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视障人士在梯形和正弦形触觉地面标志上的行走策略。

Walking strategies of visually impaired people on trapezoidal- and sinusoidal-section tactile groundsurface indicators.

机构信息

Department of Occupational Medicine, INAIL, Rome, Italy.

出版信息

Ergonomics. 2011 Mar;54(3):246-56. doi: 10.1080/00140139.2010.548533.

DOI:10.1080/00140139.2010.548533
PMID:21390954
Abstract

The visual system in walking serves to perceive feedback or feed-forward signals. Therefore, visually impaired persons (VIP) have biased motor control mechanisms. The use of leading indicators (LIs) and long canes helps to improve their walking efficiency. The aims of this study were to compare the walking efficiency of VIP on trapezoidal- and sinusoidal-section LIs using an optoelectronic motion analysis system. VIP displayed a significantly longer stance phase, a shorter swing phase and shorter step and stride lengths when they walked on the sinusoidal LI than when they walked on the trapezoidal LI. Compared with the trapezoidal LI, VIP walking on the sinusoidal LI displayed significantly lower joint ranges of motion. The centre of mass lateral displacement was wider for VIP walking on the sinusoidal LI than on the trapezoidal LI. Some significant differences were also found in sighted persons walking on both LIs. In conclusion, the trapezoidal shape enabled visually impaired subjects to walk more efficiently, whereas the sinusoidal shape caused dynamic balance problems. STATEMENT OF RELEVANCE: These findings suggest that VIP can walk more efficiently, with a lower risk of falls, on trapezoidal-section than on sinusoidal-section LIs. These results should be considered when choosing the most appropriate ground tactile surface indicators for widespread use.

摘要

行走中的视觉系统用于感知反馈或前馈信号。因此,视力障碍者(VIP)的运动控制机制存在偏差。使用引导指标(LIs)和长手杖有助于提高他们的行走效率。本研究的目的是比较 VIP 在使用光电运动分析系统的梯形和正弦形 LI 上的行走效率。与梯形 LI 相比,VIP 走在正弦形 LI 上时,支撑相明显更长,摆动相更短,步长和跨步更短。与梯形 LI 相比,VIP 走在正弦形 LI 上时,关节活动范围明显更小。与梯形 LI 相比,VIP 走在正弦形 LI 上时,质心横向位移更宽。在使用两种 LI 的视力正常者中也发现了一些显著差异。总之,梯形形状使视力障碍者能够更有效地行走,而正弦形形状会导致动态平衡问题。相关声明:这些发现表明,与正弦形截面相比,VIP 在梯形截面上行走更高效,跌倒风险更低。在选择最适合广泛使用的地面触觉表面指标时,应考虑这些结果。

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