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Effects of Predictability of Load Magnitude on the Response of the Flexor Digitorum Superficialis to a Sudden Fingers Extension

机译:负荷量的可预测性对浅指屈对手指伸直反应的影响

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摘要

Muscle reflexes, evoked by opposing a sudden joint displacement, may be modulated by several factors associated with the features of the mechanical perturbation. We investigated the variations of muscle reflex response in relation to the predictability of load magnitude during a reactive grasping task. Subjects were instructed to flex the fingers 2–5 very quickly after a stretching was exerted by a handle pulled by loads of 750 or 1250 g. Two blocks of trials, one for each load (predictable condition), and one block of trials with a randomized distribution of the loads (unpredictable condition) were performed. Kinematic data were collected by an electrogoniometer attached to the middle phalanx of the digit III while the electromyography of the Flexor Digitorum Superficialis muscle was recorded by surface electrodes. For each trial we measured the kinematics of the finger angular rotation, the latency of muscle response and the level of muscle activation recorded below 50 ms (short-latency reflex), between 50 and 100 ms (long-latency reflex) and between 100 and 140 ms (initial portion of voluntary response) from the movement onset. We found that the latency of the muscle response lengthened from predictable (35.5±1.3 ms for 750 g and 35.5±2.5 ms for 1250 g) to unpredictable condition (43.6±1.3 ms for 750 g and 40.9±2.1 ms for 1250 g) and the level of muscle activation increased with load magnitude. The parallel increasing of muscle activation and load magnitude occurred within the window of the long-latency reflex during the predictable condition, and later, at the earliest portion of the voluntary response, in the unpredictable condition. Therefore, these results indicate that when the amount of an upcoming perturbation is known in advance, the muscle response improves, shortening the latency and modulating the muscle activity in relation to the mechanical demand.
机译:通过抵抗突然的关节移位而引起的肌肉反射,可以由与机械扰动特征相关的几个因素来调节。我们调查了在反应性抓紧任务过程中,肌肉反射反应与负荷大小的可预测性相关的变化。指示受试者在750或1250 g的负荷下拉动手柄后,要非常快地弯曲手指2–5。进行了两个试验块,每个负荷一个(可预测的条件),以及一个对载荷进行随机分布的试验(不可预测的条件)。运动数据通过附着在指趾中指骨的电测角仪收集,而屈肌指浅肌的肌电图则通过表面电极记录。对于每项试验,我们测量了手指旋转角度的运动学,肌肉反应的潜伏期和在50毫秒(短时延反射)以下,50到100毫秒(长时延反射)之间以及100到100毫秒之间记录的肌肉激活水平运动开始后140毫秒(自愿应答的初始部分)。我们发现肌肉反应的潜伏期从可预测的(750 g的35.5±1.3 ms和1250 g的35.5±2.5 ms)延长到不可预测的状态(750 g的43.6±1.3 ms和1250 g的40.9±2.1 ms)延长了肌肉激活水平随负荷大小而增加。肌肉激活和负荷量的平行增加发生在可预测状态下的长潜伏期反射的窗口内,随后在不可预测状态下发生于自愿反应的最早部分。因此,这些结果表明,当预先知道即将发生的扰动的量时,肌肉反应会改善,从而缩短了潜伏期并根据机械需求调节了肌肉活动。

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