Mountcastle V B, Lynch J C, Georgopoulos A, Sakata H, Acuna C
J Neurophysiol. 1975 Jul;38(4):871-908. doi: 10.1152/jn.1975.38.4.871.
Experiments were made on the posterior parietal association cortical areas 5 and in 17 hemispheres of 11 monkeys, 6 M. mulatta and 5 M. arctoides. The electrical signs of the activity of single cortical cells were recorded with microelectrodes in waking animals as they carried out certain behavioral acts in response to a series of sensory cues. The behavioral paradigms were one for detection alone, and a second for detection plus projection of the arm to contact a stationary or moving target placed at arm's length. Of the 125 microelectrode penetrations made, 1,451 neurons were identified in terms of the correlation of their activity with the behavioral acts and their sensitivity or lack of it to sensory stimuli delivered passively; 180 were studied quantitatively. The locations of cortical neurons were identified in serial sections; 94 penetrations and 1,058 neurons were located with certainty. About two-thirds of the neurons of area 5 were activated by passive rotation of the limbs at their joints; of these, 82% were related to single, contralateral joints, 10% to two or more contralateral joints, 6% to ipsilateral, and 2% to joints on both sides of the body. A few of the latter were active during complex bodily postures. A large proportion of area 5 neurons were relatively insensitive to passive joint rotations, as compared with similar neurons of the postcentral gyrus, but were driven to high rates of discharge when the same joint was rotated during an active movement of the animal...
在11只猴子(6只恒河猴和5只熊猴)的17个大脑半球的顶叶后联合皮质区5进行了实验。在清醒的动物执行一系列感官提示的特定行为时,用微电极记录单个皮质细胞的活动电信号。行为范式一种是仅用于检测,另一种是用于检测并将手臂伸出以接触置于一臂远的静止或移动目标。在进行的125次微电极穿刺中,根据其活动与行为动作的相关性以及对被动给予的感觉刺激的敏感性或不敏感性,识别出1451个神经元;对其中180个进行了定量研究。在连续切片中确定了皮质神经元的位置;确定了94次穿刺和1058个神经元的位置。5区约三分之二的神经元在关节处肢体被动旋转时被激活;其中,82%与单个对侧关节有关,10%与两个或更多对侧关节有关,6%与同侧关节有关,2%与身体两侧的关节有关。后者中的一些在复杂身体姿势期间活跃。与中央后回的类似神经元相比,5区的很大一部分神经元对被动关节旋转相对不敏感,但当动物在主动运动期间相同关节旋转时,会被驱动至高放电率……