Beyaert C, Grumillier C, Martinet N, Paysant J, André J-M
Laboratoire d'analyse du mouvement, Institut Régional de Réadaptation de Nancy, Centre de Réadaptation Louis Pierquin, 54000 Nancy, France.
Gait Posture. 2008 Aug;28(2):278-84. doi: 10.1016/j.gaitpost.2007.12.073. Epub 2008 Mar 4.
This study evaluated the asymmetry of knee kinetics during uncomfortable gait induced by prosthesis misalignment to further demonstrate the compensatory function of the knee joint of the intact limb during gait. Three-dimensional gait analysis including knee kinematics and kinetics at the beginning of stance phase was conducted in 15 healthy subjects and 17 unilateral trans-tibial amputees (TTA) walking at self-selected speed in three conditions of prosthetic alignment: initial alignment (IA); initial alignment altered either by 6 degrees of internal rotation (IR) or by 6 degrees of external rotation (ER) applied on the pylon. Patients reported best comfort of gait in IA condition and discomfort mainly in IR condition. Maximum knee flexion and knee total work at power phases K0-K2 were significantly higher in intact limbs compared to prosthetic and control limbs. In intact limbs, these variables had significantly higher values (+10-35%, p<0.05) in IR condition than IA condition whereas these were not altered across conditions in prosthetic limbs. In trans-tibial amputees, inducing uncomfortable gait by internally rotating the prosthetic foot did not alter the knee kinetics of the prosthetic limb, which suggests a protective mechanism. Knee kinetics of the intact limb did alter, which suggests a compensatory mechanism.
本研究评估了假体对线不良引起的不适步态期间膝关节动力学的不对称性,以进一步证明完整肢体膝关节在步态中的代偿功能。对15名健康受试者和17名单侧经胫骨截肢者(TTA)在三种假体对线条件下以自选速度行走时进行了三维步态分析,包括站立相开始时的膝关节运动学和动力学:初始对线(IA);通过对支杆施加6度内旋(IR)或6度外旋(ER)改变初始对线。患者报告在IA条件下步态舒适度最佳,不适主要出现在IR条件下。与假肢和对照肢体相比,完整肢体在动力阶段K0-K2的最大膝关节屈曲和膝关节总功显著更高。在完整肢体中,这些变量在IR条件下的值比IA条件下显著更高(+10-35%,p<0.05),而在假肢肢体中这些变量在不同条件下没有变化。在经胫骨截肢者中,通过使假足内旋诱导不适步态并没有改变假肢肢体的膝关节动力学,这表明存在一种保护机制。完整肢体的膝关节动力学确实发生了改变,这表明存在一种代偿机制。