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首页> 外文期刊>BioMedical Engineering OnLine >Feasibility of rapid and automated importation of 3D echocardiographic left ventricular (LV) geometry into a finite element (FEM) analysis model
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Feasibility of rapid and automated importation of 3D echocardiographic left ventricular (LV) geometry into a finite element (FEM) analysis model

机译:快速自动地将3D超声心动图左心室(LV)几何导入到有限元(FEM)分析模型中的可行性

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Background Finite element method (FEM) analysis for intraoperative modeling of the left ventricle (LV) is presently not possible. Since 3D structural data of the LV is now obtainable using standard transesophageal echocardiography (TEE) devices intraoperatively, the present study describes a method to transfer this data into a commercially available FEM analysis system: ABAQUS?. Methods In this prospective study TomTec LV Analysis TEE? Software was used for semi-automatic endocardial border detection, reconstruction, and volume-rendering of the clinical 3D echocardiographic data. A newly developed software program MVCP FemCoGen?, written in Delphi, reformats the TomTec file structures in five patients for use in ABAQUS and allows visualization of regional deformation of the LV. Results This study demonstrates that a fully automated importation of 3D TEE data into FEM modeling is feasible and can be efficiently accomplished in the operating room. Conclusion For complete intraoperative 3D LV finite element analysis, three input elements are necessary: 1. time-gaited, reality-based structural information, 2. continuous LV pressure and 3. instantaneous tissue elastance. The first of these elements is now available using the methods presented herein.
机译:目前尚不可能进行左心室(LV)术中建模的背景有限元方法(FEM)分析。由于现在可以在术中使用标准的经食道超声心动图(TEE)设备获得LV的3D结构数据,因此,本研究描述了一种将该数据传输到商用FEM分析系统中的方法:ABAQUS ?。方法在这项前瞻性研究中,TomTec LV分析的TEE ? 该软件用于临床3D超声心动图数据的半自动心内膜边界检测,重建和体积绘制。用Delphi编写的最新开发的软件程序MVCP FemCoGen ?重新格式化了5位患者的TomTec文件结构,以供ABAQUS使用,并可以可视化LV的局部变形。结果这项研究表明,将3D TEE数据完全自动导入FEM建模是可行的,并且可以在手术室中高效完成。结论对于完整的术中3D LV有限元分析,三个输入要素是必需的:1.时间步态,基于实际情况的结构信息; 2.连续的LV压力和3.瞬时组织弹性。现在,可以使用此处介绍的方法获得这些元素中的第一个。

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