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Ex Vivo Methods for Informing Computational Models of the Mitral Valve

机译:用于告知二尖瓣计算模型的体内方法

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摘要

Computational modeling of the mitral valve (MV) has potential applications for determining optimal MV repair techniques and risk of recurrent mitral regurgitation. Two key concerns for informing these models are (1) sensitivity of model performance to the accuracy of the input geometry, and, (2) acquisition of comprehensive data sets against which the simulation can be validated across clinically relevant geometries. Addressing the first concern, ex vivo micro-computed tomography (microCT) was used to image MVs at high resolution (~40 micron voxel size). Because MVs distorted substantially during static imaging, glutaraldehyde fixation was used prior to microCT. After fixation, MV leaflet distortions were significantly smaller (p<0.005), and detail of the chordal tree was appreciably greater. Addressing the second concern, a left heart simulator was designed to reproduce MV geometric perturbations seen in vivo in functional mitral regurgitation and after subsequent repair, and maintain compatibility with microCT. By permuting individual excised ovine MVs (n=5) through each state (healthy, diseased and repaired), and imaging with microCT in each state, a comprehensive data set was produced. Using this data set, work is ongoing to construct and validate high-fidelity MV biomechanical models. These models will seek to link MV function across clinically relevant states.
机译:二尖瓣(MV)的计算模型具有确定最佳MV修复技术和复发性二尖瓣反流风险的潜在应用。通知这些模型的两个关键问题是:(1)模型性能对输入几何形状的准确性的敏感性;(2)获取可以在整个临床相关几何形状上进行仿真验证的综合数据集。为了解决第一个问题,使用离体微计算机断层扫描(microCT)对高分辨率的MV(约40微米体素尺寸)成像。由于在静态成像过程中MV严重扭曲,因此在microCT之前使用戊二醛固定。固定后,MV小叶变形明显较小(p <0.005),而弦树的细节明显较大。为了解决第二个问题,设计了一种左心模拟器,以重现体内在功能性二尖瓣反流中以及随后的修复后所见的MV几何扰动,并保持与microCT的兼容性。通过排列每个状态(健康,患病和修复)的单个切除的绵羊MV(n = 5),并在每个状态下用microCT成像,产生了一个全面的数据集。使用该数据集,正在进行构建和验证高保真MV生物力学模型的工作。这些模型将寻求在临床相关状态之间关联MV功能。

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