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在模拟运动任务期间,胫骨内外旋转偏移对膝关节和韧带生物力学的影响。

The influence of internal and external tibial rotation offsets on knee joint and ligament biomechanics during simulated athletic tasks.

作者信息

Bates Nathaniel A, Nesbitt Rebecca J, Shearn Jason T, Myer Gregory D, Hewett Timothy E

机构信息

Department of Orthopedic Surgery, Mayo Clinic, Rochester, MN, USA; Department of Biomedical Engineering and Physiology, Mayo Clinic, Rochester, MN, USA.

Department of Biomedical Engineering, University of Cincinnati, Cincinnati, OH, USA.

出版信息

Clin Biomech (Bristol). 2018 Feb;52:109-116. doi: 10.1016/j.clinbiomech.2018.01.019. Epub 2018 Feb 2.

Abstract

BACKGROUND

Following anterior cruciate ligament injury and subsequent reconstruction transverse plane tibiofemoral rotation becomes underconstrained and overconstrained, respectively. Conflicting reports exist on how rotations influence loading at the knee. This investigation aimed to determine the mechanical effects of internal and external tibial rotation offsets on knee kinematics and ligament strains during in vitro simulations of in vivo recorded kinematics.

METHOD

A 6-degree-of-freedom robotic manipulator arm was used to articulate 11 cadaveric tibiofemoral joint specimens through simulations of four athletic tasks produced from in vivo recorded kinematics. These simulations were then repeated with 4° tibial rotation offsets applied to the baseline joint orientation.

FINDINGS

Rotational offsets had a significant effect on peak posterior force for female motion simulations (P < 0.01), peak lateral force for most simulated tasks (P < 0.01), and peak anterior force, internal torque, and flexion torque for sidestep cutting tasks (P ≤ 0.01). Rotational offsets did not exhibit statistically significant effects on peak anterior cruciate ligament strain (P > 0.05) or medial collateral ligament strain (P > 0.05) for any task.

INTERPRETATION

Transverse plane rotational offsets comparable to those observed in anterior cruciate ligament deficient and reconstructed patients alter knee kinetics without significantly altering anterior cruciate ligament strain. As knee degeneration is attributed to abnormal knee loading profiles, altered transverse plane kinematics may contribute to this. However, altered transverse plane rotations likely play a limited role in anterior cruciate ligament injury risk as physiologic offsets failed to significantly influence anterior cruciate ligament strain during athletic tasks.

摘要

背景

在前交叉韧带损伤及随后的重建手术后,胫股关节在冠状面的旋转分别会变得约束不足和约束过度。关于旋转如何影响膝关节负荷,存在相互矛盾的报道。本研究旨在确定在体外模拟体内记录的运动学过程中,胫骨内旋和外旋偏移对膝关节运动学和韧带应变的力学影响。

方法

使用一个6自由度的机器人操纵臂,通过模拟从体内记录的运动学中产生的四项运动任务,来连接11个尸体胫股关节标本。然后在基线关节方向上施加4°的胫骨旋转偏移,重复这些模拟。

结果

旋转偏移对女性运动模拟中的最大后向力(P < 0.01)、大多数模拟任务中的最大侧向力(P < 0.01)以及侧步切入任务中的最大前向力、内扭矩和屈曲扭矩有显著影响(P ≤ 0.01)。对于任何任务,旋转偏移对前交叉韧带最大应变(P > 0.05)或内侧副韧带应变(P > 0.05)均无统计学显著影响。

解读

与前交叉韧带损伤和重建患者中观察到的情况相当的冠状面旋转偏移会改变膝关节动力学,但不会显著改变前交叉韧带应变。由于膝关节退变归因于异常的膝关节负荷模式,改变的冠状面运动学可能对此有影响。然而,改变的冠状面旋转在前交叉韧带损伤风险中可能起有限作用,因为在运动任务中生理偏移未能显著影响前交叉韧带应变。

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