Gemba H, Sasaki K
Department of Physiology, Faculty of Medicine, Kyoto University, Japan.
Exp Brain Res. 1988;70(1):43-9. doi: 10.1007/BF00271845.
Field potentials on the surface and at a depth of 2.0-3.0 mm in the cerebral cortex were recorded with chronically implanted electrodes in various areas of a monkey. The potentials associated with movements in response to auditory stimuli (audio-initiated hand movement) were observed during the learning process of the movement. The monkey had to lift a lever by wrist extension within the duration of the stimulus (tone of 1000 Hz) lasting for about 900, 700 or 500 ms depending on the stage of the learning process. On the first training day, potentials appeared in the primary auditory, auditory association, prefrontal and premotor cortices of a naive monkey. The potentials of the auditory association, prefrontal and premotor cortices became less marked on the next and following days. After a few weeks of training, the potential of the auditory association cortex started to increase again, while the monkey still lifted the lever randomly. When the potential of the auditory association cortex grew to a certain extent, the monkey began to respond to the stimulus with the movement, and potentials appeared in the motor cortex in response to the auditory stimulus. After this process, the potentials in the auditory association and motor cortices gradually increased with further training, and the movement became shorter and less variable in reaction time. The potential in the motor cortex was shown to be mediated by the neocerebellum and superficial thalamo-cortical projection.(ABSTRACT TRUNCATED AT 250 WORDS)
在猴子大脑皮层的不同区域,用长期植入的电极记录了大脑皮层表面及深度为2.0 - 3.0毫米处的场电位。在运动学习过程中,观察到了与对听觉刺激做出反应的运动(听觉引发的手部运动)相关的电位。猴子必须在持续约900、700或500毫秒的刺激(1000赫兹音调)持续时间内,通过伸展手腕抬起杠杆,这取决于学习过程的阶段。在训练的第一天,一只未经过训练的猴子的初级听觉、听觉联合、前额叶和运动前皮层出现了电位。在接下来的几天及之后,听觉联合、前额叶和运动前皮层的电位变得不那么明显。经过几周的训练后,听觉联合皮层的电位又开始增加,而此时猴子仍然随机地抬起杠杆。当听觉联合皮层的电位增长到一定程度时,猴子开始用运动对刺激做出反应,并且运动皮层出现了对听觉刺激的电位反应。经过这个过程后,随着进一步训练,听觉联合和运动皮层的电位逐渐增加,并且运动的反应时间变得更短且变化更小。运动皮层中的电位被证明是由新小脑和丘脑 - 皮层浅层投射介导的。(摘要截选至250字)