首页> 外文会议>Computers in Cardiology, 2007 >Use of body-surface potential mapping and computer model simulations for optimal programming of cardiac resynchronization therapy devices
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Use of body-surface potential mapping and computer model simulations for optimal programming of cardiac resynchronization therapy devices

机译:使用体表电位测绘和计算机模型仿真来优化心脏再同步治疗仪的程序

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It has been proposed that by optimizing the timing of activation between the ventricles (V-V interval), with the aid of body-surface potential mapping (BSPM), the success rate of cardiac resynchronization therapy (CRT) devices could be improved. We recorded 120-electrode BSPM data and CT scans from two patients with implanted CRT devices and calculated, by means of electrocardiographic inverse solution, epicardial potentials and isochrones of activation for different V-V intervals. To gain better insight, we used a computer model of ventricular activation to simulate activation isochrones for CRT pacing. As a measure of inter-ventricular synchrony for a variety of V-V settings we used the area between the LV and RV percent surface activated curves. We have demonstrated that by aiming to minimize dyssynchrony in ventricular activation patterns, an optimal CRT pacing V-V interval can be selected. The computer model simulations provided a baseline measure by which our measure of synchrony can be evaluated.
机译:有人提出,通过优化心室之间的激活时间(V-V间隔),借助体表电位测绘(BSPM),可以提高心脏再同步治疗(CRT)设备的成功率。我们记录了两名植入CRT装置的患者的120电极BSPM数据和CT扫描,并通过心电图逆解决方案计算了心外膜电位和不同V-V间隔的激活等时线。为了获得更好的见解,我们使用了心室激活的计算机模型来模拟CRT起搏的激活等时线。为了测量各种V-V设置的心室同步性,我们使用了LV和RV百分比表面激活曲线之间的面积。我们已经证明,通过最大程度地减少心室激活模式的不同步,可以选择最佳的CRT起搏V-V间隔。计算机模型仿真提供了基准度量,通过该基线度量可以评估我们的同步度量。

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