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壳核体积和弥散在早发性家族性克雅氏病中的变化。

Putaminal volume and diffusion in early familial Creutzfeldt-Jakob disease.

机构信息

Department of Psychiatry, Mount Sinai School of Medicine, P.O. Box 1230, One Gustave Levy Place, New York, NY 10029, USA.

出版信息

J Neurol Sci. 2010 Jan 15;288(1-2):129-34. doi: 10.1016/j.jns.2009.09.019. Epub 2009 Oct 13.

Abstract

BACKGROUND

The putamen is centrally implicated in the pathophysiology of Creutzfeldt-Jakob Disease (CJD). To our knowledge, its volume has never been measured in this disease. We investigated whether gross putaminal atrophy can be detected by MRI in early stages, when the diffusion is already reduced.

METHODS

Twelve familial CJD patients with the E200K mutation and 22 healthy controls underwent structural and diffusion MRI scans. The putamen was identified in anatomical scans by two methods: manual tracing by a blinded investigator, and automatic parcellation by a computerized segmentation procedure (FSL FIRST). For each method, volume and mean Apparent Diffusion Coefficient (ADC) were calculated.

RESULTS

ADC was significantly lower in CJD patients (697+/-64 microm(2)/s vs. 750+/-31 microm(2)/s, p<0.005), as expected, but the volume was not reduced. The computerized FIRST delineation yielded comparable ADC values to the manual method, but computerized volumes were smaller than manual tracing values.

CONCLUSIONS

We conclude that significant diffusion reduction in the putamen can be detected by delineating the structure manually or with a computerized algorithm. Our findings confirm and extend previous voxel-based and observational studies. Putaminal volume was not reduced in our early-stage patients, thus confirming that diffusion abnormalities precede detectible atrophy in this structure.

摘要

背景

壳核在克雅氏病(CJD)的病理生理学中起着核心作用。据我们所知,在这种疾病中,其体积从未被测量过。我们研究了在扩散已经降低的早期阶段,MRI 是否可以检测到壳核的明显萎缩。

方法

12 名携带 E200K 突变的家族性 CJD 患者和 22 名健康对照者接受了结构和扩散 MRI 扫描。壳核通过两种方法在解剖扫描中被识别:由一位盲法调查员进行手动追踪,以及通过计算机分割程序(FSL FIRST)进行自动分割。对于每种方法,计算了体积和平均表观扩散系数(ADC)。

结果

正如预期的那样,CJD 患者的 ADC 值显著降低(697+/-64 microm(2)/s 比 750+/-31 microm(2)/s,p<0.005),但体积没有减少。计算机 FIRST 勾画得到的 ADC 值与手动方法相当,但计算机勾画的体积小于手动追踪的值。

结论

我们得出结论,通过手动或计算机算法勾画结构,可以检测到壳核的明显扩散减少。我们的发现证实并扩展了以前的基于体素和观察性研究。我们的早期患者的壳核体积没有减少,这证实了在该结构中,扩散异常先于可检测到的萎缩。

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