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A motion-energy model predicts the direction discrimination and MAE duration of two-stroke apparent motion at high and low retinal illuminance

机译:运动能量模型预测在高和低视网膜照度下两冲程视在运动的方向辨别力和MAE持续时间

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摘要

Two-stroke apparent motion offers a challenge to current theoretical models of motion processing and is thus a useful tool for investigating motion sensor input. The stimulus involves repeated presentation of two pattern frames containing a spatial displacement, with a blank inter-stimulus interval (ISI) at one of the two-frame transitions. The resulting impression of continuous motion was measured here using both direction discrimination and motion after-effect duration in order to assess the extent to which data using the two measures can be explained by a computational model without reference to attentive tracking mechanisms. The motion-energy model was found to offer a very good account of the psychophysical data using similar parameters for both tasks. The experiment was run under both photopic and scotopic retinal illumination. Data revealed that the optimum ISI for perceiving two-stroke apparent motion shifts to longer ISIs under scotopic conditions, providing evidence for a biphasic impulse response at low luminance. Best-fitting model parameters indicate that motion sensors receive inputs from temporal filters whose central temporal frequency shifts from 2.5 to 3.0 Hz at high retinal illuminance to 1.0–1.5 Hz at low retinal illuminance.
机译:二冲程视在运动对当前的运动处理理论模型提出了挑战,因此是研究运动传感器输入的有用工具。刺激涉及重复显示两个包含空间位移的图案帧,在两个帧过渡之一处具有空白的刺激间间隔(ISI)。在此使用方向判别和运动后效应持续时间两者来测量连续运动的最终印象,以便评估可以通过计算模型解释使用这两种方法的数据的程度,而无需参考注意力跟踪机制。使用运动能量模型可以很好地说明心理物理数据,这两个任务使用相似的参数。实验在明视和暗视视网膜照明下进行。数据显示,在暗视条件下,感知二冲程视在运动的最佳ISI移至更长的ISI,为低亮度下的双相脉冲响应提供了证据。最佳拟合模型参数表明,运动传感器从时态滤波器接收输入,时态滤波器的中央时域频率从高视网膜照明度时的2.5到3.0Hz转变为低视网膜照明度时的1.0-1.5Hz。

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