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采用功能磁共振成像评估皮质下卒中后的皮质连接性。

Cortical connectivity after subcortical stroke assessed with functional magnetic resonance imaging.

作者信息

Grefkes Christian, Nowak Dennis A, Eickhoff Simon B, Dafotakis Manuel, Küst Jutta, Karbe Hans, Fink Gereon R

机构信息

Department of Neurology, University of Cologne, Cologne, Germany.

出版信息

Ann Neurol. 2008 Feb;63(2):236-46. doi: 10.1002/ana.21228.

Abstract

OBJECTIVE

This study aimed at identifying the impact of subcortical stroke on the interaction of cortical motor areas within and across hemispheres during the generation of voluntary hand movements.

METHODS

Twelve subacute stroke patients with a subcortical ischemic lesion and 12 age-matched control subjects were scanned using 3-Tesla functional magnetic resonance imaging. Subjects performed visually paced hand movements with their left, right, or both hands. Changes of effective connectivity among a bilateral network of core motor regions comprising M1, lateral premotor cortex, and the supplementary motor area (SMA) were assessed using dynamic causal modeling.

RESULTS

The data showed significant disturbances in the effective connectivity of motor areas in the patients group: Independently from hand movements, the intrinsic neural coupling between ipsilesional SMA and M1, and the interhemispheric coupling of both SMAs was significantly reduced. Furthermore, movements of the stroke-affected hand showed additional inhibitory influences from contralesional to ipsilesional M1 that correlated with the degree of motor impairment. For bimanual movements, interhemispheric communication between ipsilesional SMA and contralesional M1 was significantly reduced, which also correlated with impaired bimanual performance.

INTERPRETATION

The motor deficit of patients with a single subcortical lesion is associated with pathological interhemispheric interactions among key motor areas. The data suggest that a dysfunction between ipsilesional and contralesional M1, and between ipsilesional SMA and contralesional M1 underlies hand motor disability after stroke. Assessing effective connectivity by means of functional magnetic resonance imaging and dynamic causal modeling might be used in the future for the evaluation of interventions promoting recovery of function.

摘要

目的

本研究旨在确定皮质下卒中对自主手部运动产生过程中半球内和半球间皮质运动区相互作用的影响。

方法

使用3特斯拉功能磁共振成像对12例患有皮质下缺血性病变的亚急性卒中患者和12名年龄匹配的对照受试者进行扫描。受试者用左手、右手或双手进行视觉引导的手部运动。使用动态因果模型评估由M1、外侧运动前皮质和辅助运动区(SMA)组成的双侧核心运动区域网络之间有效连接性的变化。

结果

数据显示患者组运动区的有效连接性存在显著紊乱:与手部运动无关,患侧SMA和M1之间的内在神经耦合以及双侧SMA之间的半球间耦合均显著降低。此外,中风受累手的运动显示出从对侧M1到患侧M1的额外抑制性影响,这与运动障碍程度相关。对于双手运动,患侧SMA和对侧M1之间的半球间通信显著减少,这也与双手运动表现受损相关。

解读

单个皮质下病变患者的运动缺陷与关键运动区之间的病理性半球间相互作用有关。数据表明,患侧和对侧M1之间以及患侧SMA和对侧M1之间的功能障碍是卒中后手运动残疾的基础。未来,通过功能磁共振成像和动态因果模型评估有效连接性可能用于评估促进功能恢复的干预措施。

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