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一种用于PET和MR脑图像配准的方法。

A method for coregistration of PET and MR brain images.

作者信息

Andersson J L, Sundin A, Valind S

机构信息

Uppsala University PET Centre, Sweden.

出版信息

J Nucl Med. 1995 Jul;36(7):1307-15.

PMID:7790961
Abstract

UNLABELLED

Combining MRI morphological data with functional PET data offers significant advantages in research as well as in many clinical situations. Automatic methods are needed, however, to coregister the data from the two modalities.

METHODS

Simulated PET images were created by simple and automatic segmentation of MR images followed by the assignment of different uptake values to various tissue types. The simulated PET images were registered to actual PET images using a pixel-by-pixel, PET-PET registration method. The transformation matrix was then applied to the MR images. The method was used to register MRI data to PET transmission scans and emission scans obtained with FDG, nomifensine and raclopride. Validation was performed by comparing the results to those obtained by matching internal points manually defined in both volumes.

RESULTS

Emission and transmission PET images were successfully registered to MR data. Comparison to the manual method indicated a registration accuracy on the order of 1-2 mm in each direction. No difference in accuracy between the different tracers was found. The error sensitivity for the method's assumptions seemed to be sufficiently low to allow complete automation of the method.

CONCLUSION

We present a rapid, robust and fully automated method to register PET and MR brain images with sufficient accuracy for most clinical applications.

摘要

未标注

将MRI形态学数据与功能性PET数据相结合在研究以及许多临床情况下都具有显著优势。然而,需要自动方法来对来自这两种模态的数据进行配准。

方法

通过对MR图像进行简单自动分割,然后为各种组织类型分配不同的摄取值来创建模拟PET图像。使用逐像素的PET-PET配准方法将模拟PET图像配准到实际PET图像。然后将变换矩阵应用于MR图像。该方法用于将MRI数据配准到用FDG、诺米芬辛和雷氯必利获得的PET透射扫描和发射扫描。通过将结果与通过匹配在两个体积中手动定义的内部点获得的结果进行比较来进行验证。

结果

发射和透射PET图像成功配准到MR数据。与手动方法的比较表明,在每个方向上配准精度约为1-2毫米。未发现不同示踪剂之间在精度上有差异。该方法假设的误差敏感性似乎足够低,以允许该方法完全自动化。

结论

我们提出了一种快速、稳健且完全自动化的方法,用于配准PET和MR脑图像,其精度足以满足大多数临床应用。

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