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Gait stability in young adults under different visual conditions: a pilot study

机译:年轻人在不同视觉条件下的步态稳定性:一项初步研究

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The visual system is fundamental for the control of gait stability. Visual deprivation or impairment can deteriorate walking stability in adults; however, in daily life, adults are exposed to different light intensities rather than visual deprivation. The objective of this study was to investigate gait stability in young adults exposed to different visual conditions. Ten adults without visual problems participated in the study. The subjects walked at two speeds (self-selected and 30% faster) under four visual conditions: normal vision and using three different masks covered with automotive film to reduce the passage of light to the eye (50% 20% 5% - lowest light passage). Stability parameters (margin of stability - MOS, center of mass separation - COMSEP, and time-to-contact - TtC) obtained by analysis of the COM displacement relative to the base of support, and spatiotemporal parameters (step length, gait velocity, and support time) were assessed. The different visual conditions did not affect gait stability or spatiotemporal parameters at the two walking speeds studied. The variations in stability between visual conditions relative to normal vision were not expressive for MOS ( 4%), COMSEP ( 7%), or TtC ( 6%) at the two walking speeds. This lack of changes in stability may have been due to maintenance of the spatiotemporal characteristics because of the strong association between these characteristics. The adults studied can control stability without changing their gait patterns under different visual conditions, and lower light intensities do not increase the risk of falls
机译:视觉系统是控制步态稳定性的基础。视力剥夺或障碍会损害成年人的步行稳定性;然而,在日常生活中,成年人暴露于不同的光照强度而不是视觉剥夺。这项研究的目的是调查暴露在不同视觉条件下的年轻人的步态稳定性。十名没有视觉问题的成年人参加了这项研究。受试者在以下四种视觉条件下以两种速度行走(自行选择且速度提高30%):正常视觉并使用覆盖有汽车膜的三种不同口罩来减少光线进入眼睛的速度(50%> 20%> 5%-最低的光线通过率)。通过分析相对于支撑基础的COM位移获得的稳定性参数(稳定性裕度-MOS,质心分离中心-COMSEP和接触时间-TtC)以及时空参数(步长,步态速度和支持时间)进行了评估。在所研究的两种步行速度下,不同的视觉条件均不会影响步态稳定性或时空参数。在两种步行速度下,相对于正常视力而言,视觉条件之间的稳定性变化对于MOS(<4%),COMSEP(<7%)或TtC(<6%)而言并没有表现出来。稳定性缺乏这种变化可能是由于时空特性的保持,因为这些特性之间存在很强的联系。在不同的视觉条件下,研究的成年人可以在不改变步态的情况下控制稳定性,并且较低的光照强度不会增加跌倒的风险

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