Tir Mélissa, Delmaire Christine, le Thuc Vianney, Duhamel Alain, Destée Alain, Pruvo Jean-Pierre, Defebvre Luc
Department of Neurology, Roger Salengro Hospital, Lille University Medical Centre, Lille Cedex, France.
Mov Disord. 2009 Apr 30;24(6):863-70. doi: 10.1002/mds.22463.
The aim of this study was to evaluate in vivo changes in the brain's macro- and microstructure (notably in the motor system) in the parkinsonian variant of multiple system atrophy (MSA-P) and in Parkinson's disease (PD) and to characterize the cerebral anatomical differences between the two conditions. We used a combination of voxel-based morphometry (VBM) and whole-brain, voxel-based diffusion tensor imaging analysis (VB-DTI). Forty-seven right-handed subjects (14 MSA-P patients, 19 PD patients, and 14 controls) were evaluated using VBM and VB-DTI in an analysis of covariance (ANCOVA) with a significance threshold set to P < 0.005. In MSA-P patients, VBM analysis revealed a lower density of grey matter (GM) in a motor-related circuit (especially in the left primary motor cortex, PMC), relative to PD patients, and in the left supplementary motor area (SMA), relative to controls). Diffusion tensor imaging analysis revealed lower fractional anisotropy (FA) values in the left PMC and the right cerebellum in MSA-P patients, compared with controls. Using a volumetric diffusion technique, our study revealed selective tissue degeneration in motor circuits, regardless of the volume loss detected in VBM and in agreement with pathology reports and clinical motor characteristics. Our findings suggest that MSA-P is characterized by both macro- and microstructural changes in the sensorimotor circuit.
本研究旨在评估多系统萎缩帕金森型(MSA-P)和帕金森病(PD)患者大脑的宏观和微观结构变化(尤其是运动系统),并描述这两种疾病之间的脑解剖学差异。我们结合使用了基于体素的形态计量学(VBM)和全脑基于体素的扩散张量成像分析(VB-DTI)。47名右利手受试者(14名MSA-P患者、19名PD患者和14名对照)接受了VBM和VB-DTI评估,并进行协方差分析(ANCOVA),显著性阈值设定为P<0.005。在MSA-P患者中,VBM分析显示,与PD患者相比,运动相关回路(尤其是左侧初级运动皮层,PMC)的灰质(GM)密度较低;与对照相比,左侧辅助运动区(SMA)的灰质密度较低。扩散张量成像分析显示,与对照相比,MSA-P患者左侧PMC和右侧小脑的分数各向异性(FA)值较低。使用容积扩散技术,我们的研究揭示了运动回路中的选择性组织退化,无论在VBM中检测到的体积损失如何,这与病理报告和临床运动特征一致。我们的研究结果表明,MSA-P的特征是感觉运动回路的宏观和微观结构变化。