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Pupil dynamics during bistable motion perception

机译:双稳态运动感知中的学生动力学

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Pupil size not only varies to changes in illumination but is also modulated by several cognitive factors, making it a potentially versatile physiological marker of cortical states. We recorded pupil dynamics while subjects continuously reported their bistable perception of ambiguous moving stimuli, plaids, and partially occluded rotating diamonds. We observed small (about 5% of surface change on average) but reliable pupil dilation around (?300 ms to 1.5 s) the button presses indicating the changes of percepts. We found that 70% of pupil dilation could be accounted for by the motor response. The remaining perceptual component was similar for spontaneously occurring transitions and transitions triggered by physical stimulus manipulations. Moreover, the amplitude of pupil modulation in the spontaneous condition was unrelated to the duration of each perceptual state. It is therefore unlikely that the mechanisms of endogenous perceptual bistability reflect in the pupil. In addition, we measured a clear constriction of the pupil after blinks (about 8% of surface change on average). As pupil changes have the potential to entail retino-cortical activity, their monitoring in studies of visual processing could prove worthwhile.
机译:小学生的大小不仅随照明的变化而变化,而且还受多种认知因素的调节,使其成为皮质状态的潜在多功能生理指标。我们记录了学生的动态,而受试者不断报告他们对模棱两可的移动刺激,格子和部分遮挡的旋转钻石的双稳态感知。我们观察到较小的(平均约5%的表面变化),但是在按钮按下(约300毫秒至1.5 s)时瞳孔可靠扩张,表明感知力发生了变化。我们发现,运动反应可以解释70%的瞳孔扩张。对于自发发生的转变和物理刺激操作触发的转变,其余的感知成分相似。而且,自发状态下瞳孔调制的幅度与每个知觉状态的持续时间无关。因此,内源性感知双稳态的机制不太可能反映在瞳孔中。另外,我们测量了眨眼后瞳孔的明显收缩(平均约8%的表面变化)。由于瞳孔变化有可能引起视网膜皮层活动,因此在视觉处理研究中进行监测可能是值得的。

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