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Transmural myocardial strain distribution measured at high spatial and temporal resolution

机译:高空间和时间分辨率下测量的跨壁心肌应变分布

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Most studies of the distribution of radial strain across the left ventricular (LV) wall report increasing strain values from the epi- to the endocardial layer. The aim of this study was to estimate this strain using a novel ultrasound setup. In order to examine the transmural distribution of radial strain in 2 different LV regions, 2 miniature transducers with high temporal and high spatial resolution were directly attached to the heart's surface in the LV basal and apical region. The myocardium was divided into 5 equally sized layers. Tissue velocities (V) were estimated from the acquired RF signals using a time-delay estimator (TDE) after up-sampling the RF. The initial V estimates were regularized by fitting an active contour through the TDE's results versus depth. Finally, radial strain rate and strain were calculated resulting in a global motion-compensated assessment of radial strain across the LV wall. The results showed that radial strain increased from the epi- to endocardium in the apical segment while the highest strain values were observed more towards the mid-myocardium near the base. These findings are in agreement with finite element model (FEM) results suggesting that differences in transmural strain distribution could be due to differences in curvature at the base and apex which potentially could explain the conflicting data in the literature.
机译:多数关于左心室(LV)壁上径向应变分布的研究报告说,从心外膜层到心内膜层的应变值不断增加。这项研究的目的是使用一种新颖的超声波装置来估计该菌株。为了检查径向应变在2个不同LV区域中的透壁分布,将2个具有高时间和高空间分辨率的微型传感器直接连接到LV基底和根尖区域的心脏表面。心肌被分成5个相等大小的层。在对RF进行上采样之后,使用时延估计器(TDE)从获取的RF信号中估计组织速度(V)。通过根据TDE结果对深度拟合活动轮廓来对初始V估计值进行正则化。最后,计算径向应变率和应变,从而对整个LV壁的径向应变进行整体运动补偿评估。结果表明,径向应变从心尖的心外膜到心内膜增加,而最高应变值则更多地向靠近基部的心肌中部观察。这些发现与有限元模型(FEM)的结果一致,表明跨壁应变分布的差异可能是由于基部和顶点的曲率差异所致,这有可能解释文献中的矛盾数据。

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