Hoshina Y
No To Shinkei. 1984 Mar;36(3):285-92.
In order to establish the most adequate method to lead the photically evoked lid potential changes, their physiological properties were studied from standpoint of dark or light adaptation, which is known to be due to the increase or decrease in the sensitiveness of the retina that is the receptor of the orbicularis oculi reflex. The photically evoked lid potential changes were obtained with the summation technique by the signal processor (7 T 0 8, SAN-EI, Tokyo) in normal subjects. In addition, the average summated responses of the photically evoked lid MV responses, the ERG, EOG and EEG were also recorded simultaneously and discussed polygraphically. The results obtained were as follows: The average evoked lid potential changes in healthy resting subjects with eyes closed were shown to be composed of early rapid component, initial slow component and late slow component, which corresponded to dominant rapid vibrations of the evoked lid MV responses, the a and b waves of ERG and the EOG, respectively. The electromyographic and electrooculographic components were observed to have peak latency of about 60 msec and 200 msec, respectively. The electromyographic and electrooculographic components were found to change corresponding to the level of cortical activity indicated by the EEG patterns. They were gradually suppressed in amplitude according to the decrease of cortical activity and disappeared in stage 2 of natural sleep, although the electroretinographic components remained. With the progress of dark adaptation after adapting from light to darkness, the electromyographic and electrooculographic components in addition to the electroretinographic component of the average lid potential changes were considerably increased in amplitude but hardly changed in peak latency.(ABSTRACT TRUNCATED AT 250 WORDS)
为了建立引导光诱发眼睑电位变化的最合适方法,从暗适应或明适应的角度研究了它们的生理特性,已知暗适应或明适应是由于作为眼轮匝肌反射感受器的视网膜敏感性增加或降低所致。在正常受试者中,通过信号处理器(7T08,日本东京三荣电气)采用叠加技术获得光诱发眼睑电位变化。此外,还同时记录了光诱发眼睑肌电反应、视网膜电图(ERG)、眼电图(EOG)和脑电图(EEG)的平均叠加反应,并进行了多导记录分析。结果如下:闭眼的健康静息受试者的平均诱发眼睑电位变化显示由早期快速成分、初始缓慢成分和晚期缓慢成分组成,它们分别对应于诱发眼睑肌电反应的主要快速振动、ERG的a波和b波以及EOG。观察到肌电成分和眼电成分的峰值潜伏期分别约为60毫秒和200毫秒。发现肌电成分和眼电成分随EEG模式所示的皮质活动水平而变化。随着皮质活动的降低,它们的振幅逐渐受到抑制,并在自然睡眠的第2阶段消失,尽管视网膜电图成分仍然存在。从光适应到暗适应后,随着暗适应的进展,平均眼睑电位变化的肌电成分、眼电成分以及视网膜电图成分的振幅显著增加,但峰值潜伏期几乎没有变化。(摘要截短至250字)