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Automatic detection of valve events by epicardial accelerometer allows estimation of the left ventricular pressure trace and pressure–displacement loop area

机译:通过外心加速度计自动检测阀门事件允许估计左心室压力跟踪和压力位移环区域

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Measurements of the left ventricular (LV) pressure trace are rarely performed despite high clinical interest. We estimated the LV pressure trace for an individual heart by scaling the isovolumic, ejection and filling phases of a normalized, averaged LV pressure trace to the time-points of opening and closing of the aortic and mitral valves detected in the individual heart. We developed a signal processing algorithm that automatically detected the time-points of these valve events from the motion signal of a miniaturized accelerometer attached to the heart surface. Furthermore, the pressure trace was used in combination with measured displacement from the accelerometer to calculate the pressure–displacement loop area. The method was tested on data from 34 animals during different interventions. The accuracy of the accelerometer-detected valve events was very good with a median difference of 2?ms compared to valve events defined from hemodynamic reference recordings acquired simultaneously with the accelerometer. The average correlation coefficient between the estimated and measured LV pressure traces was r?=?0.98. Finally, the LV pressure–displacement loop areas calculated using the estimated and measured pressure traces showed very good correlation (r?=?0.98). Hence, the pressure–displacement loop area can be assessed solely from accelerometer recordings with very good accuracy.
机译:尽管高临床兴趣,左心室(LV)压力迹线的测量很少。我们通过将归一化的内含化,平均的LV压力跟踪缩放到所检测到的主动脉和二尖瓣的打开和关闭时间点来估计单独的心脏的LV压力迹线。我们开发了一种信号处理算法,该信号处理算法从连接到心脏表面的小型加速度计的运动信号自动检测到这些阀门事件的时间点。此外,压力迹线与来自加速度计的测量的位移结合使用以计算压力 - 位移环区域。该方法在不同干预期间从34只动物的数据测试。加速度计检测到的阀门事件的准确性非常好,与由加速度计同时获得的血流动力学参考记录定义的阀门事件相比,2°MS的中值差异非常好。估计和测量的LV压力迹线之间的平均相关系数是R?= 0.98。最后,使用估计和测量的压力迹线计算的LV压力位移环区域显示出非常好的相关性(R?= 0.98)。因此,可以单独从加速度计记录中评估压力 - 位移环区域,非常好。

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