Blank Jonathon L, Thelen Darryl G, Roth Joshua D
Department of Mechanical Engineering, University of Wisconsin-Madison, Madison, WI, USA.
Department of Mechanical Engineering, University of Wisconsin-Madison, Madison, WI, USA.
J Mech Behav Biomed Mater. 2020 May;105:103704. doi: 10.1016/j.jmbbm.2020.103704. Epub 2020 Feb 18.
Ligament tension is an important factor that can affect the success of total knee arthroplasty (TKA) procedures. However, surgeons currently lack objective approaches for assessing tension in a particular ligament intraoperatively. The purpose of this study was to investigate the use of noninvasive shear wave tensiometry to characterize stress in medial and lateral collateral ligaments (MCLs and LCLs) ex vivo and evaluate the capacity of shear wave speed to predict axial load. Nine porcine MCL and LCL specimens were subjected to cyclic axial loading while shear wave speeds were measured using laser vibrometry. We found that squared shear wave speed increased linearly with stress in both the MCL (r = 0.94) and LCL (r = 0.98). Shear wave speeds were slightly lower in the MCL than the LCL when subjected to a comparable axial stress (p < 0.001). Specimen-specific calibrations predicted tension within 13.0 N, or 5.2% of the maximum load. A leave-one-out analysis was also performed and showed that calibrated relationships based on ligament type could predict axial tension within 15% of the maximum load. These observations suggest it may be feasible to use noninvasive shear wave speed measures as a proxy of ligament loading, which in the future might enhance decision making during orthopedic procedures such as TKA.
韧带张力是影响全膝关节置换术(TKA)手术成功的一个重要因素。然而,目前外科医生在术中缺乏评估特定韧带张力的客观方法。本研究的目的是探讨使用无创剪切波张力测定法来表征内侧和外侧副韧带(MCL和LCL)的离体应力,并评估剪切波速度预测轴向负荷的能力。九个猪的MCL和LCL标本在承受循环轴向负荷的同时,使用激光振动测量法测量剪切波速度。我们发现,MCL(r = 0.94)和LCL(r = 0.98)的剪切波速度平方均与应力呈线性增加。在承受相当的轴向应力时,MCL的剪切波速度略低于LCL(p < 0.001)。特定标本的校准预测张力在13.0 N以内,即最大负荷的5.2%。还进行了留一法分析,结果表明基于韧带类型的校准关系可以预测轴向张力在最大负荷的15%以内。这些观察结果表明,使用无创剪切波速度测量作为韧带负荷的替代指标可能是可行的,这在未来可能会改善诸如TKA等骨科手术中的决策。