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Subject-specific finite-element modeling of normal aortic valve biomechanics from 3D+t TEE images

机译:从3D + t TEE图像对正常主动脉瓣生物力学进行特定对象的有限元建模

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摘要

In the past decades, developments in transesophageal echocardiography (TEE) have opened new horizons in reconstructive surgery of the aortic valve (AV), whereby corrections are made to normalize the geometry and function of the valve, and effectively treat leaks. To the best of our knowledge, we propose the first integrated framework to process subject-specific 3D+t TEE AV data, determine age-matched material properties for the aortic and leaflet tissues, build a finite element model of the unpressurized AV, and simulate the AV function throughout a cardiac cycle. For geometric reconstruction purposes, dedicated software was created to acquire the 3-D coordinates of 21 anatomical landmarks of the AV apparatus in a systematic fashion. Measurements from ten 3D+t TEE datasets of normal AVs were assessed for inter- and intra-observer variability. These tests demonstrated mean measurement errors well within the acceptable range. Simulation of a complete cardiac cycle was successful for all ten valves and validated the novel schemes introduced to evaluate age-matched material properties and iteratively scale the unpressurized dimensions of the valves such that, given the determined material properties, the dimensions measured in vivo closely matched those simulated in late diastole. The leaflet coaptation area, describing the quality of the sealing of the valve, was measured directly from the medical images and was also obtained from the simulations; both approaches correlated well. The mechanical stress values obtained from the simulations may be interpreted in a comparative sense whereby higher values are indicative of higher risk of tearing and/or development of calcification. (C) 2014 Elsevier B.V. All rights reserved.
机译:在过去的几十年中,经食道超声心动图(TEE)的发展为主动脉瓣(AV)的重建手术开辟了新的视野,据此进行了校正,以使瓣膜的几何形状和功能正常化,并有效地治疗泄漏。据我们所知,我们提出了第一个集成框架来处理特定于受试者的3D + t TEE AV数据,确定主动脉和小叶组织的年龄匹配的材料属性,建立未加压AV的有限元模型,并进行仿真整个心动周期的AV功能。为了进行几何重建,创建了专用软件以系统方式获取AV设备的21个解剖界标的3-D坐标。评估了来自正常AV的十个3D + t TEE数据集的测量值,以观察者之间和观察者内部的变异性。这些测试表明平均测量误差完全在可接受的范围内。对所有十个瓣膜均成功进行了完整的心动周期模拟,并验证了用于评估与年龄匹配的材料特性并迭代缩放未加压尺寸的新方案,从而在确定材料特性的情况下,体内测量的尺寸紧密匹配舒张末期模拟的那些。直接从医学图像中测量描述瓣膜密封质量的小叶接合区域,该区域也可以从模拟中获得;两种方法相关性很好。从模拟获得的机械应力值可以在比较意义上进行解释,其中较高的值指示较高的撕裂和/或钙化发展风险。 (C)2014 Elsevier B.V.保留所有权利。

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