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Three-dimensional joint reaction forces and moments at the low back during over-ground walking in persons with unilateral lower-extremity amputation

机译:单侧下肢截肢患者在地面行走时的低位三维关节反作用力和力矩

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摘要

Background: Abnormal mechanics of locomotion following lower-extremity amputation are associated with increases in trunk motion,which in turn may alter loads at the lowback due to changes in inertial and gravitational demands on the spine and surrounding trunk musculature. Methods: Over-ground gait data were retrospectively compiled from two groups walking at similar self-selected speeds (~1.35 m/s): 40 males with unilateral lower-extremity amputation (20 transtibial, 20 transfemoral) and 20 able-bodied male controls. Three-dimensional joint reaction forces andmoments at the lowback (L5/S1 spinal level)were calculated using top-down and bottom-up approaches. Peak values and the timings of thesewere determined and compared between and within (bilaterally) groups, and secondarily between approaches. Findings: Peak laterally-directed joint reaction forces and lateral bend moments increased with increasing level of amputation, and were respectively 83% and 41% larger in prosthetic vs. intact stance among persons with transfemoral amputation. Peak anteriorly-directed reaction forces and extension moments were 31% and 55% larger, respectively, among persons with transtibial amputation compared to controls. Peak vertical reaction forces and axial twist moments were similar between andwithin groups. Peak joint reaction forces and moments were larger (3–14%), and the respective timing of these sooner (11–62 ms), from the bottom-up vs. top-down approach. Interpretation: Increased and asymmetric peak reaction forces and moments at the lowback among personswith unilateral lower-extremity amputation, particularly in the frontal plane, suggest potential mechanistic pathways through which repeated exposure to altered trunk motion and spinal loading may contribute to low-back injury risk among persons with lower-extremity amputation
机译:背景:下肢截肢后的运动力学异常与躯干运动增加有关,由于对脊柱和周围躯干肌肉的惯性和重力要求的变化,反过来可能改变腰背的负荷。方法:回顾性地收集两组以相似的自选速度(〜1.35 m / s)行走的地面步态数据:40例单侧下肢截肢男性(20例胫骨,20例股骨股骨)和20例身体健康的男性对照。使用自上而下和自下而上的方法计算了腰背(L5 / S1脊柱水平)的三维关节反作用力和力矩。确定和比较这些峰值的时间和时间(在双侧)之间和之内,然后在方法之间进行比较。研究结果:峰值侧向关节反作用力和侧向弯矩随截肢水平的增加而增加,在经股截肢的患者中,假体与完好无损的站立姿势分别分别大83%和41%。与对照组相比,经胫截肢者的峰值前向反作用力和伸展力矩分别大31%和55%。组内和组内的峰值垂直反作用力和轴向扭力相似。自下而上与自上而下的方法相比,峰值关节反作用力和力矩更大(3–14%),并且它们各自的时间更快(11–62 ms)。解释:单侧下肢截肢者在腰背处的峰值反作用力和力矩增加且不对称,尤其是在额叶平面,提示潜在的机制途径,反复暴露于改变的躯干运动和脊柱负荷可能会导致腰背损伤风险下肢截肢者之间

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