Université Côte d'Azur, Laboratoire Motricité Humaine Expertise Sport Santé (LAMHESS, UPR 6312), Ecole Universitaire de Recherche HEALTHY: Ecosystèmes des Sciences de la Santé, Campus STAPS - Sciences du Sport, 261, Boulevard du Mercantour, 06205, Nice Cedex 03, France.
Université Côte d'Azur, CHU, Nice, France.
Sci Rep. 2022 Feb 11;12(1):2338. doi: 10.1038/s41598-022-06081-2.
The mechanisms underlying movement sense alterations following repeated eccentric contractions remain unclear. This study concomitantly investigated the effects of unilateral eccentric contractions on movement sense and on neuromuscular function at the knee before, immediately after (POST), 24 (POST24) and 48 (POST48) h after the exercise. Twelve participants performed sets of submaximal knee extensors (KE) eccentric contractions until a 20% decrease in maximal voluntary isometric contraction (MVIC) torque was reached. Threshold to detect passive movement (TTDPM) tasks were used to assess movement sense during both knee flexion (TTDPM) and extension (TTDPM). KE fatigability was assessed using the interpolated twitch technique. TTDPM values expressed in seconds and the percentage of unsuccessful trials only increased at POST during TTDPM and TTDPM. The 20%-MVIC decrease was associated with significant decreases in voluntary activation level (- 12.7%, p < 0.01) and potentiated doublet torque at 100 Hz (- 18.1%, p < 0.001). At POST24, despite persistent reductions of maximal voluntary and electrically evoked torques associated with increased perceived muscle soreness, TTDPM values and the percentage of unsuccessful trials returned to baseline values. Consequently, movement sense alterations were only observed in the presence of voluntary activation deficits, suggesting that some exercise-induced central alterations may affect the somatosensory function.
反复离心收缩后运动感知改变的机制尚不清楚。本研究同时观察了单侧离心收缩对运动感知和膝关节神经肌肉功能的影响,分别在运动前、运动后即刻(POST)、24 小时(POST24)和 48 小时(POST48)进行。12 名参与者进行了一系列亚最大强度的膝关节伸展(KE)离心收缩,直到最大随意等长收缩(MVIC)扭矩下降 20%。使用阈值探测被动运动(TTDPM)任务来评估膝关节屈伸时的运动感知(TTDPM)。使用插值抽搐技术评估 KE 疲劳性。TTDPM 值以秒为单位表示,并且在 POST 期间,只有 TTDPM 和 TTDPM 的不成功试验百分比增加。20%-MVIC 下降与自愿激活水平显著降低(-12.7%,p<0.01)和 100Hz 下的增强双脉冲扭矩降低(-18.1%,p<0.001)有关。在 POST24 时,尽管最大自愿和电诱发扭矩持续降低,肌肉酸痛感增加,但 TTDPM 值和不成功试验的百分比恢复到基线值。因此,只有在自愿激活缺陷的情况下才观察到运动感知改变,这表明一些运动引起的中枢改变可能会影响躯体感觉功能。