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The Temporal Impulse Response Underlying Saccadic Decisions

机译:基本决策的时间冲动反应

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摘要

Models of perceptual decision making often assume that sensory evidence is accumulated over time in favor of the various possible decisions, until the evidence in favor of one of them outweighs the evidence for the others. Saccadic eye movements are among the most frequent perceptual decisions that the human brain performs. We used stochastic visual stimuli to identify the temporal impulse response underlying saccadic eye movement decisions. Observers performed a contrast search task, with temporal variability in the visual signals. In experiment 1, we derived the temporal filter observers used to integrate the visual information. The integration window was restricted to the first ∼100 ms after display onset. In experiment 2, we showed that observers cannot perform the task if there is no useful information to distinguish the target from the distractor within this time epoch. We conclude that (1) observers did not integrate sensory evidence up to a criterion level, (2) observers did not integrate visual information up to the start of the saccadic dead time, and (3) variability in saccade latency does not correspond to variability in the visual integration period. Instead, our results support a temporal filter model of saccadic decision making. The temporal impulse response identified by our methods corresponds well with estimates of integration times of V1 output neurons.
机译:知觉决策的模型通常假定感觉证据是随着时间的推移而积累的,以支持各种可能的决策,直到支持其中一个的证据超过了另一个证据为止。眼球跳动是人脑最常做出的知觉决策之一。我们使用随机视觉刺激来识别眼动决定眼动的时间冲动反应。观察者执行对比搜索任务,视觉信号随时间变化。在实验1中,我们推导了用于整合视觉信息的时间滤波器观察者。积分窗口仅限于显示开始后的前100毫秒。在实验2中,我们表明,如果在这段时间内没有有用的信息将目标与干扰因素区分开,那么观察者将无法执行任务。我们得出的结论是:(1)观察者并未将感官证据整合到一个标准水平,(2)观察者并未整合到眼跳死区时间开始之前的视觉信息,(3)扫视潜伏期的变异性与变异性不符在视觉融合时期。相反,我们的结果支持了临时决策的时间过滤器模型。通过我们的方法确定的时间冲动响应与V1输出神经元的积分时间估算值非常吻合。

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