首页> 外文会议>ASME conference on frontiers in medical devices: applications of computer modeling and simulation 2013 : The role of experiment in modeling ... >A NOVEL MICRO-CT BASED ANATOMICALLY ACCURATE FINITE ELEMENT MODEL FOR SIMULATION-AIDED ASSESSMENT OF MITRAL VALVE REPAIRS
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A NOVEL MICRO-CT BASED ANATOMICALLY ACCURATE FINITE ELEMENT MODEL FOR SIMULATION-AIDED ASSESSMENT OF MITRAL VALVE REPAIRS

机译:基于新型Micro-CT的精确精确的有限元模型,用于二尖瓣修复的模拟辅助评估

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Many surgeons have come to view mitral valve (MV) repair as the treatment of choice in patients with mitral regurgitation (MR). According to recent long-term studies, the recurrence of significant MR after repair may be much higher than previously believed, particularly in patients with (ischemic mitral regurgitation) IMR. We hypothesize that the restoration of homeostatic normal MV leaflet tissue stress in IMR repair techniques ultimately leads to improved repair durability. Therefore, the objective of this study is to develop a novel micro-anatomically accurate 3D finite element (FE) model that incorporates detailed collagen fiber architecture, accurate constitutive models, and micro-anatomically realistic valvular geometry to investigate the functional mitral valve and to aid in the assessment of the mitral valve repairs, especially the linking between the interstitial cellular deformations at the cellular level, the mechanobiological behaviors at the tissue level and the organ level mechanical responses as normal and repaired mitral valves maintaining their homeostatic state.
机译:许多外科医生已经将二尖瓣(MV)修复视为二尖瓣反流(MR)患者的首选治疗方法。根据最近的长期研究,修复后重大MR的复发可能比以前认为的要高得多,特别是在患有缺血性二尖瓣关闭不全的IMR患者中。我们假设,IMR修复技术中的稳态正常MV小叶组织应力的恢复最终会导致修复耐久性的提高。因此,本研究的目的是开发一种新颖的微解剖学精确的3D有限元(FE)模型,该模型结合了详细的胶原纤维结构,精确的本构模型和微解剖学逼真的瓣膜几何形状,以研究二尖瓣的功能并提供帮助在评估二尖瓣修复时,尤其是在细胞水平上的间质细胞变形,组织水平的机械生物学行为和器官水平的机械反应之间的联系,因为二尖瓣正常且修复后的二尖瓣保持其稳态。

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