Taylor S J, Walker P S
Centre for Biomedical Engineering, University College London, Royal National Orthopaedic Hospital Trust, Brockley Hill, 7 4LP, Stanmore HA, UK.
J Biomech. 2001 Jul;34(7):839-48. doi: 10.1016/s0021-9290(01)00042-2.
Two distal femoral replacements were instrumented to measure axial force, torque and bending moments in the prosthesis shaft. Data are reported up to 2.5 years for the following activities: uni- and bi-lateral standing, walking, stair climbing and descending, treadmill walking, jogging and jumping. In the first subject the greatest averaged peak shaft forces found were: jogging 3.6Bodyweight (BW), stair descending 3.1BW, walking 2.8BW, treadmill walking 2.75BW, and stair ascending 2.8BW. Bending moments about the antero-posterior axis (varus-valgus) and medio-lateral axis (flexion-extension) peaked in the range 8.5-9.8 and 4.7-7.6BWcm respectively, over the follow-up period. Axial torques peaked in the range 0.2-1.3BWcm, outwardly directed. At most follow-up sessions, forces and moments during jogging were generally greater than those for other gait activities. In the second subject forces and moments were generally only 45-70% of those in the first subject, due to inadequate musculature around the knee. The data can be applied to the design and testing of distal femoral replacements and even to total knee replacements, and contributes to the knowledge of forces acting in the distal femur during activity.
对两个股骨远端置换假体进行了器械安装,以测量假体柄部的轴向力、扭矩和弯矩。报告了以下活动长达2.5年的数据:单侧和双侧站立、行走、上下楼梯、跑步机行走、慢跑和跳跃。在第一个受试者中,发现的最大平均峰值柄部力为:慢跑3.6倍体重(BW)、下楼梯3.1BW、行走2.8BW、跑步机行走2.75BW和上楼梯2.8BW。在随访期间,前后轴(内翻-外翻)和内外侧轴(屈伸)的弯矩峰值分别在8.5-9.8和4.7-7.6BWcm范围内。轴向扭矩峰值在0.2-1.3BWcm范围内,向外。在大多数随访期间,慢跑时的力和弯矩通常大于其他步态活动时的力和弯矩。在第二个受试者中,由于膝关节周围肌肉组织不足,力和弯矩通常仅为第一个受试者的45-70%。这些数据可应用于股骨远端置换假体甚至全膝关节置换假体的设计和测试,并有助于了解活动期间股骨远端的受力情况。