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桥脑-中脑病变及电刺激对未麻醉猫的PGO波和眼动电位的影响。

Effects of ponto-mesencephalic lesions and electrical stimulation upon PGO waves and EMPs in unanesthetized cats.

作者信息

Sakai K, Petitjean F, Jouvet M

出版信息

Electroencephalogr Clin Neurophysiol. 1976 Jul;41(1):49-63. doi: 10.1016/0013-4694(76)90214-5.

Abstract
  1. Phasic waves similar to those observed in the visual system of the awake and sleeping cat ("EMP" and "PGO waves" respectively) were recorded in an area surrounding brachium conjunctivum of the mesencephalic reticular formation (MRF). 2. MRF waves during paradoxical sleep (PS) (MRF PGO wave) occurred 1--2 msec after the waves recorded in the abducens nucleus (N.VI PGO waves), while MRF waves in the alert cat (MRF EMPs) occurred 35--70 msec or more after EMPs in N.VI. 3. Both MRF EMPs in the dark and MRF PGO waves preceded EMPs and PGO waves recorded in the lateral geniculate body (LGB) by 20 msec. 4. There was a time lag of about 40 msec between right and left MRF PGO waves. 5. MRF stimulation elicited short latency responses (5--9 msec) in LGB during waking and sleeping states. During PS, the same stimuli further elicited PGO waves (latency greater than or equal to 40 msec) in the same structure. 6. Stimulation of LGB elicited short latency responses (5--9msec) in MRF. 7. Unilateral MRF lesions reduced by about 50% the number of LGB PGO waves without modifying other characteristics of the PGO wave activity. 8. Following unilateral MRF lesion, LGB EMPs were observed with each eye movement in the dark. However, LGB EMPs ipsilateral to the lesion were greatly reduced in amplitude and followed the EMPs in the opposite LGB by a time lag similar to that observed between bilateral LGB PGO waves. 9. Bilateral MRF lesions completely abolished PGO waves and EMPs observed with the animal in the dark. However, EMPs observed in the light remained unmodified. 10. From the present study it was concluded that LGB and visual cortex gross potential changes related to eye movements in the alert cat have both retinal and non-retinal components. Further, the significance of the MRF area in the mechanisms of EMP and PGO wave activities was discussed.
摘要
  1. 在中脑网状结构(MRF)结合臂周围区域记录到了与在清醒和睡眠猫的视觉系统中观察到的类似的相位波(分别为“EMP”和“PGO波”)。2. 异相睡眠(PS)期间的MRF波(MRF PGO波)在展神经核(N.VI PGO波)记录到的波之后1 - 2毫秒出现,而警觉猫的MRF波(MRF EMPs)在N.VI的EMPs之后35 - 70毫秒或更长时间出现。3. 黑暗中的MRF EMPs和MRF PGO波都比外侧膝状体(LGB)记录到的EMPs和PGO波提前20毫秒。4. 左右MRF PGO波之间存在约40毫秒的时间延迟。5. MRF刺激在清醒和睡眠状态下在LGB中引发短潜伏期反应(5 - 9毫秒)。在PS期间,相同刺激在同一结构中进一步引发PGO波(潜伏期大于或等于40毫秒)。6. 刺激LGB在MRF中引发短潜伏期反应(5 - 9毫秒)。7. 单侧MRF损伤使LGB PGO波的数量减少约50%,而不改变PGO波活动的其他特征。8. 单侧MRF损伤后,在黑暗中每次眼球运动时都观察到LGB EMPs。然而,损伤同侧的LGB EMPs振幅大大降低,并在时间延迟上跟随对侧LGB的EMPs,这与双侧LGB PGO波之间观察到的情况相似。9. 双侧MRF损伤完全消除了动物在黑暗中观察到的PGO波和EMPs。然而,在光照下观察到的EMPs保持不变。10. 从本研究得出结论,警觉猫中与眼球运动相关的LGB和视觉皮层总体电位变化既有视网膜成分也有非视网膜成分。此外,还讨论了MRF区域在EMP和PGO波活动机制中的意义。

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