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瞳孔对不同速度移动刺激的反应。

Pupillary response to moving stimuli of different speeds.

作者信息

Wang Yuexin, Guo Yining, Wang Jiajia, Liu Ziyuan, Li Xuemin

机构信息

Peking University Third Hospital, Beijing, China.

These authors contributed equally to the article.

出版信息

J Eye Mov Res. 2021 Dec 23;14(1). doi: 10.16910/jemr.14.1.2. eCollection 2021.

Abstract

To investigate the pupillary response to moving stimuli of different speeds and the influence of different luminance environments, 28 participants with normal or corrected-to-normal vision were included. The participants were required to track moving optotypes horizontally, and their pupils were recorded on video with an infrared camera. Stimuli of different speeds from 10 to 60 degree per seconds were presented in low (0.01 cd/m2) and moderate (30 cd/m2) luminance environments. Experiment 1 demonstrated that the motion stimuli induced pupil dilation in a speed-dependent pattern. The pupil dilation increased as the speed increased, and the pupil dilation gradually increased, then reached saturation. Experiment 2 showed that a stimulus targeting the rod- or cone-mediated pathway could induce pupil dilation in a similar speed-dependent pattern. The absolute but not relative pupil dilation in the cone paradigm was significantly larger than that in the rod paradigm. As the speed increased, the pupil dilation in the cone paradigm reached saturation at speed slower than the rod paradigm. Motion stimuli induced pupil dilation in a speed-dependent pattern, and as the motion speed increased, the pupil dilation gradually increased and reached saturation. The speed required to reach saturation in the cone paradigm was slower than in the rod paradigm.

摘要

为了研究瞳孔对不同速度移动刺激的反应以及不同亮度环境的影响,纳入了28名视力正常或矫正至正常的参与者。参与者被要求水平追踪移动的视标,并用红外摄像机记录他们的瞳孔视频。在低亮度(0.01 cd/m²)和中等亮度(30 cd/m²)环境中呈现每秒10至60度的不同速度的刺激。实验1表明,运动刺激以速度依赖模式诱发瞳孔扩张。瞳孔扩张随速度增加而增加,且瞳孔扩张逐渐增加,然后达到饱和。实验2表明,针对视杆或视锥介导通路的刺激可诱发类似速度依赖模式的瞳孔扩张。视锥模式下的绝对瞳孔扩张而非相对瞳孔扩张显著大于视杆模式。随着速度增加,视锥模式下的瞳孔扩张在比视杆模式更低的速度时达到饱和。运动刺激以速度依赖模式诱发瞳孔扩张,并且随着运动速度增加,瞳孔扩张逐渐增加并达到饱和。视锥模式下达到饱和所需的速度比视杆模式慢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b590/9013523/79e26a201a4f/jemr-14-01-c-figure-01.jpg

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