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Relationship between wire EMG activity, muscle length, and torque of the hamstrings.

机译:线肌电图活动,肌肉长度和length绳肌扭矩之间的关系。

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Objective. To determine the effect of change of muscle length on the torque and wire electromyographic activity of six knee flexor muscles.Design. Maximum isometric knee flexion torque and wire EMG data were collected at nine different positions.Background. In vivo EMG-length-tension relationship is difficult to determine because of the interaction between muscle length and moment arm. The study of two-joint muscles allows the change of muscle length at one joint while preserving stable mechanical relationships at the other. This model facilitates understanding of length-tension and EMG-length relationship in vivo.Methods. Nineteen subjects performed maximum isometric knee flexion contraction at nine positions of varying hip and knee angles. Wire EMG activity was recorded from semitendionsus, semimembranosus, long and short head of the biceps femoris, gracilis and sartorious muscles.Results. As the two-joint hamstrings were lengthened, torque was significantly increased. Maximum isometric torque ranged from 257 to 716 kgcm. The ratio of the torque values to EMG activity of all muscles was increased at longer muscle lengths. A change in the muscle length of the two-joint hamstrings did not produce a consistent change of EMG activity. The short head of the biceps femoris and sartorius muscles increased their activity as the angle of knee flexion increased.Conclusions. Maximum torque of knee flexion occurs at the most lengthened position of the hamstrings. EMG activity did not consistently change with the change in muscle length.Relevance Understanding in vivo length-tension relationship and associated EMG activity is important for designing rehabilitation protocols, tendon lengthening and transfer and interpretation of EMG data.
机译:目的。要确定肌肉长度变化对六个膝屈肌的扭矩和钢丝肌电图活动的影响,设计。在九个不同位置收集了最大的等距膝盖屈曲扭矩和线肌电图数据。由于肌肉长度和力矩臂之间的相互作用,很难确定体内EMG-长度-张力关系。对两关节肌肉的研究允许改变一个关节的肌肉长度,同时保持另一关节的稳定机械关系。该模型有助于体内理解长度-张力和EMG-长度关系。 19名受试者在不同的髋部和膝盖角度的9个位置进行了最大的等距膝盖屈曲收缩。从半腱,半膜,股二头肌的长头和短头,腹肌和刺激性肌肉中记录到线肌电活动。随着两节腿筋的拉长,扭矩明显增加。最大等距扭矩范围为257至716 kgcm。在更长的肌肉长度下,所有肌肉的扭矩值与EMG活动的比率都增加了。两关节绳肌的肌肉长度变化未产生肌电图活动的一致变化。随着膝关节屈曲角度的增加,股二头肌和缝合肌的短头活动增加。膝关节屈曲的最大扭矩发生在腿筋的最延长位置。 EMG活性并没有随肌肉长度的变化而持续变化。相关性了解体内长度-张力关系和相关的EMG活性对于设计康复方案,肌腱延长以及EMG数据的传输和解释很重要。

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