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Blind saccades: an asynchrony between seeing and looking.

机译:盲目扫视:看与看之间的不同步。

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摘要

Saccades may not always wait for the completion of the perceptual analysis. By taking advantage of a motion-induced illusion of position and of the spontaneous scatter of saccade latency, we showed that in normal observers, regular saccades (latency, approximately 200 ms) were accurately directed to the target, whereas at higher latencies, saccades were increasingly biased by visual motion until they reflected the perceptual illusion. We reconstructed the time course of saccadic direction coding and identified an early phase in which saccades are mostly predictive (latencies less than approximately 100 ms), followed by a phase in which saccades are guided by the target position signal (latencies approximately 100-250 ms), and a later phase associated with the buildup of mislocalization (approximately 250-450 ms). This transient dissociation between action and perception indicates that seeing and looking are based on asynchronous processes, possibly because of independent thresholds for saccades and perceptual localization. The metrics of a saccade would then reflect the evolution of cortical visual signals from a predictive state to a perceptual state, passing through an intermediate visuomotor state. If saccades occur during the visuomotor state, they escape the tricks of perception.
机译:扫视可能并不总是等待感知分析的完成。通过利用运动引起的位置错觉和扫视延迟的自发散布,我们显示出在正常观察者中,常规扫视(潜伏期大约为200毫秒)可以精确地对准目标,而在更高的潜伏期,扫视则是越来越多地受到视觉运动的偏见,直到它们反映出感知上的错觉为止。我们重构了方向性方向编码的时间过程,并确定了一个早期阶段,其中扫视多数是预测性的(等待时间小于大约100毫秒),然后是一个阶段,其中扫视由目标位置信号引导(大约100-250毫秒的等待时间) ),以及与定位错误(约250-450毫秒)相关的后期阶段。动作和感知之间的这种暂时分离表明,看和看是基于异步过程的,这可能是由于扫视和感知定位的独立阈值所致。扫视运动的度量随后将反映皮层视觉信号从预测状态到感知状态(通过中间运动运动状态)的演变。如果在视觉运动状态下发生扫视,它们将逃脱感知的技巧。

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