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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >In vivo validation of a novel method for regional myocardial wall motion analysis based on echocardiographic tissue tracking.
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In vivo validation of a novel method for regional myocardial wall motion analysis based on echocardiographic tissue tracking.

机译:在体内验证一种基于超声心动图组织跟踪的局部心肌壁运动分析的新方法。

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摘要

The objective of this study was to validate a recently developed tissue tracking (TT) method for cardiac motion, by comparing it with precise invasive measurements of motion and to prove its capability to reflect moderate hemodynamic changes induced by asynchronous activation. In four open-chest sheep, sono-crystals measured the left ventricle(LV) equator's diameters simultaneously with 2D ultrasound acquisition. The LV was paced either from the posterior or from the lateral wall, just prior to the normal LV activation. Global functional indices were calculated based on the regional motions extracted by the TT method. The correlation coefficient between the shortening of the diameters and the global circumferential strain (GCS) was 0.99 +/- 0.004. The peak GCS differentiated between the pacing modes (paired t test, P < 0.05). The GCS, a measurement closely based on the TT method, followed the precise sono-crystals measurements and reflected moderate hemodynamic changes, thus providing a substantial proof of the TT method's accuracy and clinical value.
机译:这项研究的目的是通过将心脏跟踪与精确的侵入性运动测量值进行比较,验证一种最近开发的心脏运动组织跟踪(TT)方法,并证明其能够反映出异步激活引起的中等血流动力学变化的能力。在四只开胸的绵羊中,声纳晶体与二维超声采集同时测量左心室(LV)赤道的直径。在正常左心室激活之前,左心室是从后部或从侧壁开始。基于TT方法提取的区域运动来计算全局功能指数。直径的缩短与整体周向应变(GCS)之间的相关系数为0.99 +/- 0.004。 GCS峰值在起搏模式之间有所区别(配对t检验,P <0.05)。 GCS是紧密基于TT方法的一种测量方法,随后进行了精确的声波晶体测量并反映了适度的血液动力学变化,从而为TT方法的准确性和临床价值提供了实质性证据。

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