Kage Tomofumi, Inui Hiroshi, Tomita Tetsuya, Yamazaki Takaharu, Taketomi Shuji, Yamagami Ryota, Kono Kenichi, Kawaguchi Kohei, Sameshima Shin, Tanaka Sakae
Department of Orthopaedic Surgery, Faculty of Medicine, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
Department of Orthopaedic Surgery, Faculty of Medicine, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
Knee. 2021 Mar;29:183-189. doi: 10.1016/j.knee.2021.02.005. Epub 2021 Feb 25.
The purpose of this study was to clarify the in vivo kinematics of a newly updated posterior-stabilised (PS) mobile-bearing total knee arthroplasty during high-flexion activities in weight-bearing (WB) and non-weight-bearing (NWB) conditions. The hypothesis was that the kinematics would differ between the WB and NWB conditions, and the kinematics would be affected by the WB condition.
The kinematics of 19 knees were investigated under fluoroscopy during squatting (WB) and active-assisted knee flexion (NWB) with two- and three-dimensional registration technique. Accordingly, the range of motion, anteroposterior (AP) translation of the medial and lateral contact points, axial rotation of the femoral component relative to the tibial component, and kinematic pathway were evaluated.
There was no difference in the knee's range of motion between the WB and NWB conditions. The medial AP translation of the femur did not differ in each flexion angle between WB and NWB conditions except for flexions of 70°. There was no difference in the lateral AP translation of the femur at all tested flexion angles between the WB and NWB conditions. The external femoral rotation and the medial pivot motion were observed throughout all flexion angles in WB conditions. The clinical relevance is that this implant could produce ideal medial AP stability and medial pivot motion.
The medial AP translation of the femur was stable for AP direction when it was in both WB and NWB conditions. In WB conditions, the medial pivot motion was observed throughout all flexion angles.
III.
本研究的目的是阐明一种新更新的后稳定型(PS)活动平台全膝关节置换术在负重(WB)和非负重(NWB)条件下高屈曲活动期间的体内运动学。假设是WB和NWB条件下的运动学将有所不同,并且运动学将受到WB条件的影响。
采用二维和三维配准技术,在透视下对19个膝关节在深蹲(WB)和主动辅助膝关节屈曲(NWB)过程中的运动学进行研究。据此,评估了活动范围、内侧和外侧接触点的前后(AP)平移、股骨组件相对于胫骨组件的轴向旋转以及运动路径。
WB和NWB条件下膝关节的活动范围没有差异。除了70°屈曲外,WB和NWB条件下股骨的内侧AP平移在每个屈曲角度均无差异。WB和NWB条件下,在所有测试的屈曲角度,股骨的外侧AP平移均无差异。在WB条件下,在所有屈曲角度均观察到股骨外旋和内侧枢轴运动。其临床意义在于该植入物可产生理想的内侧AP稳定性和内侧枢轴运动。
股骨的内侧AP平移在WB和NWB条件下在AP方向上都是稳定的。在WB条件下,在所有屈曲角度均观察到内侧枢轴运动。
III级。