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调制人类瞳孔定向反应的刺激对比度。

Modulation of stimulus contrast on the human pupil orienting response.

机构信息

Centre for Neuroscience Studies, Queen's University, Kingston, ON, Canada.

出版信息

Eur J Neurosci. 2014 Sep;40(5):2822-32. doi: 10.1111/ejn.12641. Epub 2014 Jun 9.

Abstract

The sudden appearance of a novel stimulus initiates a series of responses to orient the body for appropriate actions, including not only shifts of gaze and attention, but also transient pupil dilation. Modulation of pupil dynamics by stimulus properties is less understood, although its effects on other components of orienting have been extensively explored. Microstimulation of the superior colliculus evoked transient pupil dilation, and the initial component of pupil dilation evoked by microstimulation was similar to that elicited by the presentation of salient sensory stimuli, suggesting a coordinated role of the superior colliculus on this behavior, although evidence in humans is yet to be established. To examine pupil orienting responses in humans, we presented visual stimuli while participants fixated on a central visual spot. Transient pupil dilation in humans was elicited after presentation of a visual stimulus in the periphery. The evoked pupil responses were modulated systematically by stimulus contrast, with faster and larger pupil responses triggered by higher contrast stimuli. The pupil response onset latencies for high contrast stimuli were similar to those produced by the light reflex and significantly faster than the darkness reflex, suggesting that the initial component of pupil dilation is probably mediated by inhibition of the parasympathetic pathway. The contrast modulation was pronounced under different levels of baseline pupil size. Together, our results demonstrate visual contrast modulation on the orienting pupil response in humans.

摘要

新颖刺激物的突然出现会引发一系列身体定向反应,包括眼球和注意力的转移,以及瞳孔的短暂扩张。尽管刺激特性对其他定向成分的影响已经得到广泛研究,但人们对瞳孔动力学的调制知之甚少。上丘的微刺激会引起瞳孔的短暂扩张,而微刺激引起的瞳孔扩张的初始成分与显著感觉刺激引起的瞳孔扩张相似,这表明上丘在这种行为中起着协调作用,尽管在人类中还需要建立证据。为了在人类中检查瞳孔定向反应,我们在参与者注视中央视觉点的同时呈现视觉刺激。在外周呈现视觉刺激后,人类会产生短暂的瞳孔扩张。诱发的瞳孔反应被刺激对比度系统地调制,高对比度刺激引发更快更大的瞳孔反应。高对比度刺激的瞳孔反应起始潜伏期与光反射相似,明显快于暗反射,这表明瞳孔扩张的初始成分可能是通过抑制副交感神经通路介导的。在不同的基础瞳孔大小水平下,对比度调制都很明显。总之,我们的结果表明人类的定向瞳孔反应存在视觉对比度调制。

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