Park Kwan Kyu, Koh Yong-Gon, Park Kyoung-Mi, Park Joon-Hee, Kang Kyoung-Tak
Department of Orthopedic Surgery, Yonsei University College of Medicine, Seoul, Republic of Korea.
Department of Orthopaedic Surgery, Joint Reconstruction Center, Yonsei Sarang Hospital, Seoul, Republic of Korea.
Biomed Mater Eng. 2019;30(2):171-182. doi: 10.3233/BME-191042.
Component malalignment in unicompartmental knee arthroplasty (UKA) has been related to the concentration in tibiofemoral joint of contact stress and to poor post-operative outcomes. Few studies investigated a biomechanical effect of femur component position in sagittal plane. The purpose of this study was to evaluate the biomechanical effect of the femoral components on the sagittal alignment under flexion and extension conditions using computational simulations.
The flexion and extension conditions of the femoral component were analyzed from 10° extension to 10° flexion in 1° increments. We considered the contact stresses in the polyethylene (PE) inserts and articular cartilage, and the force on the collateral ligament, under gait cycle conditions.
The contact stress on the PE insert increased as flexion of the femoral component increased, but there was not a remarkable difference in the amount of increased contact stress upon extension. There was no difference in the contact stress on the articular cartilage upon extension of the femoral component, but it increased in flexion during stance and double support periods. The forces on the medial collateral ligaments increased with the extension and decreased with the flexion of the femoral component, whereas the forces on the lateral collateral ligaments showed opposite trends.
Surgeons should be concerned with femoral component position on UKA not only in frontal plane but also in the sagittal plane, because flexion or extension of the femoral component may impact the PE or opposite compartment along with the surrounding ligaments around knee joint.
单髁膝关节置换术(UKA)中组件排列不齐与胫股关节接触应力集中及术后不良预后相关。很少有研究探讨股骨组件在矢状面位置的生物力学效应。本研究的目的是使用计算机模拟评估股骨组件在屈伸条件下对矢状面排列的生物力学效应。
以1°的增量分析股骨组件从伸展10°到屈曲10°的屈伸条件。我们考虑了步态周期条件下聚乙烯(PE)内衬和关节软骨中的接触应力,以及侧副韧带上的力。
随着股骨组件屈曲增加,PE内衬上的接触应力增加,但伸展时接触应力增加量没有显著差异。股骨组件伸展时关节软骨上的接触应力没有差异,但在站立期和双支撑期屈曲时增加。内侧副韧带上的力随着股骨组件的伸展而增加,随着屈曲而减小,而外侧副韧带上的力则呈现相反趋势。
外科医生在UKA中不仅应关注股骨组件在冠状面的位置,还应关注其在矢状面的位置,因为股骨组件的屈曲或伸展可能会影响PE或对侧间室以及膝关节周围的韧带。