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Knee joint biomechanics in open-kinetic-chain flexion exercises.

机译:膝关节屈伸运动中的膝关节生物力学。

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BACKGROUND: Different rehabilitation exercises such as open-kinetic-chain flexion and extension exercises are currently employed in non-operative and post-operative managements of joint disorders. The challenge is to strengthen the muscles and to restore the near-normal function of the joint while protecting its components (e.g., the reconstructed ligament) from excessive stresses. METHODS: Using a validated 3D nonlinear finite element model, the detailed biomechanics of the entire joint in open-kinetic-chain flexion exercises are investigated at 0 degrees, 30 degrees, 60 degrees and 90 degrees joint angles. Two loading cases are simulated; one with only the weight of the leg and the foot while the second considers also a moderate resistant force of 30 N acting at the ankle perpendicular to the tibia. FINDINGS: The addition of 30 N resistant force substantially increased the required hamstrings forces, forces in posterior cruciate and lateral collateral ligaments and joint contact forces/areas/stresses. INTERPRETATION: At post-anterior cruciate ligament reconstruction or injury period, the exercise could safely be employed to strengthen the hamstrings muscles without a risk to the anterior cruciate ligament. In contrast, at post-posterior cruciate/lateral collateral ligaments reconstructions or injuries, the open-kinetic-chain flexion exercise should be avoided under moderate to large flexion angles and resistant forces.
机译:背景技术:目前,在关节疾病的非手术和术后管理中采用了不同的康复运动,例如开链屈伸运动。挑战在于增强肌肉并恢复关节的近乎正常的功能,同时保护其组件(例如,重建的韧带)免受过度的压力。方法:使用经过验证的3D非线性有限元模型,以0度,30度,60度和90度的关节角度研究开运动链屈曲运动中整个关节的详细生物力学。模拟了两种加载情况;一个只承受腿和脚的重量,第二个也考虑在垂直于胫骨的脚踝处施加30 N的中等抵抗力。结果:增加30 N的抵抗力大大增加了所需的绳肌力量,后十字交叉韧带和外侧副韧带的力量以及关节接触力/区域/应力。解释:在前十字韧带重建或损伤期,可以安全地进行锻炼以增强绳肌,而不会危及前十字韧带。相反,在后十字交叉/外侧副韧带重建或受伤时,应避免在中等至较大屈曲角度和抵抗力的情况下进行开链屈曲运动。

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