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通过单次编码连续切片进行心肌三维应变的相衬磁共振成像。

Phase contrast MRI of myocardial 3D strain by encoding contiguous slices in a single shot.

作者信息

Reese Timothy G, Feinberg David A, Dou Jiangang, Wedeen Van J

机构信息

Department of Radiology, Massachusetts General Hospital, Boston, Massachusetts, USA.

出版信息

Magn Reson Med. 2002 Apr;47(4):665-76. doi: 10.1002/mrm.10111.

DOI:10.1002/mrm.10111
PMID:11948727
Abstract

Quantitative measurements of inherently three-dimensional (3D) cardiac strain and strain rate require 3D data; MRI provides uniquely high sensitivity to material strain by combining phase contrast with single-shot acquisition methods, such as echo-planar imaging (EPI). Previous MRI methods applied to 3D strain used multiple two-dimensional (2D) acquisitions and suffered loss of sensitivity due to magnification within the strain calculation of physiologic noise related to cardiac beat-to-beat variability. In the present work, each single-shot acquisition generates 3D image data by acquiring two contiguous 2D Fourier transform (FT) images in a single echo train of an EPI readout. Although strain encoding divides across multiple EPI shots, each strain component is computed only within single-shot data, avoiding noise magnification. Strain tensor maps are displayed using iconic 3D graphics or a simple color code of tensor shape. In a deforming gel phantom, gradient-recalled echo (GRE) MRI movies of 3D strain rates match expected strain fields. In normal human subjects, 3D strain rate tensor movies of heart and brain comprising seven slices in each of seven cardiac phases were completed in 56 heartbeats. Stimulated echo (STE) MRI of net systolic 3D strain was also demonstrated. Two-slices-in-one-shot spatial encoding permits a complete quantitative survey of ventricular 3D strain in under a minute, with routine patient supervision and turnkey image processing.

摘要

对固有的三维(3D)心脏应变和应变率进行定量测量需要3D数据;磁共振成像(MRI)通过将相衬成像与单次采集方法(如回波平面成像(EPI))相结合,对材料应变具有独特的高灵敏度。以前应用于3D应变的MRI方法使用多个二维(2D)采集,并且由于在与心跳逐搏变异性相关的生理噪声的应变计算中放大而导致灵敏度损失。在本研究中,每次单次采集通过在EPI读出的单个回波链中采集两个连续的二维傅里叶变换(FT)图像来生成3D图像数据。尽管应变编码分布在多个EPI序列中,但每个应变分量仅在单次采集数据内计算,避免了噪声放大。应变张量图使用标志性3D图形或张量形状的简单颜色代码显示。在变形凝胶模型中,3D应变率的梯度回波(GRE)MRI电影与预期应变场匹配。在正常人体受试者中,在56次心跳内完成了在七个心动周期的每个周期中包含七个切片的心脏和大脑的3D应变率张量电影。还展示了净收缩期3D应变的受激回波(STE)MRI。一次采集两片的空间编码允许在一分钟内对心室3D应变进行完整的定量测量,并进行常规患者监测和交钥匙图像处理。

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