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用于脑肿瘤患者评估的容积磁共振成像与高分辨率[18F]氟脱氧葡萄糖正电子发射断层扫描图像的配准

Alignment of volume MR images and high resolution [18F]fluorodeoxyglucose PET images for the evaluation of patients with brain tumors.

作者信息

Nelson S J, Day M R, Buffone P J, Wald L L, Budinger T F, Hawkins R, Dillon W P, Huhn S, Prados M D, Chang S, Vigneron D B

机构信息

Department of Radiology, University of California, San Francisco 94143, USA.

出版信息

J Comput Assist Tomogr. 1997 Mar-Apr;21(2):183-91. doi: 10.1097/00004728-199703000-00004.

Abstract

PURPOSE

The goal of the study was to investigate the use of automated registration techniques for interpretation of volume MR and high resolution FDG-PET images that were obtained from patients with brain tumors.

METHOD

Twenty-one patients with brain tumors were studied on one or more occasions using MRI and high resolution FDG-PET. The data were aligned using automated volume- and surface-matching algorithms. Composite images comprising the resliced pre- and postgadolinium spoiled GRE, T2-weighted SE, and PET data were constructed to correlate intensities of regions on the PET images with regions that corresponded to normal gray matter, white matter, and gadolinium enhancement.

RESULTS

The accuracy of registration between the MR and PET images was estimated to be within 1-2 mm based upon the distance between surfaces of the outside of the head. In 12 of the 24 examinations, there were diagnoses of recurrent tumor, with only 5 of these exhibiting regions of higher FDG uptake than normal gray matter. For 19 of the 24 studies, the anatomic context provided by the registered MR images was found to be important in distinguishing recurrent tumor from necrosis based upon FDG uptake.

CONCLUSION

The automated alignment was found to be an important factor in interpreting the high resolution PET images. This was particularly true for small lesions close to the cortex and for situations where FDG uptake had been reduced by prior treatment with radiation therapy.

摘要

目的

本研究的目的是调查自动配准技术在解读从脑肿瘤患者获取的容积磁共振成像(MR)和高分辨率氟代脱氧葡萄糖正电子发射断层显像(FDG-PET)图像中的应用。

方法

对21例脑肿瘤患者进行了一次或多次MRI和高分辨率FDG-PET检查。使用自动容积和表面匹配算法对数据进行配准。构建了包含重新切片的钆增强前和增强后 spoiled GRE、T2加权SE以及PET数据的复合图像,以将PET图像上各区域的强度与对应于正常灰质、白质和钆增强的区域相关联。

结果

根据头部外部表面之间的距离,估计MR和PET图像之间的配准精度在1-2毫米以内。在24次检查中的12次中,诊断为复发性肿瘤,其中只有5次显示出FDG摄取高于正常灰质的区域。在24项研究中的19项中,发现配准后的MR图像提供的解剖背景对于基于FDG摄取区分复发性肿瘤和坏死很重要。

结论

发现自动配准是解读高分辨率PET图像的一个重要因素。对于靠近皮质的小病变以及FDG摄取因先前放疗而降低的情况尤其如此。

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