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在无头部约束的猫中,刺激上丘所诱发的注视转移符合运动图谱,但也取决于刺激强度和注视活动。

Gaze shifts evoked by stimulation of the superior colliculus in the head-free cat conform to the motor map but also depend on stimulus strength and fixation activity.

作者信息

Paré M, Crommelinck M, Guitton D

机构信息

Montreal Neurological Institute, Canada.

出版信息

Exp Brain Res. 1994;101(1):123-39. doi: 10.1007/BF00243222.

Abstract

In our previous paper we demonstrated that electrical microstimulation of the fixation area at the rostral pole of the cat superior colliculus (SC) elicits no gaze movement but, rather, transiently suppresses eye-head gaze saccades. In this paper, we investigated the more caudal region of the SC and its interaction with the fixation area. In the alert head-free cat, suprathreshold stimulation in the anterior portion of the SC but outside the fixation area evoked small saccadic shifts of gaze consisting mainly of an eye movement, the head's contribution being small. Stimulating more posteriorly elicited large gaze saccades consisting of an ocular saccade combined with a rapid head movement. At these latter stimulation sites, craniocentric (goal-directed) eye movements were evoked when the cat's head was restrained. The amplitude of eye-head gaze saccades elicited at a particular stimulation site increased with stimulus duration, current strength, and pulse rate, until a constant or "unit" value was reached. The peak velocity of gaze shifts depended on both pulse rate and current strength. The movement direction was not affected by stimulus parameters. The unit gaze vector evoked, in the head-free condition, by stimulating one collicular site was similar to that coded by efferent neurons recorded at that site, thereby indicating a retinotopically coded gaze error representation on the collicular motor map which is not revealed by stimulating the head-fixed animal. Evoked gaze saccades were found to be influenced by fixation behavior. The amplitude of evoked gaze shifts was reduced if stimulation occurred when the hungry animal fixated a food target. Electrical activation of the collicular fixation area was found to mimic well the effects of natural fixation on evoked gaze shifts. Taken together, our results support the view that the overall distribution and level of collicular activity contributes to the encoding of the metrics of gaze saccades. We suggest that the combined levels of activity at the site being stimulated and at the fixation area influence the amplitude of evoked gaze saccades through competition. When stimulation is at low intensities, fixation-related activity reduces the amplitude of evoked gaze saccades. At high activation levels, the site being stimulated dominates and the gaze vector is specified only by that site's collicular output neurons, from which arises the close correspondence between the unit-evoked gaze saccades and the neurally coded gaze vector at that site.

摘要

在我们之前的论文中,我们证明了对猫上丘(SC)吻侧极的注视区域进行电微刺激不会引发注视运动,反而会短暂抑制眼-头注视扫视。在本文中,我们研究了上丘更靠尾侧的区域及其与注视区域的相互作用。在清醒、头部自由活动的猫中,对上丘前部但在注视区域之外进行阈上刺激会引发小的注视扫视位移,主要由眼球运动组成,头部的贡献较小。更靠后部位的刺激会引发由眼球扫视与快速头部运动相结合的大的注视扫视。在这些较靠后的刺激部位,当猫的头部被固定时会诱发以颅为中心(目标导向)的眼球运动。在特定刺激部位诱发的眼-头注视扫视的幅度会随着刺激持续时间、电流强度和脉冲频率增加,直至达到一个恒定或“单位”值。注视位移的峰值速度取决于脉冲频率和电流强度。运动方向不受刺激参数影响。在头部自由活动的情况下,通过刺激一个上丘部位诱发的单位注视向量与在该部位记录的传出神经元编码的注视向量相似,从而表明在上丘运动图谱上存在视网膜拓扑编码的注视误差表征,而这在刺激头部固定的动物时并未显现出来。发现诱发的注视扫视受注视行为影响。如果在饥饿的动物注视食物目标时进行刺激,诱发的注视位移幅度会减小。发现对上丘注视区域的电激活很好地模拟了自然注视对诱发注视位移的影响。综合来看,我们的结果支持这样一种观点,即上丘活动的整体分布和水平有助于注视扫视指标的编码。我们认为,被刺激部位和注视区域的活动水平通过竞争共同影响诱发注视扫视的幅度。当刺激强度较低时,与注视相关的活动会减小诱发注视扫视的幅度。在高激活水平时,被刺激部位占主导,注视向量仅由该部位的上丘输出神经元确定,由此产生单位诱发注视扫视与该部位神经编码注视向量之间的紧密对应关系。

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