. Journal of Heart Valve Disease, 2003; 12: 300-307
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