Nishihira Y, Araki H, Ishihara A, Funase K, Nagao T, Kinjo S
Institute of Health and Sport Sciences, University of Tsukuba, Ibaraki, Japan.
Electromyogr Clin Neurophysiol. 1994 Oct-Nov;34(7):409-14.
We examined the relationship between the Na and Pa components of human MLRs and the performance of different tasks. We also investigated whether MLRs are reliable indices of activity in the central motor-sensory system. The click stimuli we used consistently evoked the Na and Pa components. At CZ, the Na and Pa components significantly decreased for all tasks other than pegging with right hand while at FZ, these components were significantly decreased for all tasks. The Na and Pa latencies were slightly increased during task performances. These results indicate that the Na and Pa components of human MLRs decreased when various tasks were performed, while subjects were concentrating. A general principle of evoked potentials is that latencies decrease as amplitudes increase in excitation due to neural activation. Thus, it would appear that, under the conditions of this study, the pathways from the reticular formation and the thalamus to the primary auditory cortex were inhibited. Since the thalamus is considered to be the relay region for poly-sensory inputs, it is thought that the attenuation of the MLRs and SEPs occurs at the level of cerebral cortex, including the reticular formation, the thalamus, and the primary auditory cortex. Accordingly, since it is inferred that central factors are responsible for the attenuation of the MLRs, Na and Pa components observed during the performance of tasks carried out in the present experiment, it may be concluded that MLRs are reliable indices of activity in the central-motor system.
我们研究了人类中潜伏期反应(MLRs)的N a和P a成分与不同任务表现之间的关系。我们还调查了MLRs是否是中枢运动感觉系统活动的可靠指标。我们使用的点击刺激始终能诱发N a和P a成分。在Cz点,除右手钉板任务外,所有任务的N a和P a成分均显著降低;而在Fz点,所有任务的这些成分均显著降低。在任务执行过程中,N a和P a潜伏期略有增加。这些结果表明,当人类进行各种任务并集中注意力时,MLRs的N a和P a成分会降低。诱发电位的一个一般原则是,由于神经激活,在兴奋时潜伏期会随着振幅的增加而缩短。因此,在本研究条件下,从网状结构和丘脑到初级听觉皮层的通路似乎受到了抑制。由于丘脑被认为是多感觉输入的中继区域,所以认为MLRs和体感诱发电位(SEPs)的衰减发生在包括网状结构、丘脑和初级听觉皮层在内的大脑皮层水平。因此,由于推断中枢因素是本实验中任务执行期间观察到的MLRs衰减、N a和P a成分的原因,所以可以得出结论,MLRs是中枢运动系统活动的可靠指标。