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利用磁共振相速度编码对人体左心内血流进行三维重建。

Three-dimensional reconstruction of the flow in a human left heart by using magnetic resonance phase velocity encoding.

作者信息

Walker P G, Cranney G B, Grimes R Y, Delatore J, Rectenwald J, Pohost G M, Yoganathan A P

机构信息

School of Chemical Engineering, Georgia Institute of Technology, Atlanta 30332-0100, USA.

出版信息

Ann Biomed Eng. 1996 Jan-Feb;24(1):139-47. doi: 10.1007/BF02771002.

Abstract

Intraventricular flows have been correlated with disease and are of interest to cardiologists as a possible means of diagnosis. This study extends a method that use magnetic resonance (MR) to measure the three-dimensional nature of these flows. Four coplanar, sagittal MR slices were located that spanned the left ventricle of a healthy human. All three velocity components were measured in each slice and 18 phases were obtained per beat. With use of the MR magnitude images, masks were created to isolate the velocity data within the heart. These data were read into the software package, Data Visualizer, and the data from the four slices were aligned so as to reconstruct the three-dimensional volume of the left ventricle and atrium. By representing the velocity in vectorial form, the three-dimensional intraventricular flow field was visualized. This revealed the presence of one large line vortex in the ventricle during late diastole but a more ordered flow during early diastole and systole. In conclusion, the use of MR velocity acquisition is a suitable method to obtain the complex intraventricular flow fields in humans and may lead to a better understanding of the importance of these flows.

摘要

心室内血流已被证实与疾病相关,心脏病专家对其作为一种可能的诊断手段很感兴趣。本研究扩展了一种利用磁共振(MR)测量这些血流三维特性的方法。确定了四个横跨健康人体左心室的共面矢状面MR切片。在每个切片中测量所有三个速度分量,每次心跳获取18个相位。利用MR幅度图像创建掩码,以分离心脏内的速度数据。这些数据被读入软件包Data Visualizer,并对来自四个切片的数据进行对齐,以重建左心室和心房的三维容积。通过以矢量形式表示速度,可视化了三维心室内流场。这揭示了在舒张末期心室内存在一个大的线涡,但在舒张早期和收缩期血流更有序。总之,使用MR速度采集是获取人体复杂心室内流场的合适方法,可能有助于更好地理解这些血流的重要性。

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