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Sensitivity of Myocardial Stiffness Estimates to Inter-observer Variability in LV Geometric Modelling

机译:心肌刚度估计对LV几何建模的观察者间变异性的敏感性

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Heart failure is known to be associated with substantial changes in the mechanical properties of the heart muscle. Biomechan-ical parameters, such as myocardial stiffness, have the potential to help clinicians diagnose and determine and monitor treatment options. The impact of inter-observer variability of geometric modelling on the estimation of passive myocardial stiffness has not yet been systematically investigated. We aimed to examine the sensitivity of myocardial stiffness estimates with respect to inter-observer geometric model variability. Twenty-four subjects (5 controls, 19 patients with heart failure) underwent left heart catheterisation and cardiovascular magnetic resonance (CMR) imaging. Three expert analysts independently constructed three-dimensional geometric models of the left ventricle (LV), which were used to estimate myocardial stiffness using finite element simulations that combined cine CMR data and LV pressure measurements. Bland-Altman analysis was used to assess the inter-observer effects on the reproducibility of myocardial stiffness. The inter-observer variations were ±7.69 mL/m~2 and ±9.78 g/m~2 for the LV end-diastolic volume and mass indices, respectively. Meanwhile, the variability ranged by up to ±051 kPa for inter-observer analysis on the estimated intrinsic myocardial stiffness values. Findings from this pilot study highlight the importance of the accuracy of image-based geometric modelling when estimating myocardial stiffness.
机译:已知心力衰竭与心肌机械性能的显着变化相关。生物骨 - 诸如心肌刚度的诸如心肌僵硬,有可能帮助临床医生诊断和确定和监测治疗方案。尚未系统地研究了几何建模对无源心肌刚度估计的几何建模的影响。我们旨在研究对观察者间几何模型变异性的心肌刚度估计的敏感性。二十四个受试者(5种对照,19例心力衰竭患者)左心导管和心血管磁共振(CMR)成像。三个专家分析师独立构建了左心室(LV)的三维几何模型,用于使用组合CINE CMR数据和LV压力测量的有限元模拟来估计心肌刚度。 Bland-Altman分析用于评估观察者间对心肌刚度的再现性的影响。 Observer间变异分别为LV端舒张性体积和质量指数分别为±7.69ml / m〜2和±9.78g / m〜2。同时,对于估计内在心肌刚度值的观察者间分析,可变性范围为高达±051 KPa。该试点研究的调查结果突出了在估计心肌刚度时基于图像的几何建模的准确性的重要性。

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