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前交叉韧带重建术后2至8个月步行时负重与推进阶段的肢体间动力学不对称性

Journal of orthopaedic research : official publication of the Orthopaedic Research Society · 2026-May
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Brebels Romain, Bastien Guillaume J, Dandois Fabian, Schepens Bénédicte, Penta Massimo

简介

该研究分析了14例ACL重建患者术后2、4、6、8个月在5 km/h和6 km/h速度下行走时的地面反作用力,并与匹配对照组比较。关键发现:术后2个月时动力学不对称最明显,且多数不对称持续至8个月。患侧肢体呈现卸载策略,尤其在6 km/h时表现显著:4个月时负重峰值力降低6.6%,6个月时制动峰值力降低9%,8个月时功率吸收降低15.7%,单支撑时间较对照组…

英文摘要

Normalization of walking is a rehabilitation goal after anterior cruciate ligament reconstruction (ACLR). However, no consensus is currently established on the kinetic variables supporting rehabilitation. We examined interlimb loading asymmetries and deviations from controls from 2 to 8 months post-ACLR at two different speeds. Ground reaction force of 14 patients with ACLR (23.9 years, 7 females) were assessed at 2-, 4-, 6-, and 8-months post-surgery while walking on instrumented treadmill at 5 and 6 km/h. Gait cycle characteristics, including stance phase durations, peak force, center-of-mass displacement and total power, were compared at each time point with matched controls (t-tests) and between involved and uninvolved limbs (mixed linear model). We observed that kinetic asymmetries were largest at 2 months and most persisted up to 8 months post-ACLR. An unloading strategy was observed on the involved limb, especially at 6 km/h, concerning the loading peak force (-6.6% at 4 months), the braking peak force (-9% at 6 months), the power absorption (-15.7% at 8 months) and the single support duration (-1.8% at 6 months compared to controls). These findings indicate that walking recovery after ACLR is characterized by unloading of the involved limb especially during the loading response and a compensation from the uninvolved limb throughout the stance, lasting up to 8 months when walking at 5 and 6 km/h. Walking at higher, controlled walking speeds should be assessed and retrained early after ACLR to identify and reduce residual loading asymmetries.

关键词

anterior cruciate ligament reconstruction asymmetry biomechanics gait rehabilitation

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