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Impact of finger posture on mapping from muscle activation to joint torque.

机译:手指姿势对从肌肉激活到关节扭矩的映射的影响。

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BACKGROUND: The mapping from muscle activation to joint torque production can be difficult to determine for the multi-articular muscles of the fingers. This relationship was examined in vivo as a function of posture in the index finger. METHODS: Five healthy adults participated in an experiment in which the seven muscles of the index finger were sequentially electrically stimulated using intramuscular electrodes. Each muscle was stimulated at 12 different finger postures consisting of specified flexion of the metacarpophalangeal, proximal interphalangeal, and distal interphalangeal joints, while fingertip forces and moments were recorded. FINDINGS: Repeated measures analysis of variance revealed that joint torques resulting from the stimulation were significantly dependent upon finger posture (p < 0.05). The magnitude of the change in joint torque across postures was generally greater than 60%. This value is much larger than the difference attributable to the increase in active muscle force that occursat longer muscle length, in accordance with the force-length curve (10-20% for the estimated length changes). In addition, the relative distribution of the joint torques generated by a given muscle activation was dependent upon finger posture for the intrinsic muscles and the long finger flexors (p < 0.05); the ratio of one joint torque to another varied with posture for these muscles, in some cases by more than 50%. INTERPRETATION: Joint torque is a product of both muscle force and the corresponding moment arm. As the change in active muscle force was limited, these data suggest that substantial changes in muscle moment arms occur with posture. Therefore, this postural dependence should be considered when constructing biomechanical models of the hand or planning tendon transfers for the fingers.
机译:背景:对于手指的多关节肌肉,从肌肉激活到关节扭矩产生的映射可能很难确定。在体内检查了这种关系,作为食指姿势的函数。方法:五名健康成年人参加了一项实验,其中使用肌内电极依次电刺激食指的七块肌肉。以12种不同的手指姿势刺激每条肌肉,包括指定的掌指,近指间关节和远端指间关节屈曲,同时记录指尖的力和力矩。结果:方差的重复测量分析表明,刺激产生的关节扭矩显着取决于手指姿势(p <0.05)。跨姿势的关节扭矩变化量通常大于60%。该值远大于根据力长曲线得出的,由于在较长的肌肉长度上出现的主动肌肉力量的增加所引起的差异(对于估计的长度变化,该差异为10%至20%)。此外,由给定的肌肉激活产生的关节扭矩的相对分布取决于固有肌肉和长手指屈肌的手指姿势(p <0.05);这些肌肉的一个关节扭矩与另一个关节扭矩的比率随姿势而变化,在某些情况下超过50%。解释:关节扭矩是肌肉力量和相应的力矩臂的乘积。由于主动肌肉力量的变化是有限的,这些数据表明肌肉力矩臂的实质性变化随姿势发生。因此,在构造手的生物力学模型或规划手指的腱转移时,应考虑这种姿势依赖性。

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