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蒋文涛医学论文

2023-11-05 18:18 来源:学术参考网 作者:未知

蒋文涛医学论文

参编专著六部,撰写论文十余篇。主持科研项目两项。获中华医学科技二等奖一项,天津市科技进步三等奖一项。参与填补天津市卫生系统新技术空白七项。2008年获得全国卫生系统青年岗位能手称号。

血液动力学的扩展阅读

1. Wootton DM, Ku, DN, Fluid mechanics of vascular systems, diseases, and thrombosis, Annu. Rev. Biomed. Eng. 1999, 01: 299-3292. He, XY, Ku DN, Pulsatile flow in the human left coronary artery bifurcation: average conditions, J. Biomech. Eng. 1996, Vol. 118: 74-823. Liu ZR, Xu G, Chen, Y., Teng ZZ,Qin KR, An analysis model of pulsatile blood flow in arteries, Applied. Math. & Mech., 2003, Vol. 24(2):230-2404. 柳兆荣,藤忠照,覃开蓉,脉动条件下血管壁的应力分布,力学学报, Vol. 34(5):696-7045. 覃开蓉,姜宗来,一种确定均匀动脉壁面切应力的非线性方法,力学学报, 2005, Vol. 37(2):225-2316. 柳兆荣,藤忠照,覃开蓉,用p-V指数关系确定血管壁的周向应力,力学学报,2002, Vol. 34 (1):87-957. 柳兆荣,李惜惜,姜伟元, 覃开蓉,端点条件对平行平板流动腔底部切应力的影响,中国生物医学工程学报, 2001, Vo. 20(2):187-1928. Yoshikawa N., Adachi T., Ohshima M., Suzuki K, Yamaguchi T., Research trend of image-based biomechanical simulation, Trans. JSME, Ser. A., 2004, Vo. 70(697):1157-11629. David, T. Moore, S. Modeling perfusion in the cerebral vasculature [J]. Medical Engineering & Physics, 2008(30): 1227-1245.10. David T, Alzaidi S, Farr H. Coupled autoregulation models in the cerebro-vasculature [J]. Journal of Engineering Mathematics, 2009(64): 403-415.11. Formaggia L, Nobile F, Quarteroni,A, et al. Multiscale modelling of the circulatory system: a preliminary analysis [J]. Computing and Visualization in Science, 1999(2):75-83.12. Formaggia L, Lamponi D, Tuveri M, et al. Numerical modeling of 1D arterial networks coupled with a lumped parameters description of the heart [J]. Computer methods in biomechanics and biomedical engineering, 2006(9):273-288.13. He Y, Liu H, Himeno R. A one-dimensional thermo-fluld model of blood circulation in the human upper limb [J]. International Journal of Heat and Mass Transfer, 2004(47): 2735-2745.14. Liang F Y, Takagi S, Himeno R. Biomechanical characterization of ventricular-arterial coupling during aging: A multi-scale model study [J]. Journal of Biomechanics, 2009a(42): 692-704.15. Liang F Y, Takagi S, Himeno R. et al. Multi-scale modeling of the human cardiovascular system with applications to aortic valvular and arterial stenosis [J]. Medical & Biological Engineering & Computing, 2009b(47):743-755.16. Liang F Y, Fukasaku K, Liu H, et al. A computational model study of the influence of the anatomy of the circle of willis on cerebral hyperperfusion following carotid artery surgery [J]. Biomedical Engineering Online, 2011(10):1-22.17. Mynard J P, Nithiarasu P. A 1D arterial blood flow model incorporating ventricular pressure, aortic valve and regional coronary flow using the locally conservative Galerkin (LCG) method [J]. Communications in Numerical Methods in Engineering, 2008(24): 367-417.18. Olufsen M S. Structured tree outflow condition for blood flow in larger systemic arteries [J]. American Journal of Physiology-Heart and Circulatory Physiology, 1999(276):H257-H268.19. Olufsen M S, Peskin C S, Kim W Y, Pedersen E M, et al. Numerical simulation and experimental validation of blood flow in arteries with structured-tree outflow conditions [J]. Annals of Biomedical Engineering, 2000(28):1281-1299.20. Kojic, M, Filipovic, N, Stojanovic, B, and Kojic, N, Computer Modeling in Bioengineering, 2008, John Wiley & Sons Ltd21. 柳兆荣,李惜惜,血液动力学原理和方法,复旦大学出版社,199722. 田心,毕平, 生物力学基础, 2007, 科学出版社23. 乔爱科,刘有军,面向医学应用的血流动力学模拟(Ⅰ):动脉中的血流,北京工业大学学报, 2008, Vol34(2):189-19624. 乔爱科,刘有军,贯建春,张宏斌,面向医学应用的血流动力学模拟(Ⅱ):前景展望,北京工业大学学报, 2008, Vol34(5):544-55025. 谢翔,血流动力学对动脉粥样硬化疾病及血管发育影响的机制研究 [D],重庆大学博士论文, 201326. 刘有军,乔爱科,主海文,高松,颈动脉分支东风血流动力学数值模拟,计算力学学报, 2004, Vol.21(4):475-48027. 蒋文涛,樊瑜波,邹远文,陈君楷,窦部对称狭窄对颈动脉内流场影响的数值研究,力学学报, 2006,VoL. 38(2):270-27528. 蒋文涛,樊瑜波,邹远文,李晋川,陈君楷,动脉分叉血管内膜增生过程的数值模拟,计算力学学报, 2007, Vol.24(5):597-60129. Zhang, ZG, Fan YB, Deng XY, Oxygen transfer in human carotid artery bifurcation, Acta Mech Sin, 2007, Vol. 23: 305-30930. 晏菲,蒋文涛,郑庭辉,樊瑜波,刘展,药物洗脱支架高度对药物浓度和壁面切应力分布影响的数值分析,医用生物力学,2012, Vol. 27(4): 451-45531. 张赟,乔爱科,优化设计颅内动脉瘤用梯形截面支架底边长度,医用生物力学,2012,Vol. 27(3):294-29832. 顾兴中,程洁,李俐军,倪中华,血管支架耦合系统血流动力学数值模拟与实验研究,2012, Vol.42(6):1089-109333. Wada, S., Karino, T., Theoretical Prediction of Low-density Lipoproteins concentration at the Luminal Surface of An Artery with a Multiple Bend, Ann. Biomed. Eng., 2002, 30(6): 778-79134. Wang, GX, Deng XY, Guidoin R., Concentration Polarization of Macromolecules in Canine Carotid Arteries and Its Implication for the Localization of Atherogenesis, J. Biomech., 2003, Vol. 36(1):45-5135. 八木高伸, 銭逸, 高尾洋之, 村山雄一, 梅津光生, 脳动脉瘤の破裂を予测する医工学技术の确立に向けて, 人工臓器, 2010, Vol. 39(3):227-23136. 柳兆荣,吕岚,陈泳,血管局部扩张对血液流动的影响,水动力学研究与进展, 2001, A辑, Vol.16 (4):399-40837. Watanabe, H., Sugano T., Sugiura, S, Hisada T., Finite Element Analysis of Ventricular Wall Motion and Intra-Ventricular Blood Flow in Hear with Myocardial Infarction, JSME International Journal, 2004, Vol. 47(4):1019-102638. Watanabe, H., Sugiura, S, Hisada T., Multi-physics Simulation of Left Ventricular Filling Dynamics Using Fluid- Structure Interaction Finite Element Method, Biophy. J., 2004, Vol. 87:2074-2085.39. 姬长金,贺缨. 脑Willis环的一维血流动力学及氧输运特性的数值研究[J]. 力学学报, 2012(3): 591-599.40. 陈俊源,母立众, 贺缨,唐元梁,基于个性化Willis环体外模型的脑动脉内局部低温的实验研究,医用生物力学,2014,Vol. 29(4):313-31741. Alastuey, J, Parker, KH, Peiro J, Byrd, SM, Sherwin, SJ, Modeling of the circle of Willis to assess the effects of anatomical variations and occlusions on cerebral flows.J. Bomech., 2007, vol. 40, pp.1794-180542. Xu, LY, Zhang Z., Wang H, Yu YQ, Contribution of the hemodynamics of A1 dysplasia or hypoplasia to anterior commnucating artery aneurysms: a three-dimensional numerical study, J. Comput. Ass. Tomo., 2012, Vol. 36, No. 4, pp.421-42643. 陈珍,袁奇,申娜,崔长琮,Zhao Y.,颅内Willis环三维稳态及非稳态血液动力学计算, 西安交通大学学报, 2008, Vol. 42(4):492-49644. 姚伟,丁光宏,吕传真,陆韶华,刘辉,王盛章,脑Willis环动力学参数计算与临床应用,中国生物医学工程学报,2003, Vol. 22(2):153-15745. 何为,余传祥. 2010, 心血管动力学参数测量原理和临床应用, 北京:科学出版社。46. 朱国瑜,辛继宾,吴国强,左心室压力-容积关系的仿真,医用生物力学, 2004, Vol. 19 (1):10-1447. 曾毅,谷凯云,高斌,刘有军,常宇,心血管系统在心衰阶段的生理模拟,北京工业大学学报,2013,Vol. 39(12):1911-191548. 吴望一,孙东宁,冯忠刚,心室-血管的物理模型与动态耦合,中国生物医学工程学报,2001,Vol. 20(5):451-458.49. 樊瑜波,陈君楷等, 含动脉分支的体循环模拟实验系统, 实验力学,Vol.10(1995), No.1, pp.1-10.50. 施斌,朱梁,张忠兵,谢渭芬,吴国强,刘宝玉,曹银祥,大鼠肝内型门脉高压症形成中门静脉力学性质的变化,医用生物力学,2004,Vol.19 (4):228-233.51. 严宗毅,低雷诺数流理论,北京大学出版社,2002. Pozrikidis, C. Stokes flow through a permeable tube, Arch. Appl. Mech. Vol. 80 (2010), pp. 323-333. He, Y., Himeno, R., Finite Element Analysis on Fluid Filtration in System of Permeable Curved Capillaryand Tissue. Journal of Mechanics in Medicine and Biology, 2012, Vol. 12, No. 4, 1250077-1-20 Lei, X.X., We, W. Y., Wen, GB, Chen JG Mass transfer in solid tumors(1)—fluid dynamics, Applied mathematics and mechanics, 19(1998), 1025-1032. 吴洁,许世雄,赵改平,Collins,MW, 蒋雨平,王坚,实体肿瘤血液动力学的三维数值模拟,医用生物力学,2006,Vol13, pp.8-13 吴洁,丁祖荣,蔡彦等,血管抑素与内皮抑素作用下抗血管生成治疗对肿瘤血管网与微环境影响的模拟研究,应用数学和力学, Vol 32(4), 2011, pp. 417-427 Kallabay, G, 曹金凤,蔡彦,许世雄,细胞外基质力学性质对实体肿瘤血管生成影响的数值模拟,生物医学工程学进展,2008, Vol. 29(3):131-135 Wu, J, Long, Q, and Xu, SX, Blood Perfusion in Solid Tumor with “Mormalized Microvasculature” in Tumor Vascular Modeling, Springer, 2012, pp. 361-398.

蒋文涛的介绍

蒋文涛,男,1974年1月出生,医学博士。现任天津市第一中心医院移植外科主任,副主任医师,天津医科大学硕士研究生导师。

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