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与感知有方向光流的地心引力垂直相关的瞳孔反应。

Pupil responses associated with the perception of gravitational vertical under directional optic flows.

机构信息

Department of Otorhinolaryngology-Head and Neck Surgery, Dongguk University College of Medicine, Ilsan Hospital, Goyang, Republic of Korea.

Department of Computer Science and Engineering, Korea University College of Informatics, Seoul, Republic of Korea.

出版信息

Sci Rep. 2021 Oct 29;11(1):21303. doi: 10.1038/s41598-021-00346-y.

Abstract

This study assessed the pupil responses in the sensory integration of various directional optic flows during the perception of gravitational vertical. A total of 30 healthy participants were enrolled with normal responses to conventional subjective visual vertical (SVV) which was determined by measuring the difference (error angles) between the luminous line adjusted by the participants and the true vertical. SVV was performed under various types of rotational (5°/s, 10°/s, and 50°/s) and straight (5°/s and 10°/s) optic flows presented via a head-mounted display. Error angles (°) of the SVV and changes in pupil diameters (mm) were measured to evaluate the changes in the visually assessed subjective verticality and related cognitive demands. Significantly larger error angles were measured under rotational optic flows than under straight flows (p < 0.001). The error angles also significantly increased as the velocity of the rotational optic flow increased. The pupil diameter increased after starting the test, demonstrating the largest diameter during the final fine-tuning around the vertical. Significantly larger pupil changes were identified under rotational flows than in straight flows. Pupil changes were significantly correlated with error angles and the visual analog scale representing subjective difficulties during each test. These results suggest increased pupil changes for integrating more challenging visual sensory inputs in the process of gravity perception.

摘要

本研究评估了在感知重力垂直时,各种方向光流的感觉综合中的瞳孔反应。共有 30 名健康参与者被纳入研究,他们对传统的主观垂直视觉 (SVV) 的反应正常,这是通过测量参与者调整的发光线与真实垂直之间的差异 (误差角) 来确定的。SVV 在通过头戴式显示器呈现的各种类型的旋转 (5°/s、10°/s 和 50°/s) 和直线 (5°/s 和 10°/s) 光流下进行。测量 SVV 的误差角 (°) 和瞳孔直径的变化 (mm),以评估视觉评估的主观垂直性和相关认知需求的变化。与直线流动相比,旋转流动下测量到的误差角明显更大 (p<0.001)。随着旋转光流速度的增加,误差角也显著增加。测试开始后,瞳孔直径增大,在最后围绕垂直的微调过程中显示出最大直径。与直线流动相比,在旋转流动下瞳孔变化明显更大。瞳孔变化与误差角和代表每次测试主观难度的视觉模拟量表显著相关。这些结果表明,在感知重力的过程中,为了整合更具挑战性的视觉感觉输入,瞳孔变化增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a4f/8556311/7b0d7e922e08/41598_2021_346_Fig1_HTML.jpg

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