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Inferring The Left Ventricle Dynamical Behavior Using A Free-form Deformations Model

机译:使用自由形式的变形模型推断左心室动力学行为

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A computational 4D (3D + time) model for simulating the dynamical shape of the left ventricle (LV) based on free-form deformations (FFD) techniques is described. The simulation model is useful as a teaching tool for understanding the normal left ventricle motion. The model is also useful for initializing 3D segmentation algorithms and for understanding the relation between pathologies and variation of parameters defining the ventricular function. Validation of this computational model is performed by synthesizing 4D sequences of the left ventricle, comprising the interval going from end-systole to end-diastole. From the resulting 4D shapes, several mechanical parameters such as the left ventricle volume, the radial contraction and torsion are calculated and compared with results of works previously reported based in MR-tagging images. A comparison is also performed with respect to mechanical parameters extracted from the additional time instants in the same multislice computerized tomography (MSCT) database used for extracting the LV wall surfaces required for initialization. First results show a good match between parameters compared.
机译:描述了一种基于自由形式变形(FFD)技术模拟左心室(LV)动态形状的计算4D(3D +时间)模型。仿真模型可用作了解正常左心室运动的教学工具。该模型还可用于初始化3D分割算法,以及了解病理与定义心室功能的参数变化之间的关系。通过合成左心室的4D序列(包括从收缩末期到舒张末期的间隔)来执行此计算模型的验证。从产生的4D形状中,可以计算出多个机械参数,例如左心室容积,径向收缩和扭转,并与先前基于MR标签图像报告的工作结果进行比较。还对从用于提取初始化所需的LV壁表面的同一多层计算机断层摄影(MSCT)数据库中从其他时刻提取的机械参数进行了比较。初步结果表明,所比较的参数之间具有良好的匹配性。

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