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水平眼动扫视时脑干扫视发生器的作用。I. 全方向暂停神经元的放电模式。

Action of the brain stem saccade generator during horizontal gaze shifts. I. Discharge patterns of omnidirectional pause neurons.

作者信息

Phillips J O, Ling L, Fuchs A F

机构信息

Department of Physiology and Biophysics, and Regional Primate Research Center, University of Washington, Seattle, Washington 98195, USA.

出版信息

J Neurophysiol. 1999 Mar;81(3):1284-95. doi: 10.1152/jn.1999.81.3.1284.

Abstract

Omnidirectional pause neurons (OPNs) pause for the duration of a saccade in all directions because they are part of the neural mechanism that controls saccade duration. In the natural situation, however, large saccades are accompanied by head movements to produce rapid gaze shifts. To determine whether OPNs are part of the mechanism that controls the whole gaze shift rather than the eye saccade alone, we monitored the activity of 44 OPNs that paused for rightward and leftward gaze shifts but otherwise discharged at relatively constant average rates. Pause duration was well correlated with the duration of either eye or gaze movement but poorly correlated with the duration of head movement. The time of pause onset was aligned tightly with the onset of either eye or gaze movement but only loosely aligned with the onset of head movement. These data suggest that the OPN pause does not encode the duration of head movement. Further, the end of the OPN pause was often better aligned with the end of the eye movement than with the end of the gaze movement for individual gaze shifts. For most gaze shifts, the eye component ended with an immediate counterrotation owing to the vestibuloocular reflex (VOR), and gaze ended at variable times thereafter. In those gaze shifts where eye counterrotation was delayed, the end of the pause also was delayed. Taken together, these data suggest that the end of the pause influences the onset of eye counterrotation, not the end of the gaze shift. We suggest that OPN neurons act to control only that portion of the gaze movement that is commanded by the eye burst generator. This command is expressed by driving the saccadic eye movement directly and also by suppressing VOR eye counterrotation. Because gaze end is less well correlated with pause end and often occurs well after counterrotation onset, we conclude that elements of the burst generator typically are not active till gaze end, and that gaze end is determined by another mechanism independent of the OPNs.

摘要

全向停顿神经元(OPN)在所有方向的扫视过程中都会停顿,因为它们是控制扫视持续时间的神经机制的一部分。然而,在自然情况下,大的扫视会伴随着头部运动以产生快速的注视转移。为了确定OPN是否是控制整个注视转移而非仅眼扫视的机制的一部分,我们监测了44个OPN的活动,这些OPN在向右和向左注视转移时会停顿,但在其他情况下以相对恒定的平均速率放电。停顿持续时间与眼或注视运动的持续时间高度相关,但与头部运动的持续时间相关性较差。停顿开始时间与眼或注视运动的开始紧密对齐,但与头部运动的开始仅松散对齐。这些数据表明,OPN停顿并不编码头部运动的持续时间。此外,对于个体注视转移,OPN停顿的结束通常与眼运动的结束比与注视运动的结束更紧密对齐。对于大多数注视转移,由于前庭眼反射(VOR),眼成分以立即反向旋转结束,注视此后在不同时间结束。在那些眼反向旋转延迟的注视转移中,停顿的结束也会延迟。综合这些数据表明,停顿的结束影响眼反向旋转的开始,而不是注视转移的结束。我们认为,OPN神经元仅作用于控制由眼爆发发生器指令的注视运动部分。该指令通过直接驱动眼球扫视运动以及抑制VOR眼反向旋转来表达。由于注视结束与停顿结束的相关性较差,并且通常在反向旋转开始后很久才发生,我们得出结论,爆发发生器的元件通常直到注视结束才活跃,并且注视结束由独立于OPN的另一种机制决定。

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