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Analytical method to measure three-dimensional strain patterns in the left ventricle from single slice displacement data

机译:从单层位移数据测量左心室三维应变模式的分析方法

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摘要

Background: udDisplacement encoded Cardiovascular MR (CMR) can provide high spatial resolution measurements of three-dimensional (3D) Lagrangian displacement. Spatial gradients of the Lagrangian displacement field are used to measure regional myocardial strain. In general, adjacent parallel slices are needed in order to calculate the spatial gradient in the through-slice direction. This necessitates the acquisition of additional data and prolongs the scan time. The goal of this study is to define an analytic solution that supports the reconstruction of the out-of-plane components of the Lagrangian strain tensor in addition to the in-plane components from a single-slice displacement CMR dataset with high spatio-temporal resolution. The technique assumes incompressibility of the myocardium as a physical constraint.ududResults: udThe feasibility of the method is demonstrated in a healthy human subject and the results are compared to those of other studies. The proposed method was validated with simulated data and strain estimates from experimentally measured DENSE data, which were compared to the strain calculation from a conventional two-slice acquisition.ududConclusion: udThis analytical method reduces the need to acquire data from adjacent slices when calculating regional Lagrangian strains and can effectively reduce the long scan time by a factor of two.
机译:背景:位移编码的心血管MR(CMR)可以提供三维(3D)拉格朗日位移的高空间分辨率测量。拉格朗日位移场的空间梯度用于测量局部心肌应变。通常,需要相邻的平行切片以计算贯穿切片方向上的空间梯度。这需要获取其他数据并延长扫描时间。这项研究的目的是定义一个分析解决方案,该解决方案除了具有高时空分辨率的单切片位移CMR数据集中的平面内分量外,还支持拉格朗日应变张量的平面外分量的重建。该技术假定心肌的不可压缩性是一个物理限制。 ud ud结果: ud在健康的人类受试者中证明了该方法的可行性,并将结果与​​其他研究的结果进行了比较。通过模拟数据和实验测量的DENSE数据得出的应变估计值对提出的方法进行了验证,并将其与常规两层采集的应变计算进行了比较。 ud ud结论: ud此分析方法减少了从相邻切片中获取数据的需求在计算区域拉格朗日应变时,可以有效地将较长的扫描时间减少两倍。

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