首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >The Role of Recovery Lower Limb Segments in Post-Slip Determination of Falls Due to Instability or Limb Collapse
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The Role of Recovery Lower Limb Segments in Post-Slip Determination of Falls Due to Instability or Limb Collapse

机译:由于不稳定性或肢体崩溃,恢复下肢段的作用在滑后测定下降

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Slip-related falls can be induced by instability or limb collapse, but the key factors that determine these two fall causations remain unknown. The purpose of this study was to investigate the factors that contribute towards instability-induced and limb-collapse-induced slip-related falls by investigating 114 novel slip trials. The segment angles and moments of the recovery limb after slip-onset from pre-left-touchdown (pre-LTD) to post-left-touchdown (post-LTD) were calculated, and logistic regression was used to detect which variable contributed most to instability-induced and limb-collapse-induced falls. The results showed that recovery from instability was determined by the angle of the thigh at LTD (87.7%), while recovery from limb collapse was determined by the angle of the shank at post-LTD (90.4%). Correspondingly, instability-induced falls were successfully predicted (81.5%) based on the initial thigh angle at pre-LTD and the following peak thigh moment, while limb-collapse-induced falls were successfully predicted (85.5%) based on the initial shank angle at LTD and the following peak shank moment. According to our findings, taking a shorter recovery step and/or increasing the counterclock wise moment of the thigh after pre-LTD would help individuals resist instability-induced falls, while taking a larger recovery step and/or increasing the clockwise moment of the shank post-LTD would help resist limb-collapse induced falls. The findings of this study are crucial for future clinical applications, because individually tailored reactive balance training could be provided to reduce vulnerability to specific types of falls and improve recovery rates post-slip exposure.
机译:可通过不稳定或肢体崩溃引起的滑动相关的跌落,但确定这两个秋季因果的关键因素仍然是未知的。本研究的目的是研究通过研究114个新的滑动试验,研究有助于促进不稳定和肢体崩塌诱导的滑动相关跌落的因素。计算从左触地阵列(预触控)到左触地阵列(PRE-LTD)的恢复肢体的段角和时刻,并且使用逻辑回归来检测最多的变量不稳定诱导和肢体塌陷诱导的瀑布。结果表明,从不稳定性恢复由大腿贴上有限公司(87.7%)的角度确定,而肢体塌陷的恢复是由术后柄处的角度确定(90.4%)。相应地,基于Pre-Ltd的初始大腿角度和以下峰矩阵成功地预测了不稳定的跌落(81.5%),而基于初始柄角成功预测肢体塌陷的跌落(85.5%)在有限公司和以下峰柄时刻。根据我们的研究结果,采取较短的恢复步骤和/或增加大腿后的逆时针,在预终止之后有助于个体抵抗不稳定诱导的跌落,同时采取更大的恢复步骤和/或增加柄的顺时针时刻Post-Ltd将有助于抵制肢体塌陷造成的跌落。该研究的结果对于未来的临床应用至关重要,因为可以提供单独量身定制的反应平衡培训,以减少对特定类型的跌落以及防滑后恢复率的脆弱性。

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