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Characterization of the relationship between systolic shear strain and early diastolic shear strain rates: insights into torsional recoil

机译:收缩期剪切应变与舒张早期剪切应变率之间关系的特征:扭转后坐力的见解

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摘要

Early diastolic left ventricular (LV) untwisting has been evaluated as a manifestation of LV recoil, reflecting the release of elastic energy stored during systole. The primary goal of this study was to characterize the relationship between systolic strain (e.g., circumferential strain and the shear strains that comprise twist) with the resulting early diastolic shear strain rates, including the rate of untwisting. A further goal was to characterize these relationships regionally from apical to basal locations. Cardiac magnetic resonance imaging tissue tagging was used to measure circumferential strain, global and regional (apex, mid, basal) twist (θ), and circumferential-longitudinal (ϵCL) and circumferential-radial (ϵCR) shear strains along with the corresponding untwisting rates (dθ/dt) and diastolic shear strain rates (dϵ/dt) in 32 healthy males (33 ± 7 yr). LV untwisting rates and shear strain rates measured during early diastole varied significantly with the measurement location from apex to base (P < 0.001) but demonstrated significant linear correlation with their corresponding preceding systolic strains (P < 0.001). Untwisting rates and diastolic shear strain rates were not significantly correlated with circumferential systolic strain or end-systolic volume (P > 0.05). Normalization of the untwisting rates to the peak twist (dθ/dtNorm = −13.6 ± 2.1 s−1) or shear strain rates to peak systolic shear strain (dϵCL/dtNorm = −15.0 ± 5.4 s−1, and dϵCR/dtNorm = −14.2 ± 7.7 s−1) yielded a uniform measure of early diastolic function that was similar for all shear strain and twist components and for all locations from apex to base. These findings support a linear model of torsional recoil in the healthy heart, where diastolic shear strain rates (e.g., untwisting rates) are linearly related to the corresponding preceding systolic shear stain component. Furthermore, these findings suggest that torsional recoil is uncoupled from end-systolic volumes or the associated strains, such as circumferential strain.
机译:早期舒张期左心室(LV)扭转已被评估为LV后坐力的表现,反映了收缩期间储存的弹性能量的释放。这项研究的主要目的是表征收缩期应变(例如周向应变和包括扭曲的剪切应变)与早期舒张期剪切应变率(包括解捻率)之间的关系。另一个目标是从顶端到基础位置对这些关系进行区域性描述。心脏磁共振成像组织标记用于测量周向应变,整体和区域(顶点,中间,基础)扭曲(θ),周向纵向(ϵCL)和周向径向(ϵCR)剪切应变以及相应的解捻率(dθ/ dt)和舒张期剪切应变率(dϵ / dt),来自32位健康男性(33±7岁)。左室舒张早期测得的左心室解旋率和切变应变率随心尖至基部的测量位置而有显着变化(P <0.001),但与相应的先前收缩期应变有显着的线性相关性(P <0.001)。解捻率和舒张剪切应变率与周向收缩压或收缩末期容积无显着相关性(P> 0.05)。将未扭转速率归一化为峰值扭曲(dθ/ dtNorm = -13.6±2.1 s -1 )或将剪切应变率归一化为收缩压峰值应变(dϵCL / dtNorm = -15.0±5.4 s -1 和dϵCR / dtNorm = -14.2±7.7 s -1 )产生了一个统一的早期舒张功能量度,在所有剪切应变和扭曲分量以及所有位置都相似从顶端到基部。这些发现支持健康心脏中扭转后坐力的线性模型,其中舒张期剪切应变率(例如,解捻率)与相应的先前的收缩期剪切染色成分线性相关。此外,这些发现表明,扭转后坐力与收缩末期容积或相关应变(例如周向应变)无关。

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