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The influence of stimulus duration on visual illusions and simple reaction time.

机译:刺激持续时间对视觉幻觉和简单反应时间的影响。

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Target detection is affected by stimulus intensity. For instance, participants respond faster to larger objects than to smaller objects. In order to compute an object's size, the brain integrates contextual information, for example object distance. Accordingly, the perceived size of an object can be altered via depth cues which modulate perceived object distance. Recently, it has been demonstrated that reaction times are influenced by the perceived rather than by the retinal size of an object, thus indicating that manual responses are generated after the perceptual integration of distance and retinal size. However, the timing aspects of these integration processes to date remain largely unclear. Therefore, the present study investigated the influence of stimulus duration on size-distance integration by means of a simple reaction time paradigm and the well-known Ponzo illusion. In experiment 1, participants responded faster to perceptually longer lines within an illusion-inducing background, whereas no such effect was associated with a neutral background. Experiment 2 revealed that this effect depended on stimulus duration. Stimuli were reliably perceived even with the shortest durations. However, illusion-induced modulations of response times were not observed for stimulus durations shorter than 40?ms. The findings indicate that the integration of context and object information requires visual input to last for at least 40?ms. The data furthermore show that as long as the visual system has not enough time to integrate context and object information, size perception is formed on the basis of lower-level representations.
机译:目标检测受刺激强度的影响。例如,与较大的对象相比,参与者对较小的对象的响应速度更快。为了计算对象的大小,大脑会整合上下文信息,例如对象距离。因此,可以通过深度提示来改变物体的感知大小,该深度提示可以调节感知到的物体距离。近来,已经证明反应时间受感知的而不是物体的视网膜尺寸的影响,因此表明在距离和视网膜尺寸的感知整合之后产生手动响应。但是,到目前为止,这些集成过程的时间安排方面仍然不清楚。因此,本研究通过简单的反应时间范例和著名的庞氏错觉研究了刺激持续时间对大小距离整合的影响。在实验1中,参与者对诱导幻觉的背景中更长的线条反应更快,而中性背景则没有这种影响。实验2表明,这种效应取决于刺激持续时间。即使持续时间最短,也可以可靠地感知刺激。然而,对于短于40?ms的刺激持续时间,未观察到错觉诱导的响应时间调节。研究结果表明,上下文和对象信息的集成要求视觉输入至少持续40毫秒。数据进一步表明,只要视觉系统没有足够的时间来整合上下文和对象信息,大小感知就是在较低级别的表示的基础上形成的。

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