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用于分析个体特异性非线性血管变形的双 VENC 四维流 MRI 框架。

A Dual-VENC Four-Dimensional Flow MRI Framework for Analysis of Subject-Specific Heterogeneous Nonlinear Vessel Deformation.

机构信息

Biomedical Engineering, National University of Ireland Galway, Galway H91 TK33, Ireland.

Department of Vascular and Endovascular Surgery, National University of Ireland Galway, Galway H91 TK33, Ireland.

出版信息

J Biomech Eng. 2020 Nov 1;142(11). doi: 10.1115/1.4048649.

Abstract

Advancement of subject-specific in silico medicine requires new imaging protocols tailored to specific anatomical features, paired with new constitutive model development based on structure/function relationships. In this study, we develop a new dual-velocity encoding coefficient (VENC) 4D flow MRI protocol that provides unprecedented spatial and temporal resolution of in vivo aortic deformation. All previous dual-VENC 4D flow MRI studies in the literature focus on an isolated segment of the aorta, which fail to capture the full spectrum of aortic heterogeneity that exists along the vessel length. The imaging protocol developed provides high sensitivity to all blood flow velocities throughout the entire cardiac cycle, overcoming the challenge of accurately measuring the highly unsteady nonuniform flow field in the aorta. Cross-sectional area change, volumetric flow rate, and compliance are observed to decrease with distance from the heart, while pulse wave velocity (PWV) is observed to increase. A nonlinear aortic lumen pressure-area relationship is observed throughout the aorta such that a high vessel compliance occurs during diastole, and a low vessel compliance occurs during systole. This suggests that a single value of compliance may not accurately represent vessel behavior during a cardiac cycle in vivo. This high-resolution MRI data provide key information on the spatial variation in nonlinear aortic compliance, which can significantly advance the state-of-the-art of in-silico diagnostic techniques for the human aorta.

摘要

为了推进特定于主题的计算医学,需要针对特定解剖特征量身定制新的成像方案,并结合基于结构/功能关系的新本构模型开发。在这项研究中,我们开发了一种新的双流速编码系数(VENC)4D 流 MRI 方案,可提供活体主动脉变形的前所未有的空间和时间分辨率。之前文献中的所有双 VENC 4D 流 MRI 研究都集中在主动脉的一个孤立段上,无法捕捉到沿血管长度存在的主动脉异质性的全貌。所开发的成像方案对整个心动周期内的所有血流速度都具有高度敏感性,克服了准确测量主动脉内高度不稳定非均匀流场的挑战。观察到横截面积变化、容积流量和顺应性随着距心脏的距离增加而减小,而脉搏波速度(PWV)则增加。在整个主动脉中观察到非线性主动脉管腔压力-面积关系,使得在舒张期间血管顺应性较高,而在收缩期间血管顺应性较低。这表明在体内心动周期中,单个顺应性值可能无法准确代表血管行为。这种高分辨率 MRI 数据提供了关于非线性主动脉顺应性空间变化的关键信息,这可以极大地推进用于人类主动脉的计算诊断技术的最新进展。

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