Ohishi Hiroko, Ichikawa Jun, Matsuzaki Ryuichi, Kyuhou Shin ichi, Matsuura-Nakao Kazuko, Seki Tomomi, Gemba Hisae
Department of Physiology, Kansai Medical University, Moriguchi 570-8506, Japan.
Neurosci Lett. 2003 Nov 27;352(1):5-8. doi: 10.1016/j.neulet.2003.08.012.
Seven rats were well trained to move lever to the left by right forelimb at self-pace (self-paced forelimb movements). Cortical field potentials associated with self-paced forelimb movements were recorded by electrodes implanted chronically on the surface and at a 2.0 mm depth in the forelimb motor cortex on the left side. A surface-negative, depth-positive potential starting about 1.0 s prior to the movement was recorded in the rostral part of the forelimb motor cortex. Further we found that the premovement potential was eliminated by the cerebellar hemispherectomy on the right side. This suggests the participation of the cerebellar hemisphere in preparing the activity of the motor cortex before self-paced forelimb movements in rats, by cerebello-thalamo-cortical projections.
七只大鼠经过良好训练,能够以自定节奏用右前肢将杠杆移向左方(自定节奏的前肢运动)。通过长期植入左侧前肢运动皮层表面及2.0毫米深度处的电极,记录与自定节奏前肢运动相关的皮层场电位。在前肢运动皮层的喙部记录到一个在运动前约1.0秒开始的表面负性、深度正性电位。此外,我们发现右侧小脑半球切除术后,运动前电位消失。这表明在大鼠自定节奏的前肢运动之前,小脑半球通过小脑-丘脑-皮层投射参与了运动皮层活动的准备过程。