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A Statistical Technique to Assess Overall Cardiac Ventricle Contraction Dyssynchrony

机译:一种评估整体心室收缩Dyssynchrony的统计技术

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Dyssynchrony between patterns of strain developed by different cardiac ventricular regions can indicate an activation abnormality or the failure of activated tissue to contract. To quantify overall chamber dyssynchrony with one number, we implemented a cross-correlation technique first developed with Doppler velocity images [1- 2], and applied the method to calculate time delays between strain (σ) waveforms of paired tissue regions [3]. We then derived one average time delay (TD avg) from all region strain pairs distributed through an image. The method acquired a long axis two-dimensional echocardiographic view from a Philips ultrasound scanner. Image acquisition was followed by strain calculation at seven adjacent regions of the myocardium by Philip's QLAB software. From each region x and y pairing, a cross-correlation function Rxy(j) = Σi=0M-1 σx(i) * σy(i+j) between σ waveforms was assessed over M samples spanning the RR interval, and normalized time delay (TD xy) was computed based on the correlation's index of maximum (jmax). With strain measured from all seven regions of the myocardial wall, the TD xy results collected from 42 possible region pair combinations were combined to form the TD avg.
机译:由不同心室区域开发的应变模式之间的伴有伴侣可以表明激活异常或激活组织对收缩的失败。为了用一个数字量化整个腔室呼吸话器,我们实现了一种用多普勒速度图像[1-2]开发的互相关技术,并应用了计算成对组织区域的应变(σ)波形之间的时间延迟的方法[3]。然后,我们从分布通过图像的所有区域应变对中派生一个平均时间延迟(TD AVG)。该方法从飞利浦超声波扫描仪获取了一个长轴二维超声心动图视图。通过Philip的QLAB软件,在菲利普QLAB软件的七个相邻地区进行图像采集。从每个区域x和y配对,互相关函数rxy(j)=σ i = 0 m-1 Σ波形之间的Σx(i)*σy(i + j)在跨越RR间隔的M个样本上进行评估,并且基于相关的最大索引(JMAX)计算归一化时间延迟(TD XY)。对于从心肌壁的所有七个区域测量的菌株,组合从42种可能的区域对组合收集的TD XY结果以形成TD AVG。

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