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Indicators of cosmonaut locomotor functions stability: A new method for ground-reaction forces analysis

机译:宇航员机车功能稳定性:地面反作用力分析的新方法

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摘要

The paper introduces a new method for ground-reaction forces (GRF) analysis for the evaluation of cosmonaut locomotor functions stability after a long-duration spaceflight (LDSF). The method is based on the analysis of GRF profiles obtained before and after LDSF by standard (sic)-2 treadmill reaction force data readings. Following probabilistic indicators were introduced: distributions of step and step-phase duration probabilities, their extremums, standard deviations and inverse coefficients of variety; step structure variability; the non-stationarity index for step durations arrays; GRF pattern, its width and maximum. Every indicator of one cosmonaut pilot study has changed drastically after LDSF. The new statistics provided appeared to be promising indicators of locomotor function state. A further trial of the new method may provide new knowledge of human movement strategies alterations after LDSF and may establish it as a standard analytical procedure for personalized flight assistance after its reliability verification.
机译:本文介绍了一种新的地 - 反作用力(GRF)分析方法,用于评估宇航员运动功能稳定性在长持续时间空间(LDSF)之后的稳定性。该方法基于通过标准(SiC)-2跑步机反应数据读数在LDSF之前和之后获得的GRF谱的分析。介绍了以下概率指标:步骤和步进阶段持续时间概率的分布,其极值,标准偏差和品种的倒数系数;步结构变异性;步进持续时间阵列的非公平性指数; GRF模式,其宽度和最大值。在LDSF之后,一个宇航员试点研究的每个指标都发生了巨大的变化。提供的新统计数据似乎是机器人函数状态的有希望指标。新方法的进一步试验可能在LDSF后的人体运动策略改变中提供新的知识,并可在其可靠性验证后作为个性化飞行辅助的标准分析程序。

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