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Effect of Finger Posture on the Tendon Force Distribution Within the Finger Extensor Mechanism

机译:手指姿势对手指伸肌机制中肌腱力分布的影响

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Understanding the transformation of tendon forces into joint torques would greatly aid in the investigation of the complex temporal and spatial coordination of multiple muscles in finger movements. In this study, the effects of the finger posture on the tendon force transmission within the finger extensor apparatus were investigated. In five cadaver specimens, a constant force was applied sequentially to the two extrinsic extensor tendons in the index finger, extensor digitorum communis and extensor indicis proprius. The responses to this loading, i.e., fingertip force/moment and regional strains of the extensor apparatus, were measured and analyzed to estimate the tendon force transmission into the terminal and central slips of the extensor hood. Repeated measures analysis of variance revealed that the amount of tendon force transmitted to each tendon slip was significantly affected by finger posture, specifically by the interphalangeal (IP) joint angles (p <0.01). Tendon force transmitted to each of the tendon slips was found to decrease with the IP flexion. The main effect of the metacarpophalangeal (MCP) joint angle was not as consistent as the IP angle, but there was a strong interaction effect for which MCP flexion led to large decreases in the slip forces (>30%) when the IP joints were extended. The ratio of terminal slip force:central slip force remained relatively constant across postures at approximately 1.7:1. Force dissipation into surrounding structures was found to be largely responsible for the observed force-posture relationship. Due to the significance of posture in the force transmission to the tendon slips, the impact of finger posture should be carefully considered when studying finger motor control or examining injury mechanisms in the extensor apparatus.
机译:了解肌腱力向关节扭矩的转化将大大有助于研究手指运动中多处肌肉的复杂时空协调。在这项研究中,研究了手指姿势对指伸装置内肌腱力传递的影响。在五个尸体标本中,对食指的两个外伸肌腱,指趾伸肌和固有伸肌依次施加恒定的力。测量并分析对此载荷的响应,即指尖力/力矩和伸肌设备的局部应变,以估计肌腱力向伸肌机罩的末端和中央滑移的传递。重复测量方差分析发现,传递到每个肌腱滑移的肌腱力的大小受手指姿势(尤其是指间指间(IP)关节角度)的影响很大(p <0.01)。发现随着IP屈曲,传递到每个肌腱滑片的肌腱力减小。掌指关节角的主要作用并不像IP角那样一致,但是当IP关节伸展时,MCP屈曲导致滑移力大大降低(> 30%)时,有很强的相互作用作用。终端滑移力与中央滑移力之比在各种姿势下保持相对恒定,约为1.7:1。发现向周围结构的力耗散是观察到的力-姿势关系的主要原因。由于姿势在向肌腱滑动的力传递中具有重要意义,因此在研究手指运动控制或检查伸肌设备中的损伤机制时,应仔细考虑手指姿势的影响。

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