首页> 外文期刊>Journal of Biomechanics >Differences in whole-body angular momentum between below-knee amputees and non-amputees across walking speeds.
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Differences in whole-body angular momentum between below-knee amputees and non-amputees across walking speeds.

机译:膝盖以下截肢者和非截肢者在步行速度上的全身角动量差异。

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Unilateral, below-knee amputees have an increased risk of falling compared to non-amputees. The regulation of whole-body angular momentum is important for preventing falls, but little is known about how amputees regulate angular momentum during walking. This study analyzed three-dimensional, whole-body angular momentum at four walking speeds in 12 amputees and 10 non-amputees. The range of angular momentum in all planes significantly decreased with increasing walking speed for both groups. However, the range of frontal-plane angular momentum was greater in amputees compared to non-amputees at the first three walking speeds. This range was correlated with a reduced second vertical ground reaction force peak in both the intact and residual legs. In the sagittal plane, the amputee range of angular momentum in the first half of the residual leg gait cycle was significantly larger than in the non-amputees at the three highest speeds. In the second half of the gait cycle, the range of sagittal-plane angular momentum was significantly smaller in amputees compared to the non-amputees at all speeds. Correlation analyses suggested that the greater range of angular momentum in the first half of the amputee gait cycle is associated with reduced residual leg braking and that the smaller range of angular momentum in the second half of the gait cycle is associated with reduced residual leg propulsion. Thus, reducing residual leg braking appears to be a compensatory mechanism to help regulate sagittal-plane angular momentum over the gait cycle, but may lead to an increased risk of falling.
机译:与非截肢者相比,单侧膝下截肢者的跌倒风险更高。全身角动量的调节对于防止跌倒很重要,但是对于截肢者在行走过程中如何调节角动量知之甚少。这项研究分析了12个截肢者和10个非截肢者在四种步行速度下的三维全身角动量。随着两组步行速度的提高,所有平面上的角动量范围均显着减小。然而,在前三个步行速度下,被截肢者的额面角动量范围比非截肢者大。该范围与完整腿和残余腿中减小的第二垂直地面反作用力峰值相关。在矢状面中,在剩余的腿步态周期的前半段中,截肢动量的截肢范围明显大于非截肢的三个最高速度。在步态周期的后半段,在所有速度下,与非截肢者相比,截肢者的矢状面角动量范围明显较小。相关分析表明,在截肢者步态周期的前半部分中较大的角动量范围与减少的剩余腿部制动相关,而在步态周期的后半部分中较小的角动量范围与减小的剩余腿部推进相关。因此,减少残留的腿部制动似乎是一种补偿机制,可帮助在步态周期内调节矢状面角动量,但可能导致跌倒的风险增加。

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