Marchand William R, Lee James N, Thatcher John W, Hsu Edward W, Rashkin Esther, Suchy Yana, Chelune Gordon, Starr Jennifer, Barbera Sharon Steadman
Department of Veterans Affairs, VISN 19 MIRECC, Salt Lake City, Utah 84148, USA.
Neuroreport. 2008 Jun 11;19(9):957-60. doi: 10.1097/WNR.0b013e328302c873.
Models of corticostriatal motor circuitry have focused on the role of the circuit in the hemisphere of the motor cortex providing primary control (contralateral to the movement). We used functional magnetic resonance imaging and functional connectivity analyses to study circuit function in both the controlling and noncontrolling hemispheres. During the completion of a unilateral motor task with either hand, each putamen nucleus demonstrated strong coactivation with structures in both hemispheres. The putamen in the noncontrolling hemisphere (ipsilateral to the movement) coactivated more strongly with the controlling motor cortex than with the noncontrolling cortex. These findings suggest that the two corticostriatal circuits are functionally integrated. New circuit models based on functional connectivity may need to be developed.
皮质纹状体运动回路模型主要关注该回路在提供主要控制作用的运动皮质半球(与运动对侧)中的作用。我们使用功能磁共振成像和功能连接分析来研究控制半球和非控制半球的回路功能。在用任一只手完成单侧运动任务期间,每个壳核均与两个半球的结构表现出强烈的共同激活。非控制半球(与运动同侧)的壳核与控制运动皮质的共同激活比与非控制皮质的共同激活更强。这些发现表明,两个皮质纹状体回路在功能上是整合的。可能需要开发基于功能连接的新回路模型。