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心血管磁共振图像的定量分析。

Quantitative analysis of cardiovascular MR images.

作者信息

van der Geest R J, de Roos A, van der Wall E E, Reiber J H

机构信息

Laboratory for Clinical and Experimental Image Processing (LKEB), Leiden University Medical Centre, The Netherlands.

出版信息

Int J Card Imaging. 1997 Jun;13(3):247-58. doi: 10.1023/a:1005869509149.

Abstract

The diagnosis of cardiovascular disease requires the precise assessment of both morphology and function. Nearly all aspects of cardiovascular function and flow can be quantified nowadays with fast magnetic resonance (MR) imaging techniques. Conventional and breath-hold cine MR imaging allow the precise and highly reproducible assessment of global and regional left ventricular function. During the same examination, velocity encoded cine (VEC) MR imaging provides measurements of blood flow in the heart and great vessels. Quantitative image analysis often still relies on manual tracing of contours in the images. Reliable automated or semi-automated image analysis software would be very helpful to overcome the limitations associated with the manual and tedious processing of the images. Recent progress in MR imaging of the coronary arteries and myocardial perfusion imaging with contrast media, along with the further development of faster imaging sequences, suggest that MR imaging could evolve into a single technique ('one stop shop') for the evaluation of many aspects of heart disease. As a result, it is very likely that the need for automated image segmentation and analysis software algorithms will further increase. In this paper the developments directed towards the automated image analysis and semi-automated contour detection for cardiovascular MR imaging are presented.

摘要

心血管疾病的诊断需要对形态和功能进行精确评估。如今,利用快速磁共振(MR)成像技术几乎可以对心血管功能和血流的各个方面进行量化。传统的屏气电影MR成像能够精确且高度可重复地评估左心室整体和局部功能。在同一检查过程中,速度编码电影(VEC)MR成像可测量心脏和大血管中的血流。定量图像分析通常仍依赖于在图像中手动描绘轮廓。可靠的自动或半自动图像分析软件对于克服与手动且繁琐的图像处理相关的局限性将非常有帮助。冠状动脉MR成像和使用造影剂的心肌灌注成像的最新进展,以及更快成像序列的进一步发展,表明MR成像可能会演变成一种用于评估心脏病多个方面的单一技术(“一站式服务”)。因此,对自动图像分割和分析软件算法的需求很可能会进一步增加。本文介绍了针对心血管MR成像的自动图像分析和半自动轮廓检测的进展。

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