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警觉猫在眼球快速运动和视觉刺激期间全暂停神经元的活动。

Activity of omnipause neurons in alert cats during saccadic eye movements and visual stimuli.

作者信息

Evinger C, Kaneko C R, Fuchs A F

出版信息

J Neurophysiol. 1982 May;47(5):827-44. doi: 10.1152/jn.1982.47.5.827.

Abstract
  1. In the cats trained to follow a target spot with their eyes, activity was recorded from omnipause neurons (OPNs). OPNs discharge at a relatively high steady tonic rate (50-130 spikes/s) during visual fixation and smooth-pursuit eye movements but exhibit a complete cessation of discharge that begins before saccades in any direction. They are located in a compact region of the dorsal pontine tegmentum near the midline, just rostral to the abducens nucleus. 2. The average duration of the horizontal or vertical component of a saccade increases monotonically with pause duration, but a given pause duration is associated with a large range of individual saccade parameters and the timing of the pause, such as the latency from the pause onset to saccade onset or the interval from the maximum saccade velocity to the end of the pause, is no better. However, OPNs can be divided into two distinct groups on the basis of the timing of the pause relative to the parameters of the saccade. One group ceases discharging 32.4 +/- 4.6 ms, on average, before the saccade, while the second pauses 18.2 +/- 3.4 ms before the saccade. 3. Microstimulation at the site of OPNs affects the occurrence and trajectory of saccades but not smooth pursuit or fixation. Sustained electrical stimulation (20 micro A) lasting several seconds prevents the occurrence of saccades while brief trains (10-60 ms), timed to occur early in the saccade, interrupt it in midflight for the duration of the train. The latency to the interruption is about 26 ms. These data support the view that OPNs tonically inhibit the saccadic machinery between saccades and must be turned off to allow a saccade to occur. 4. Almost every (65 of 69) feline OPN exhibited a brief transient increase in activity for visual stimuli moving in any direction with a wide range of velocities. A moving 1 degree spot was generally more effective than a moving full-field, striped background. All units also showed a transient increase in firing when the spot was turned either on or off. Receptive fields plotted with the spot were greater than 250 deg2 and always included the area centralis. Two-thirds of the cells tested also responded to auditory stimuli. 5. Interaction between the excitatory visual input and the saccade-related pause was tested by comparing OPN activity and the saccadic trajectory during eye movements in the dark versus the light and by presenting brief flashes of light during a saccade. During saccades in the dark, the steady firing of OPNs was less than during saccades in the light. Only by stabilizing a flashed spot of light to occur on the area centralis at the beginning of the saccade was it possible to activate an OPN artificially to interrupt the saccade in midflight. Therefore, rather than being instrumental in specifically controlling the saccade trajectory, the visual input, along with the auditory and other sensory inputs, probably serves, under normal visual conditions, to help establish the tonic rate of OPNs. 6...
摘要
  1. 在训练猫用眼睛跟踪目标点的实验中,对视停神经元(OPNs)的活动进行了记录。在视觉注视和平滑跟踪眼球运动期间,OPNs以相对较高的稳定强直频率(50 - 130次/秒)放电,但在向任何方向扫视之前,其放电会完全停止。它们位于脑桥背侧被盖靠近中线的一个紧凑区域,恰好在展神经核的前方。2. 扫视的水平或垂直分量的平均持续时间随停顿持续时间单调增加,但给定的停顿持续时间与大范围的个体扫视参数相关,并且停顿的时间,如从停顿开始到扫视开始的潜伏期或从最大扫视速度到停顿结束的间隔,情况也好不到哪里去。然而,根据停顿相对于扫视参数的时间,OPNs可分为两个不同的组。一组平均在扫视前32.4±4.6毫秒停止放电,而另一组在扫视前18.2±3.4毫秒停顿。3. 在OPNs部位进行微刺激会影响扫视的发生和轨迹,但不影响平滑跟踪或注视。持续数秒的持续电刺激(20微安)可防止扫视的发生,而在扫视早期定时出现的短暂串刺激(10 - 60毫秒)会在飞行过程中中断扫视,持续时间为串刺激的时长。中断的潜伏期约为26毫秒。这些数据支持这样的观点,即OPNs在扫视之间持续抑制扫视机制,并且必须关闭才能使扫视发生。4. 几乎每只(69只中的65只)猫的OPN对向任何方向、以各种速度移动的视觉刺激都表现出短暂的活动瞬态增加。一个移动的1度光斑通常比移动的全场条纹背景更有效。当光斑打开或关闭时,所有单位的放电也会出现瞬态增加。用光斑绘制的感受野大于250度²,并且总是包括中央凹区域。三分之二接受测试的细胞也对听觉刺激有反应。5. 通过比较在黑暗与明亮环境中眼球运动期间的OPN活动和扫视轨迹,以及在扫视期间呈现短暂的闪光,测试了兴奋性视觉输入与扫视相关停顿之间的相互作用。在黑暗中扫视时,OPNs的稳定放电比在明亮中扫视时少。只有通过在扫视开始时将一个闪光的光斑稳定在中央凹区域,才有可能人为激活一个OPN以在飞行过程中中断扫视。因此,在正常视觉条件下,视觉输入与听觉和其他感觉输入一起,可能不是专门用于控制扫视轨迹,而是有助于建立OPNs的强直频率。6...

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