Ma Chaolin, Ma Xuan, Fan Jing, He Jiping
Institute of Life Science and School of Life Science, Nanchang University, Nanchang, 330031, China.
School of Biological and Health Systems Engineering, Arizona State University, Tempe, AZ, 85287, USA.
Neurosci Bull. 2017 Aug;33(4):383-395. doi: 10.1007/s12264-017-0126-1. Epub 2017 Apr 7.
It is disputed whether those neurons in the primary motor cortex (M1) that encode hand orientation constitute an independent channel for orientation control in reach-to-grasp behaviors. Here, we trained two monkeys to reach forward and grasp objects positioned in the frontal plane at different orientation angles, and simultaneously recorded the activity of M1 neurons. Among the 2235 neurons recorded in M1, we found that 18.7% had a high correlation exclusively with hand orientation, 15.9% with movement direction, and 29.5% with both movement direction and hand orientation. The distributions of neurons encoding hand orientation and those encoding movement direction were not uniform but coexisted in the same region. The trajectory of hand rotation was reproduced by the firing patterns of the orientation-related neurons independent of the hand reaching direction. These results suggest that hand orientation is an independent component for the control of reaching and grasping activity.
在初级运动皮层(M1)中,那些编码手部方位的神经元是否构成了抓握行为中方位控制的独立通道,这一点存在争议。在这里,我们训练了两只猴子向前伸手抓取位于额平面不同方位角的物体,并同时记录M1神经元的活动。在M1记录的2235个神经元中,我们发现18.7%的神经元仅与手部方位高度相关,15.9%与运动方向高度相关,29.5%与运动方向和手部方位都高度相关。编码手部方位的神经元和编码运动方向的神经元分布并不均匀,而是共存于同一区域。与方位相关的神经元的放电模式再现了手部旋转轨迹,而与手部伸展方向无关。这些结果表明,手部方位是控制伸手和抓握活动的一个独立成分。