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心脏单光子发射计算机断层扫描(SPECT)与磁共振成像(MR)图像的空间和时间配准:方法与评估

Spatial and temporal registration of cardiac SPECT and MR images: methods and evaluation.

作者信息

Faber T L, McColl R W, Opperman R M, Corbett J R, Peshock R M

机构信息

Department of Radiology, University of Texas Southwestern Medical Center, Dallas 75235-9058.

出版信息

Radiology. 1991 Jun;179(3):857-61. doi: 10.1148/radiology.179.3.2028006.

Abstract

Image registration may assist in the integration of information from multiple sources by allowing direct point-for-point comparisons of studies. To determine the usefulness of such a technique, a method for the spatial and temporal registration of four-dimensional single photon emission computed tomographic (SPECT) and magnetic resonance (MR) cardiac images was developed. Automatically detected left ventricular endocardial surfaces were used to determine the best transform between the two sets of surface points, and that transform was applied to the original SPECT image. A fused image created from the MR and the transformed SPECT images combined the information in both. The authors tested the method with seven patient studies. Registration reduced the distance between the MR and SPECT left ventricular endocardial surfaces by 30%, to an average of 2.7 mm. The authors found that, by using the fused images, perfusion abnormalities could be easily localized and correlated to high-resolution endocardial wall motion and systolic wall thickening.

摘要

图像配准可以通过允许对研究进行直接的逐点比较来辅助整合来自多个来源的信息。为了确定这种技术的实用性,开发了一种用于四维单光子发射计算机断层扫描(SPECT)和磁共振(MR)心脏图像的空间和时间配准方法。利用自动检测到的左心室心内膜表面来确定两组表面点之间的最佳变换,并将该变换应用于原始SPECT图像。由MR图像和变换后的SPECT图像创建的融合图像将两者的信息结合在一起。作者用七例患者研究对该方法进行了测试。配准使MR和SPECT左心室心内膜表面之间的距离减少了30%,平均为2.7毫米。作者发现,通过使用融合图像,可以轻松定位灌注异常,并将其与高分辨率的心内膜壁运动和收缩期壁增厚相关联。

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