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Modeling of 3D Left Ventricular motion to evaluate paced myocardial function

机译:3D左心室运动建模以评估起搏的心肌功能

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Pacemaker is widely used to help control abnormal heart rhythms. In this paper, we propose to evaluate the paced myocardial function by building a Three-Dimensional (3D) mechanical motion model of Left Ventricular (LV), in order to optimize the pacing models. We first create a 3D standard LV model based on manually segmented LV segments by experienced clinicians. The mechanical motion of LV is further measured using Two-Dimensional (2D) Ultrasonic Doppler Tissue Velocity (DTV) imaging, and correlated with the 3D LV model by Mutual Information (MI) based non-rigid registration methods. Such multiple 2D motion images are then mapped to the 3D LV model by interpolation. The preliminary experiments are carried out by comparing the myocardial function before and after pacemaker implantation, and prove the promising feasibility of our proposed method.
机译:起搏器被广泛用于帮助控制异常的心律。在本文中,我们建议通过建立左心室(LV)的三维(3D)机械运动模型来评估起搏的心肌功能,以优化起搏模型。我们首先根据经验丰富的临床医生手动分割的LV段,创建3D标准LV模型。使用二维(2D)超声多普勒组织速度(DTV)成像进一步测量LV的机械运动,并通过基于互信息(MI)的非刚性配准方法将其与3D LV模型关联。然后,通过插值将这样的多个2D运动图像映射到3D LV模型。通过比较起搏器植入前后的心肌功能进行了初步实验,证明了该方法的可行性。

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