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猴上丘中间层的侧向抑制性相互作用。

Lateral inhibitory interactions in the intermediate layers of the monkey superior colliculus.

作者信息

Munoz D P, Istvan P J

机构信息

Department of Physiology, Medical Research Council Group in Sensory-Motor Neuroscience, Queen's University, Kingston, Ontario K7L 3N6, Canada.

出版信息

J Neurophysiol. 1998 Mar;79(3):1193-209. doi: 10.1152/jn.1998.79.3.1193.

Abstract

The intermediate layers of the monkey superior colliculus (SC) contain neurons the discharges of which are modulated by visual fixation and saccadic eye movements. Fixation neurons, located in the rostral pole of the SC, discharge action potentials tonically during visual fixation and pause for most saccades. Saccade neurons, located throughout the remainder of the intermediate layers of the SC, discharge action potentials for saccades to a restricted region of the visual field. We defined the fixation zone as that region of the rostral SC containing fixation neurons and the saccade zone as the remainder of the SC. It recently has been hypothesized that a network of local inhibitory interneurons may help shape the reciprocal discharge pattern of fixation and saccade neurons. To test this hypothesis, we combined extracellular recording and microstimulation techniques in awake monkeys trained to perform oculomotor paradigms that enabled us to classify collicular fixation and saccade neurons. Microstimulation was used to electrically activate the fixation and saccade zones of the ipsilateral and contralateral SC to test for inhibitory and excitatory inputs onto fixation and saccade neurons. Saccade neurons were inhibited at short latencies following electrical stimulation of either the ipsilateral (1-5 ms) or contralateral (2-7 ms) fixation or saccade zones. Fixation neurons were inhibited 1-4 ms after electrical stimulation of the ipsilateral saccade zone. Stimulation of the contralateral saccade zone led to much weaker inhibition of fixation neurons. Stimulation of the contralateral fixation zone led to short-latency (1-2 ms) excitation of fixation neurons. Only a small percentage of saccade and fixation neurons were activated by the electrical stimulation (latency: 0.5-2.0 ms). These responses were confirmed as either orthodromic or antidromic responses using collision testing. The results suggest that a local network of inhibitory interneurons may help shape not only the reciprocal discharge pattern of fixation and saccade neurons but also permit lateral interactions between all regions of the ipsilateral and contralateral SC. These interactions therefore may be critical for maintaining stable visual fixation, suppressing unwanted saccades, and initiating saccadic eye movements to targets of interest.

摘要

猕猴上丘(SC)的中间层包含一些神经元,其放电活动受视觉注视和眼球扫视运动的调节。位于上丘嘴端极的注视神经元在视觉注视期间持续发放动作电位,而在大多数扫视时暂停发放。扫视神经元分布于上丘中间层的其余部分,它们向视野的一个受限区域发放扫视动作电位。我们将注视区定义为上丘嘴端包含注视神经元的区域,将扫视区定义为上丘的其余部分。最近有人提出,局部抑制性中间神经元网络可能有助于塑造注视神经元和扫视神经元的相互放电模式。为了验证这一假设,我们在经过训练能执行动眼神经范式的清醒猕猴中,结合了细胞外记录和微刺激技术,这使我们能够对上丘的注视神经元和扫视神经元进行分类。微刺激用于电激活同侧和对侧上丘的注视区和扫视区,以测试对注视神经元和扫视神经元的抑制性和兴奋性输入。在电刺激同侧(1 - 5毫秒)或对侧(2 - 7毫秒)的注视区或扫视区后,扫视神经元在短潜伏期受到抑制。在电刺激同侧扫视区后1 - 4毫秒,注视神经元受到抑制。刺激对侧扫视区对注视神经元的抑制作用要弱得多。刺激对侧注视区会导致注视神经元出现短潜伏期(1 - 2毫秒)的兴奋。只有一小部分扫视神经元和注视神经元被电刺激激活(潜伏期:0.5 - 2.0毫秒)。使用碰撞测试确认这些反应为顺行或逆行反应。结果表明,局部抑制性中间神经元网络不仅可能有助于塑造注视神经元和扫视神经元的相互放电模式,还可能允许同侧和对侧上丘所有区域之间进行横向相互作用。因此,这些相互作用对于维持稳定的视觉注视、抑制不必要的扫视以及启动向感兴趣目标的眼球扫视运动可能至关重要。

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