Guan Shanyuanye, Gray Hans A, Schache Anthony G, Feller Julian, de Steiger Richard, Pandy Marcus G
Department of Mechanical Engineering, University of Melbourne, Parkville, Victoria 3010, Australia.
OrthoSport Victoria, Epworth HealthCare, Melbourne, Victoria, Australia.
J Orthop Res. 2017 Aug;35(8):1634-1643. doi: 10.1002/jor.23466. Epub 2016 Nov 4.
No data are available to describe six-degree-of-freedom (6-DOF) knee-joint kinematics for one complete cycle of overground walking following total knee arthroplasty (TKA). The aims of this study were firstly, to measure 6-DOF knee-joint kinematics and condylar motion for overground walking following TKA; and secondly, to determine whether such data differed between overground and treadmill gait when participants walked at the same speed during both tasks. A unique mobile biplane X-ray imaging system enabled accurate measurement of 6-DOF TKA knee kinematics during overground walking by simultaneously tracking and imaging the joint. The largest rotations occurred for flexion-extension and internal-external rotation whereas the largest translations were associated with joint distraction and anterior-posterior drawer. Strong associations were found between flexion-extension and adduction-abduction (R = 0.92), joint distraction (R = 1.00), and anterior-posterior translation (R = 0.77), providing evidence of kinematic coupling in the TKA knee. Although the measured kinematic profiles for overground walking were grossly similar to those for treadmill walking, several statistically significant differences were observed between the two conditions with respect to temporo-spatial parameters, 6-DOF knee-joint kinematics, and condylar contact locations and sliding. Thus, caution is advised when making recommendations regarding knee implant performance based on treadmill-measured knee-joint kinematic data. © 2016 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 35:1634-1643, 2017.
目前尚无数据描述全膝关节置换术(TKA)后一个完整地面行走周期的六自由度(6-DOF)膝关节运动学。本研究的目的,一是测量TKA后地面行走的6-DOF膝关节运动学和髁运动;二是确定当参与者在两项任务中以相同速度行走时,地面行走和跑步机步态之间的此类数据是否存在差异。一种独特的移动双平面X射线成像系统能够通过同时跟踪和成像关节,准确测量地面行走期间的6-DOF TKA膝关节运动学。最大的旋转发生在屈伸和内外旋转,而最大的平移与关节牵张和前后抽屉运动有关。在屈伸与内收外展(R = 0.92)、关节牵张(R = 1.00)和前后平移(R = 0.77)之间发现了强相关性,为TKA膝关节的运动耦合提供了证据。尽管测量的地面行走运动学轮廓与跑步机行走的运动学轮廓大致相似,但在时空参数、6-DOF膝关节运动学以及髁接触位置和滑动方面,两种条件之间观察到了一些统计学上显著的差异。因此,在基于跑步机测量的膝关节运动学数据对膝关节植入物性能提出建议时,建议谨慎行事。© 2016骨科研究协会。由威利期刊公司出版。《矫形外科学研究》35:1634 - 1643,2017年。