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脑桥交叉性小脑失联络现象:灌注加权 MRI 能否显示功能失活?

Crossed cerebellar diaschisis after stroke: can perfusion-weighted MRI show functional inactivation?

机构信息

Department of Neurology and Center for Stroke Research Berlin, Charité Universitätsmedizin, Berlin, Germany.

出版信息

J Cereb Blood Flow Metab. 2011 Jun;31(6):1493-500. doi: 10.1038/jcbfm.2011.15. Epub 2011 Mar 9.

Abstract

In this study, we aimed to assess the detection of crossed cerebellar diaschisis (CCD) following stroke by perfusion-weighted magnetic resonance imaging (PW-MRI) in comparison with positron emission tomography (PET). Both PW-MRI and 15O-water-PET were performed in acute and subacute hemispheric stroke patients. The degree of CCD was defined by regions of interest placed in the cerebellar hemispheres ipsilateral (I) and contralateral (C) to the supratentorial lesion. An asymmetry index (AI=C/I) was calculated for PET-cerebral blood flow (CBF) and MRI-based maps of CBF, cerebral blood volume (CBV), mean transit time (MTT), and time to peak (TTP). The resulting AI values were compared by Bland-Altman (BA) plots and receiver operating characteristic analysis to detect the degree and presence of CCD. A total of 26 imaging procedures were performed (median age 57 years, 20/26 imaged within 48 hours after stroke). In BA plots, all four PW-MRI maps could not reliably reflect the degree of CCD. In receiver operating characteristic analysis for detection of CCD, PW-CBF performed poorly (accuracy 0.61), whereas CBV, MTT, and TTP failed (accuracy <0.60). On the basis of our findings, PW-MRI at 1.5 T is not suited to depict CCD after stroke.

摘要

在这项研究中,我们旨在通过灌注加权磁共振成像(PW-MRI)评估中风后交叉小脑失联络(CCD)的检测,并与正电子发射断层扫描(PET)进行比较。PW-MRI 和 15O-水-PET 均在急性和亚急性半球性中风患者中进行。通过在与幕上病变同侧(I)和对侧(C)的小脑半球放置感兴趣区来定义 CCD 的程度。为 PET-脑血流(CBF)和基于 MRI 的 CBF、脑血容量(CBV)、平均通过时间(MTT)和达峰时间(TTP)图计算不对称指数(AI=C/I)。通过 Bland-Altman(BA)图和受试者工作特征分析比较得出的 AI 值,以检测 CCD 的程度和存在。共进行了 26 次成像程序(中位数年龄为 57 岁,26 例中有 20 例在中风后 48 小时内进行成像)。在 BA 图中,所有四种 PW-MRI 图均不能可靠地反映 CCD 的程度。在用于检测 CCD 的受试者工作特征分析中,PW-CBF 表现不佳(准确性为 0.61),而 CBV、MTT 和 TTP 则失败(准确性<0.60)。基于我们的发现,1.5T 的 PW-MRI 不适合描绘中风后的 CCD。

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