首页> 外文期刊>The European Journal of Neuroscience >Neuronal activity in the superior colliculus related to saccade initiation during coordinated gaze-reach movements.
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Neuronal activity in the superior colliculus related to saccade initiation during coordinated gaze-reach movements.

机译:协同凝视范围运动中上扫的神经元活动与上扫有关。

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摘要

One must be quick and precise when foveating targets to be reached, because the eyes have to guide the hand trajectory by visual feedback, and we may miss a rapidly moving target if our grasping is not fast and accurate enough. To this end, our brains developed mechanisms coordinating gaze and hand movements to optimize the way in which we foveate and reach. One of these mechanisms is the facilitation of the primary saccade--proven in humans and confirmed here in monkeys--which allows the generation of short-latency gaze movements when reaching towards visual targets. Here we tested whether the neuronal activity in the superior colliculus (SC) accounts for this mechanism; alternatively, cortical saccade-related areas could play a major role in the fast initiation of saccades during such elaborated behaviours bypassing the SC. Upon presentation of a target, neurons located at the rostral pole of the SC started the saccade-related pause in their activity earlier in tasks involving coordinated gaze-reach movements than in tasks in which the saccades were made in isolation. In the same tasks neurons located at the caudal SC reached peak firing rates earlier in coordinated gaze-reach movements than with isolated saccades, confirming the tight coupling between their burst activity latencies and the saccadic reaction times. In sum, our results extend the role of the SC in saccade initiation to coordinated gaze-reach movements, identifying its activity as an important part of the distributed neural system for eye-hand coordination.
机译:当要达到目标时,必须快速而精确,因为眼睛必须通过视觉反馈来引导手部轨迹,并且如果我们的抓紧不够准确,我们可能会错过快速移动的目标。为此,我们的大脑开发了协调注视和手部动作的机制,以优化我们进食和伸手的方式。这些机制之一是促进初级扫视(已在人类中得到证实,并在猴子中得到了证实),当到达视觉目标时,这可以产生短暂的凝视动作。在这里,我们测试了上丘(SC)中的神经元活动是否解释了这种机制。另外,在这种精心设计的行为绕过SC的过程中,与皮质扫视有关的区域可能在扫视的快速启动中起主要作用。呈现目标后,位于SC延髓极的神经元在涉及协调注视-到达运动的任务中比在单独进行扫视的任务中更早地开始了与扫视有关的暂停。在相同的任务中,位于尾部SC的神经元在协调的凝视范围运动中比在单独的扫视运动中更早达到峰值发射速率,证实了其爆发活动潜伏期和眼跳反应时间之间的紧密联系。总而言之,我们的结果将SC在扫视运动中的作用扩展到协调的凝视范围运动,从而将其活动确定为分布式神经系统中手眼协调的重要组成部分。

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