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首页> 外文期刊>Gait & posture >The effects of everyday concurrent tasks on overground minimum toe clearance and gait parameters.
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The effects of everyday concurrent tasks on overground minimum toe clearance and gait parameters.

机译:日常并发任务对地面最小脚趾间隙和步态参数的影响。

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摘要

Deaths and injuries resulting from falls are a significant problem for older adults. Over half of falls during walking result from a trip, and these are likely to begin when the foot contacts the ground at the point of minimum toe clearance (MTC) during the swing phase where the foot most closely approaches the ground. MTC is commonly investigated using a limited number of points and on a treadmill, which cannot account for flooring irregularities, speed changes, and direction changes of overground gait. This paper presents a new method of calculating 3D overground MTC that accounts for flooring variations and utilizes hundreds of points on each shoe. These methods are applied to 10 unimpaired adults during habitual gait: (1) without a concurrent task, (2) while carrying a 9-kg laundry basket, (3) while carrying a tray with a full glass of water on it, and (4) while answering standardized conversational questions. Results indicated that steps were slower and shorter during concurrent tasks while MTC changes were dependent on task type (higher for basket, lower for questions, and unchanged for water). Task-related MTC changes were independent of spatiotemporal gait changes. Thus, MTC during overground gait, particularly while concurrent tasks are being performed, may be an independent fall risk factor that merits further investigation in subjects at-risk of falls. The relationships between MTC, gait parameters, and older age or fall risk should be explored further in at-risk subjects and circumstances to elucidate potential tripping mechanisms.
机译:跌倒造成的伤亡是老年人的重大问题。步行过程中超过一半的跌倒是由绊倒引起的,当脚在最接近地面的摆动阶段,脚接触最小脚趾间隙(MTC)的地面时,跌落很可能开始。通常在跑步机上使用有限的点数来研究MTC,这不能解释地板不规则性,速度变化和地面步态的方向变化。本文提出了一种计算3D地面MTC的新方法,该方法考虑了地板的变化并在每只鞋上利用了数百个点。这些方法适用于10名在正常步态中未受损的成年人:(1)无并发任务;(2)携带9公斤洗衣篮时;(3)携带装有满杯水的托盘时;以及( 4)同时回答标准化的会话问题。结果表明,在同时执行的任务中,步伐更慢,更短,而MTC的变化则取决于任务的类型(篮子更高,问题更低,水没有变化)。与任务相关的MTC变化与时空步态变化无关。因此,在地面步态中,尤其是在执行并发任务时,MTC可能是一个独立的跌倒危险因素,需要对跌倒危险的受试者进行进一步调查。 MTC,步态参数与年龄或跌倒风险之间的关系应在高风险受试者和环境中进一步探讨,以阐明潜在的跳闸机制。

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