The relationship between visual motion detect thresholds and visual sensitivity to medial/lateral balance control.

IF 1.1 4区 心理学 Q3 OPHTHALMOLOGY
Stephen J DiBianca, Hendrik Reimann, Julia Gray, Robert J Peterka, John J Jeka
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引用次数: 0

Abstract

The ability to differentiate between self-motion and motion in the environment is important for maintaining upright balance control. Visual motion can elicit the sensation of a fall by cueing false position sense. This study explores the relationship between thresholds for visual motion detection (VMDTs) and visual sensitivity to balance disturbances while walking. Thirty young adults (18-35 years) and 30 older adults (55-79 years) participated in a counter-balanced study where they: (1) walked on a self-paced treadmill within a virtual environment that delivered frontal plane multi-sine visual disturbances at three amplitudes (6°, 10°, and 15°), and (2) performed 100 trials of a two-alternative forced choice (2AFC) task, discriminating between a counterclockwise ("left") and clockwise ("right") rotation of a visual scene under three conditions (standing, standing with optic flow, and walking). Visual sensitivity was measured using frequency response functions of the center of mass displacement relative to the screen tilt (cm/deg). VMDTs were measured by fitting a psychometric curve to the 2AFC task responses. Significant positive correlations between measures of visual sensitivity and VMDTs were found for seven of nine conditions in young adults, with nonsignificant positive correlations in older adults. VMDTs were higher in older adults, though not significantly in the standing condition, indicating more motion in the environment is required for older adults to consciously perceive it. The positive correlations suggest that individuals with lower motion detection thresholds more accurately differentiate between self-motion and motion in the environment, resulting in lower responses to visual disturbances.

视觉运动检测阈值与视觉对内侧/外侧平衡控制的敏感性之间的关系。
区分自我运动和环境运动的能力对于保持直立平衡控制很重要。视觉运动可以通过提示错误的位置感而引起跌倒的感觉。本研究探讨了行走时视觉运动检测阈值与视觉对平衡干扰的敏感性之间的关系。30名年轻人(18-35岁)和30名老年人(55-79岁)参加了一项平衡研究,他们:(1)在虚拟环境中的自定节奏跑步机上行走,该环境在三个幅度(6°,10°和15°)下提供正面多正弦视觉干扰;(2)在三种条件下(站立,站着光流和行走)进行100次双选项强迫选择(2AFC)任务试验,区分视觉场景的逆时针(“左”)和顺时针(“右”)旋转。使用质量中心位移相对于屏幕倾斜(厘米/度)的频率响应函数来测量视觉灵敏度。通过拟合2AFC任务反应的心理测量曲线来测量vmdt。在年轻人的9种情况中,有7种情况下的视觉灵敏度和vmdt之间存在显著的正相关,而在老年人中则没有显著的正相关。老年人的vmdt更高,尽管在站立状态下并不明显,这表明老年人需要在环境中更多的运动来有意识地感知它。正相关表明,运动检测阈值较低的个体更准确地区分自我运动和环境中的运动,从而导致对视觉干扰的反应较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Perception
Perception 医学-心理学
CiteScore
2.80
自引率
5.90%
发文量
74
审稿时长
4-8 weeks
期刊介绍: Perception is a traditional print journal covering all areas of the perceptual sciences, but with a strong historical emphasis on perceptual illusions. Perception is a subscription journal, free for authors to publish their research as a Standard Article, Short Report or Short & Sweet. The journal also publishes Editorials and Book Reviews.
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