首页> 外文期刊>Journal of Biomechanics >A GRAPHIC ANALYSIS OF THE BIOMECHANICS OF THE MASSLESS BI-ARTICULAR CHAIN - APPLICATION TO THE PROXIMAL BI-ARTICULAR CHAIN OF THE HUMAN FINGER
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A GRAPHIC ANALYSIS OF THE BIOMECHANICS OF THE MASSLESS BI-ARTICULAR CHAIN - APPLICATION TO THE PROXIMAL BI-ARTICULAR CHAIN OF THE HUMAN FINGER

机译:无缺陷双关节链生物力学的图形分析-在人手指近端双关节链中的应用

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摘要

In this paper a model is presented which visualises the biomechanical functioning of the loaded and unloaded theree-tendon bi-articular chain. This model allows to graphically determine in any position of the chain (i) the exact ranges of loads which can be sustained by the different motors; (ii) the motors forces; (iii) the feasibility of the (unloaded) equilibrium; and (iv) the conditions for the good controllability of the bi-articular chain. These results are applied to the proximal three-motor bi-articular chain of the human finger, when controlled by the superficial flexor, interosseus, and extensor only. It is shown that (i) the anatomic position of the superficial flexor and extensor is a prime determinant in the good functioning of this chain; (ii) the proximal bi-articular chain of the human finger can well sustain certain flexion loads but is structurally weak for extension loads; and (iii) the chain is not optimally controllable. [References: 4]
机译:在本文中,提出了一个模型,该模型可视化了已加载和未加载的三筋腱双关节链的生物力学功能。该模型允许以图形方式确定链条的任何位置:(i)不同电机可以承受的确切负载范围; (ii)机动力量; (iii)(空载)平衡的可行性; (iv)双关节链良好可控性的条件。当仅由浅屈肌,骨间和伸肌控制时,这些结果适用于人手指的近端三运动双关节链。结果表明:(i)浅屈肌和伸肌的解剖位置是该链条良好功能的主要决定因素; (ii)人手指的近端双关节链可以很好地承受一定的屈曲负荷,但在结构上对伸展负荷无能为力; (iii)链条不是最佳可控的。 [参考:4]

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