首页> 外文期刊>Brain research >Changes in illusory ankle movements induced by tendon vibrations during the delayed recovery phase of stretch-shortening cycle fatigue: An indirect study of muscle spindle sensitivity modifications.
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Changes in illusory ankle movements induced by tendon vibrations during the delayed recovery phase of stretch-shortening cycle fatigue: An indirect study of muscle spindle sensitivity modifications.

机译:在伸展缩短周期疲劳的延迟恢复阶段,由肌腱振动引起的虚幻的踝关节运动的变化:肌梭敏感性改变的间接研究。

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This study examined the perceived movement velocity induced by tendon vibrations during the delayed recovery phase of a stretch-shortening cycle (SSC)-type exercise characterized by 2 to 4 days of neuromuscular and proprioceptive impairments. Seven subjects performed until exhaustion series of unilateral rebounds involving mostly the triceps surae muscle group. Fatigue effects were quantified for the exercised and non-exercised legs through muscle soreness and maximal voluntary plantarflexion test (MVC) performed immediately before (PRE) and after the SSC exercise, and repeated 2 days later (D2). At PRE and D2, mechanical vibrations at 40, 60, 80, 100, and 120 Hz were applied to distal tendons of the exercised ankle. For each vibration, the subjects had to reproduce the perceived movement velocity with the non-exercised ankle. According to previous studies, the sole exercised leg was characterized by a D2 peak of muscle soreness associated, in the MVC test, with significant decreases in maximal force and mean soleus muscle activity. As compared to the PRE test and in all subjects, the vibrations applied at D2 to the tendon of the fatigued ankle extensor muscles led to significant decreases in the perceived movement velocity at 80 and 100 Hz, but to an increased one at 40 Hz. In contrast, vibrations applied to the tendon of the non-fatigued ankle flexor muscle did not result in any significant change. These results suggest that the delayed recovery phase of SSC fatigue is characterized by changes in muscle proprioception, which may partly result from a decreased sensitivity of the primary endings.
机译:这项研究检查了在以2至4天的神经肌肉和本体感受障碍为特征的伸展缩短周期(SSC)型运动的延迟恢复阶段,由肌腱振动引起的感知运动速度。七名受试者进行了试验,直到累及一系列的肱三头肌肱三头肌组的单侧反弹。通过立即在SSC运动之前和之后进行肌肉酸痛和最大自愿足底屈肌试验(MVC),并在2天后重复试验(D2),对运动和非运动腿的疲劳效果进行量化。在PRE和D2处,将40、60、80、100和120 Hz的机械振动施加到运动脚踝的远侧肌腱。对于每种振动,受试者必须重现未锻炼脚踝的感知运动速度。根据先前的研究,在MVC测试中,运动的唯一腿的特征是肌肉酸痛D2峰,其最大力量和平均比目鱼肌活动显着下降。与PRE测试相比,在所有受试者中,在D2处施加到疲惫的踝伸肌腱的振动导致在80 Hz和100 Hz时感知的运动速度显着降低,但在40 Hz时则显着增加。相反,施加到未疲劳的踝屈肌的肌腱上的振动没有导致任何显着变化。这些结果表明,SSC疲劳的延迟恢复阶段的特征是肌肉本体感受的改变,这可能部分归因于初级末端敏感性的降低。

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