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首页> 外文期刊>Journal of Biomechanics >Relative movements between the tibia and femur induced by external plantar shocks are controlled by muscle forces in vivo.
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Relative movements between the tibia and femur induced by external plantar shocks are controlled by muscle forces in vivo.

机译:外部足底电击引起的胫骨和股骨之间的相对运动受体内肌肉力控制。

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摘要

The purpose of this study was to investigate the role of muscle activation on the relative motion between tibia and femur. Impacts were initiated under the heels of four volunteers in three different activation levels of muscles crossing the extended knee joint: 0%, 30% and 60% of previously performed maximal voluntary isometric contractions. Impact forces were measured and tibial and femoral accelerations and displacements were determined by means of accelerometry. The accelerometers were mounted on the protruding ends of intracortical pins, inserted into the distal aspect of the femur and proximal aspect of the tibia. Under the 0%-condition the impact force (475±64N) led to 2.3±1.2mm knee compression and to 2.4±1.9mm medio-lateral and 4.4±1.1mm antero-posterior shear. The impact forces increased significantly with higher activation levels (619±33N (30%), 643±147N (60%)), while the knee compression (1.5±1.2, 1.4±1.3mm) and both medio-lateral shear (1.8±1.4, 1.5±1.1mm) and antero-posterior shear (2.6±1.3, 1.5±1.1mm) were significantly reduced. This study indicated that muscles are effective in controlling the relative motion between tibia and femur when the knee is subjected to external forces.
机译:这项研究的目的是调查肌肉激活对胫骨和股骨之间相对运动的作用。在四名志愿者的脚后跟下,通过延伸的膝关节的三种不同的肌肉激活水平产生了影响:先前执行的最大自愿等距收缩的0%,30%和60%。测量了冲击力,并通过加速度计确定了胫骨和股骨的加速度和位移。加速度计安装在皮质内销的突出端,插入股骨的远端和胫骨的近端。在0%的条件下,冲击力(475±64N)导致2.3±1.2mm的膝关节压缩力和2.4±1.9mm的中外侧和4.4±1.1mm的前后切应力。随着较高的激活水平(619±33N(30%),643±147N(60%)),膝关节受压(1.5±1.2,1.4±1.3mm)和两个中外侧剪切力(1.8± 1.4,1.5±1.1mm)和前后剪切力(2.6±1.3,1.5±1.1mm)显着降低。这项研究表明,当膝盖受到外力作用时,肌肉可有效控制胫骨和股骨之间的相对运动。

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