Catholic Institute for Applied Anatomy, Department of Anatomy, College of Medicine, The Catholic University of Korea, Seoul 06591, Republic of Korea.
Joint Replacement Center, Eunpyeong St. Mary's Hospital, Seoul 03312, Republic of Korea.
Medicina (Kaunas). 2022 Nov 29;58(12):1751. doi: 10.3390/medicina58121751.
Background and Objectives: Guided-motion bicruciate-stabilized (BCS) total knee arthroplasty (TKA) includes a dual cam-post mechanism with an asymmetric bearing geometry that promotes normal knee kinematics and enhances anterior-posterior stability. However, it is unclear whether the improved biomechanics after guided-motion BCS TKA reproduce soft tissue strain similar to the strain generated by native knees. The purpose of this cadaveric study was to compare medial collateral ligament (MCL) strain between native and guided-motion BCS TKA knees using a video extensometer. Materials and Methods: Eight cadaver knees were mounted onto a customized knee squatting simulator to measure MCL strain during flexion in both native and guided-motion BCS TKA knees (Journey II-BCS; Smith & Nephew, Memphis, TN, USA). MCL strain was measured using a video extensometer (Mercury® RT RealTime tracking system, Sobriety s.r.o, Kuřim, Czech Republic). MCL strain level and strain distribution during knee flexion were compared between the native and guided-motion BCS TKA conditions. Results: The mean and peak MCL strain were similar between native and guided-motion BCS TKA knees at all flexion angles (p > 0.1). MCL strain distribution was similar between native and BCS TKA knees at 8 of 9 regions of interest (ROIs), while higher MCL strain was observed after BCS TKA than in the native knee at 1 ROI in the mid portion of the MCL at early flexion angles (p < 0.05 at ≤30° of flexion). Conclusions: Guided-motion BCS TKA restored the amount and distribution of MCL strain to the values observed on native knees.
导动双髁稳定型(BCS)全膝关节置换术(TKA)包括一个双凸轮-后柱机构,具有不对称的轴承几何形状,可促进正常膝关节运动学并增强前后稳定性。然而,尚不清楚导动 BCS TKA 术后改善的生物力学是否能复制类似于自然膝关节产生的软组织应变。本尸体研究的目的是使用视频测径器比较自然膝关节和导动 BCS TKA 膝关节的内侧副韧带(MCL)应变。
将 8 个尸体膝关节安装在定制的膝关节下蹲模拟器上,以测量自然膝关节和导动 BCS TKA 膝关节(Journey II-BCS;Smith & Nephew,孟菲斯,田纳西州,美国)在膝关节屈曲过程中的 MCL 应变。使用视频测径器(Mercury® RT RealTime 跟踪系统,Sobriety s.r.o,捷克 Kuřim)测量 MCL 应变。比较了自然膝关节和导动 BCS TKA 条件下膝关节屈曲过程中 MCL 应变水平和应变分布。
在所有屈曲角度下,自然膝关节和导动 BCS TKA 膝关节的 MCL 平均应变和峰值应变相似(p > 0.1)。在 9 个感兴趣区域(ROI)中的 8 个 ROI 中,MCL 应变分布在自然膝关节和 BCS TKA 膝关节之间相似,而在早期屈曲角度(≤30°的屈曲)时,BCS TKA 后 MCL 中部的 1 个 ROI 处的 MCL 应变高于自然膝关节(p < 0.05)。
导动 BCS TKA 将 MCL 应变的量和分布恢复到自然膝关节的水平。