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Response of Neurons in the Lateral Intraparietal Area during a Combined Visual Discrimination Reaction Time Task

机译:视觉识别反应时间组合任务中外侧腹膜区神经元的反应

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摘要

Decisions about the visual world can take time to form, especially when information is unreliable. We studied the neural correlate of gradual decision formation by recording activity from the lateral intraparietal cortex (area LIP) of rhesus monkeys during a combined motion-discrimination reaction-time task. Monkeys reported the direction of random-dot motion by making an eye movement to one of two peripheral choice targets, one of which was within the response field of the neuron. We varied the difficulty of the task and measured both the accuracy of direction discrimination and the time required to reach a decision. Both the accuracy and speed of decisions increased as a function of motion strength. During the period of decision formation, the epoch between onset of visual motion and the initiation of the eye movement response, LIP neurons underwent ramp-like changes in their discharge rate that predicted the monkey's decision. A steeper rise in spike rate was associated with stronger stimulus motion and shorter reaction times. The observations suggest that neurons in LIP integrate time-varying signals that originate in the extrastriate visual cortex, accumulating evidence for or against a specific behavioral response. A threshold level of LIP activity appears to mark the completion of the decision process and to govern the tradeoff between accuracy and speed of perception.
机译:有关视觉世界的决策可能需要时间才能形成,尤其是在信息不可靠时。我们通过记录组合运动识别反应时间任务期间恒河猴的顶壁外侧皮层(区域LIP)的活动来研究逐步决策形成的神经相关性。猴子通过眼睛移动到两个外围选择目标之一来报告随机点运动的方向,其中一个在神经元的响应范围内。我们改变了任务的难度,并测量了方向辨别的准确性和做出决策所需的时间。决策的准确性和速度都随着运动强度的增加而增加。在决策形成期间,即视觉运动开始和眼睛运动反应开始之间的时期,LIP神经元的放电速率经历了斜坡状变化,从而预测了猴子的决策。尖峰率的急剧上升与更强的刺激运动和更短的反应时间有关。观察结果表明,LIP中的神经元整合了随时间变化的信号,这些信号起源于过度的视觉皮层,从而积累了支持或反对特定行为反应的证据。 LIP活动的阈值水平似乎标志着决策过程的完成,并决定了准确性和感知速度之间的权衡。

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