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膝关节位置觉和膝关节屈肌神经肌肉功能在两次亚最大量离心收缩后都会发生类似的改变。

Knee position sense and knee flexor neuromuscular function are similarly altered after two submaximal eccentric bouts.

机构信息

Laboratoire Motricité Humaine Expertise Sport Santé (UPR 6312), Ecole Universitaire de Recherche HEALTHY: Ecosystèmes des Sciences de la Santé, Université Côte d'Azur, Campus STAPS-Sciences du Sport, 261, Boulevard du Mercantour, 06205, Nice Cedex 03, France.

出版信息

Eur J Appl Physiol. 2023 Feb;123(2):311-323. doi: 10.1007/s00421-022-05063-6. Epub 2022 Oct 22.

Abstract

PURPOSE

This study examined eccentric-induced fatigue effects on knee flexor (KF) neuromuscular function and on knee position sense. This design was repeated across two experimental sessions performed 1 week apart to investigate potential repeated bout effects.

METHODS

Sixteen participants performed two submaximal bouts of KF unilateral eccentric contractions until reaching a 20% decrease in maximal voluntary isometric contraction force. Knee position sense was evaluated with position-matching tasks in seated and prone positions at 40° and 70° of knee flexion so that KF were either antagonistic or agonistic during the positioning movement. The twitch interpolation technique was used to assess KF neuromuscular fatigue. Perceived muscle soreness was also assessed. Measurements were performed before, immediately (POST) and 24 h after (POST24) each eccentric bout.

RESULTS

No repeated bout effect on neuromuscular function and proprioceptive parameters was observed. At POST, central and peripheral factors contributed to the force decrement as shown by significant decreases in voluntary activation level (- 3.8 ± 4.8%, p < 0.01) and potentiated doublet torque at 100 Hz (- 10 ± 15.8%, p < 0.01). At this time point, position-matching errors significantly increased by 1.7 ± 1.9° in seated position at 40° (p < 0.01). At POST24, in presence of muscle soreness (p < 0.05), although KF neuromuscular function had recovered, position-matching errors increased by 0.6 ± 2.6° in prone position at 40° (p < 0.01).

CONCLUSION

These results provide evidence that eccentric-induced position sense alterations may arise from central and/or peripheral mechanisms depending on the testing position.

摘要

目的

本研究旨在探讨离心运动引起的疲劳对膝关节屈肌(KF)神经肌肉功能和膝关节位置感的影响。本设计在相隔一周的两次实验中重复进行,以研究潜在的重复回合效应。

方法

16 名参与者进行了两次 KF 单侧离心收缩的亚最大收缩,直到最大等长收缩力下降 20%。在 40°和 70°膝关节屈曲的坐姿和俯卧位进行位置匹配任务,评估膝关节位置感,使得 KF 在定位运动期间既是拮抗肌又是协同肌。使用抽搐插值技术评估 KF 神经肌肉疲劳。还评估了肌肉酸痛感。在每次离心收缩前后(POST)和 24 小时后(POST24)进行测量。

结果

未观察到神经肌肉功能和本体感觉参数的重复回合效应。在 POST 时,由于主动激活水平显著下降(-3.8±4.8%,p<0.01)和 100Hz 时的增强双脉冲扭矩(-10±15.8%,p<0.01),中枢和外周因素共同导致了力量下降。此时,在 40°的坐姿中,位置匹配误差显著增加了 1.7±1.9°(p<0.01)。在 POST24 时,在肌肉酸痛的情况下(p<0.05),尽管 KF 神经肌肉功能已经恢复,但在 40°的俯卧位中,位置匹配误差增加了 0.6±2.6°(p<0.01)。

结论

这些结果表明,离心运动引起的位置感改变可能来自中枢和/或外周机制,具体取决于测试位置。

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