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利用螺旋 Cine DENSE 磁共振成像定量分析胸主动脉和腹主动脉壁的径向和切向应变的分布潜力。

The Potential for Quantifying Regional Distributions of Radial and Shear Strain in the Thoracic and Abdominal Aortic Wall Using Spiral Cine DENSE Magnetic Resonance Imaging.

机构信息

Department of Biomedical Engineering, Virginia Commonwealth University, Richmond, VA 23220.

Department of Biomedical Engineering, Virginia Commonwealth University, Richmond, VA 23220; Pauley Heart Center, Virginia Commonwealth University, Richmond, VA 23219.

出版信息

J Biomech Eng. 2021 Jun 1;143(6). doi: 10.1115/1.4050029.

Abstract

Aortic displacement encoding with stimulated echoes (DENSE) magnetic resonance imaging (MRI) was recently developed to assess heterogeneities in aortic wall circumferential strain (CS). However, previous studies neglected potential radial and shear strain (RSS) distributions. Herein, we present an improved aortic DENSE MRI postprocessing method to assess the feasibility of quantifying all components of the two-dimensional (2D) strain tensor. 32 previously acquired 2D DENSE scans from three distinct aortic locations were re-analyzed. Contrasting previous studies, displacements of the inner and outer aortic wall layers were processed separately to preserve RSS. Differences in regional strain between the new and old postprocessing methods were evaluated, along with interobserver, intraobserver, and interscan repeatability for all strain components. The new postprocessing method revealed an overall mean absolute difference in regional CS of 0.01 ± 0.01 compared to the prior method, with minimal impact on CS repeatability. Mean absolute magnitudes of regional RSS increased significantly compared to changes in CS (radial 0.04 ± 0.05, p < 0.001; shear 0.04 ± 0.04, p = 0.02). Most repeatability metrics for RSS were significantly worse than for CS. The unique distributions of RSS for each axial location associated well with local periaortic structures and mean aortic displacement. The new postprocessing method captures heterogeneous distributions of nonzero RSS which may provide new information for improving clinical diagnostics and computational modeling of heterogeneous aortic wall mechanics. However, future studies are required to improve the repeatability of RSS and assess the influence of partial volume effects.

摘要

主动脉位移编码激励回波(DENSE)磁共振成像(MRI)最近被开发出来,用于评估主动脉壁周向应变(CS)的异质性。然而,先前的研究忽略了潜在的径向和剪切应变(RSS)分布。在此,我们提出了一种改进的主动脉 DENSE MRI 后处理方法,以评估量化二维(2D)应变张量所有分量的可行性。重新分析了来自三个不同主动脉位置的 32 个先前获得的 2D DENSE 扫描。与先前的研究不同,内、外主动脉壁层的位移分别进行处理,以保留 RSS。评估了新和旧后处理方法之间的区域应变差异,以及所有应变分量的观察者间、观察者内和扫描间的可重复性。与旧方法相比,新后处理方法显示出区域 CS 的整体平均绝对差异为 0.01±0.01,对 CS 重复性的影响最小。与 CS 变化相比,区域 RSS 的平均绝对幅度显著增加(径向 0.04±0.05,p<0.001;剪切 0.04±0.04,p=0.02)。RSS 的大多数重复性指标均明显劣于 CS。每个轴向位置的 RSS 的独特分布与局部主动脉周围结构和平均主动脉位移很好地相关。新的后处理方法可以捕获非零 RSS 的不均匀分布,这可能为改善临床诊断和计算模型中不均匀的主动脉壁力学提供新的信息。然而,需要进一步的研究来提高 RSS 的可重复性,并评估部分体积效应的影响。

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