Department of Mechanical Engineering, University of Melbourne, Parkville, Victoria 3010, Australia.
Gait Posture. 2013 May;38(1):79-85. doi: 10.1016/j.gaitpost.2012.10.018. Epub 2012 Dec 1.
Patients with total knee arthroplasty (TKA) frequently exhibit changes in gait biomechanics post-surgery, including decreased ranges of joint motion and changes in joint loading; however, the actions of the lower-limb muscles in generating joint moments and accelerating the center of mass (COM) during walking are yet to be described. The aim of the present study was to evaluate differences in lower-limb joint kinematics, muscle-generated joint moments, and muscle contributions to COM accelerations in TKA patients and healthy age-matched controls when both groups walk at the same speed. Each TKA patient was fitted with a posterior-stabilized total knee replacement and underwent patellar resurfacing. Three-dimensional gait analysis and subject-specific musculoskeletal modeling were used to determine lower-limb and trunk muscle forces and muscle contributions to COM accelerations during the stance phase of gait. The TKA patients exhibited a 'quadriceps avoidance' gait pattern, with the vasti contributing significantly less to the extension moment developed about the knee during early stance (p=0.036). There was a significant decrease in the contribution of the vasti to the vertical acceleration (support) (p=0.022) and forward deceleration of the COM (braking) (p=0.049) during early stance; however, the TKA patients compensated for this deficiency by leaning their trunks forward. This significantly increased the contribution of the contralateral back extensor muscle (erector spinae) to support (p=0.030), and that of the contralateral back rotators (internal and external obliques) to braking (p=0.004). These findings provide insight into the biomechanical causes of post-operative gait adaptations such as 'quadriceps avoidance' observed in TKA patients.
全膝关节置换术(TKA)患者术后步态生物力学常发生改变,包括关节活动范围减小和关节负荷改变;然而,下肢肌肉在产生关节力矩和加速质心(COM)运动方面的作用仍有待描述。本研究旨在评估 TKA 患者和健康年龄匹配对照组在以相同速度行走时,下肢关节运动学、肌肉产生的关节力矩以及肌肉对 COM 加速度的贡献方面的差异。每位 TKA 患者均配备后稳定型全膝关节置换和髌骨表面置换。采用三维步态分析和基于个体的肌肉骨骼建模来确定步态站立相下肢和躯干肌肉的力以及肌肉对 COM 加速度的贡献。TKA 患者表现出“股四头肌回避”步态模式,股四头肌在早期站立时对膝关节伸展力矩的贡献显著减少(p=0.036)。股四头肌对垂直加速度(支撑)(p=0.022)和 COM 向前减速(制动)(p=0.049)的贡献在早期站立时显著降低;然而,TKA 患者通过向前倾斜躯干来补偿这种不足。这显著增加了对侧背伸肌(竖脊肌)对支撑(p=0.030)的贡献,以及对侧背旋转肌(内、外斜肌)对制动(p=0.004)的贡献。这些发现深入了解了术后步态适应的生物力学原因,如 TKA 患者观察到的“股四头肌回避”。