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A kinematic model for simulating physiological left ventricular deformation patterns - a tool for evaluation of myocardial strain imaging

机译:运动学模型,用于模拟生理性左心室变形模式-评估心肌应变成像的工具

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In this study, we have developed a kinematic model of the left ventricle (LV) with physiological wall thickening, short and long axes deformation and torsion. This was done by approximating the LV as a thick-walled ellipsoid. Since the model is described analytically, it is possible to calculate the velocity vector, the Lagrangian strain tensor and the deformation gradient tensor everywhere within the wall. The true strain can then be obtained in any direction from the Lagrangian strain tensor, whereas "Doppler-based" strain rate (and thereby strain) can be obtained in the beam direction from the deformation gradient tensor. LV diameter, wall thickness and base-to-apex length were measured in 15 healthy individuals, averaged to obtain a representative cardiac cycle and used as input to the model. The deformation patterns of the model were in qualitative agreement with published observation. The model enables researchers to study geometrical artifacts in strain imaging, such as angle dependence and the use of fixed versus moving sample volumes. Furthermore, the model can simulate the motion of a set of point scatterers, and thereby give input to ultrasound simulators for evaluation of strain imaging artifacts.
机译:在这项研究中,我们已经建立了具有生理壁增厚,短轴和长轴变形和扭转的左心室(LV)的运动学模型。这是通过将LV近似为厚壁椭圆体来完成的。由于对模型进行了解析描述,因此可以计算壁内各处的速度矢量,拉格朗日应变张量和变形梯度张量。然后可以从拉格朗日应变张量沿任何方向获得真实应变,而可以从变形梯度张量沿波束方向获得“基于多普勒的”应变率(从而得到应变)。在15名健康个体中测量LV直径,壁厚和根尖长度,取其平均值以获得代表性的心动周期,并用作模型的输入。该模型的变形模式与已发表的观察定性一致。该模型使研究人员能够研究应变成像中的几何伪像,例如角度依赖性以及固定和移动样本量的使用。此外,该模型可以模拟一组点散射体的运动,从而为超声模拟器提供输入以评估应变成像伪像。

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