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A model of open-loop control of equilibrium position and stiffness of the human elbow joint

机译:人肘关节平衡位置和刚度的开环控制模型

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摘要

According to the equilibrium point theory, the control of posture and movement involves the setting of equilibrium joint positions (EP) and the independent modulation of stiffness. One model of EP control, the α-model, posits that stable EPs and stiffness are set open-loop, i.e. without the aid of feedback. The purpose of the present study was to explore for the elbow joint the range over which stable EPs can be set open-loop and to investigate the effect of co-contraction on intrinsic low-frequency elbow joint stiffness (K ilf). For this purpose, a model of the upper and lower arm was constructed, equipped with Hill-type muscles. At a constant neural input, the isometric force of the contractile element of the muscles depended on both the myofilamentary overlap and the effect of sarcomere length on the sensitivity of myofilaments to [Ca2+] (LDCS). The musculoskeletal model, for which the parameters were chosen carefully on the basis of physiological literature, captured the salient isometric properties of the muscles spanning the elbow joint. It was found that stable open-loop EPs could be achieved over the whole range of motion of the elbow joint and that K ilf, which ranged from 18 to 42 N m·rad?1, could be independently controlled. In the model, LDCS contributed substantially to K ilf (up to 25 N m·rad?1) and caused K ilf to peak at a sub-maximal level of co-contraction.
机译:根据平衡点理论,姿势和运动的控制涉及平衡关节位置(EP)的设置和刚度的独立调节。 EP控制的一种模型α模型假定将稳定的EP和刚度设置为开环,即无需反馈。本研究的目的是探讨肘关节稳定EP的开环范围,并探讨共收缩对固有低频肘关节刚度(K ilf )的影响。 。为了这个目的,构造了上臂和下臂的模型,其装备有希尔式肌肉。在恒定的神经输入下,肌肉收缩元件的等距力取决于肌丝重叠和肌节长度对肌丝对[Ca2 + ](LDCS)敏感性的影响。在生理文献的基础上仔细选择了参数的肌肉骨骼模型捕获了跨越肘关节的肌肉的主要等距特性。结果发现,在肘关节的整个运动范围内都可以实现稳定的开环EP,并且可以在18至42 N m·rad?1 范围内获得K ilf 。独立控制。在该模型中,LDCS对K ilf 的贡献很大(高达25 N m·rad?1 ),并导致K ilf 在共收缩的次最大水平达到峰值。

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  • 来源
    《Biological Cybernetics》 |2007年第3期|341-350|共10页
  • 作者单位

    Institute for Fundamental and Clinical Human Movement Sciences IFKB Vrije Universiteit Van der Boechorststraat 9 1081 BT Amsterdam The Netherlands;

    Institute for Fundamental and Clinical Human Movement Sciences IFKB Vrije Universiteit Van der Boechorststraat 9 1081 BT Amsterdam The Netherlands;

    Institute for Fundamental and Clinical Human Movement Sciences IFKB Vrije Universiteit Van der Boechorststraat 9 1081 BT Amsterdam The Netherlands;

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