Hock H S, Balz G W, Eastman K E
Department of Psychology, Florida Atlantic University, Boca Raton 33431, USA.
Perception. 1996;25(8):887-900. doi: 10.1068/p250887.
Evidence is reported that stationarity rather than motion can be perceived for displaced stimuli, not because of insufficient motion energy for the stimulus to activate individual motion detectors, but because of cooperative interactions that actively suppress the perception of motion. A long row of evenly spaced dots was presented in counterphase; the dots presented during each 180 ms frame were located midway between the dots presented during the previous frame. When either a blank interval as brief as 15 ms was inserted between successive frames or the luminance polarity of the dots was reversed on successive frames, the unidirectional motion pattern perceived for small interdot distances (small displacements) was replaced by the perception of stationarity. However, when under the same conditions a single dot was displaced over the same small distances, motion rather than stationarity was perceived. The contrasting results for the long row of displaced dots and the single displaced dot indicated that when the activation of motion detectors is weakened (by nonzero interframe intervals and/or the reversal of luminance polarity), the perception of motion can be actively suppressed by the collective effects of inhibitory interactions among the large ensemble of detectors that is activated by the long row of dots.
有证据表明,对于位移刺激,人们可以感知到静止而非运动,这并非因为刺激的运动能量不足而无法激活单个运动探测器,而是由于协同相互作用会主动抑制运动感知。以反相形式呈现一长排均匀间隔的点;在每个180毫秒帧期间呈现的点位于前一帧期间呈现的点的中间位置。当在连续帧之间插入短至15毫秒的空白间隔,或者在连续帧上反转点的亮度极性时,对于小点间距(小位移)所感知到的单向运动模式会被静止感知所取代。然而,在相同条件下,当单个点在相同的小距离上位移时,人们感知到的是运动而非静止。长排位移点和单个位移点的对比结果表明,当运动探测器的激活被削弱(通过非零帧间间隔和/或亮度极性反转)时,由长排点激活的大量探测器之间抑制性相互作用的集体效应可以主动抑制运动感知。