Da Silva Flavio, Piponnier Enzo, Corcelle Baptiste, Blain Gregory M, Gioda Jennifer, Colson Serge S, Monjo Florian
Université Côte d'Azur, LAMHESS, France.
Université Savoie Mont Blanc, Interuniversity Laboratory of Human Movement Sciences, EA 7424, Chambéry, France.
Heliyon. 2023 Aug 5;9(8):e18884. doi: 10.1016/j.heliyon.2023.e18884. eCollection 2023 Aug.
This study assessed the immediate and prolonged effects of eccentric-induced fatigue on position sense, utilizing position-pointing tasks, which had not been previously implemented for this purpose. Fifteen healthy adults underwent a fatiguing eccentric protocol that entailed sets of unilateral submaximal contractions of knee flexor muscles until reaching a 20% decrease in maximal isometric torque production. Evaluations of knee flexor neuromuscular function as well as position-pointing tasks at 40° and 70° of knee flexion were conducted prior to the fatiguing eccentric protocol, immediately after (POST), and 24 h after (POST24) exercise termination. To assess neuromuscular fatigue etiology, electrical myostimulations were administered during and after maximal voluntary isometric contractions. At POST, the voluntary activation level and evoked potentiated doublet amplitude at 100 Hz were significantly reduced. In addition, position-pointing errors exhibited a significant increase at POST regardless of the tested angle, with participants positioning the pointer in a more extended position compared to their hidden exercised limb. At POST24, neuromuscular function and position sense parameters had reverted to their baseline levels. The findings of this experiment demonstrate that position-pointing accuracy was impaired immediately after the fatiguing eccentric protocol, manifesting in the presence of both central and peripheral fatigue. As position-pointing accuracy relies heavily on extrapersonal representation of the body at the brain level, acute changes in exercised limb's extrapersonal representation might have resulted from central fatigue-related mechanisms altering the cognitive processes responsible for converting kinesthetic signals into extrapersonal coordinates.
本研究利用位置指向任务评估了离心诱导疲劳对位置觉的即时和长期影响,此前尚未为此目的实施过该任务。15名健康成年人接受了一项疲劳离心方案,该方案包括对膝屈肌进行多组单侧次最大收缩,直至最大等长扭矩产生下降20%。在疲劳离心方案之前、运动结束后立即(POST)以及运动结束后24小时(POST24),对膝屈肌神经肌肉功能以及膝关节屈曲40°和70°时的位置指向任务进行了评估。为了评估神经肌肉疲劳的病因,在最大自主等长收缩期间和之后进行了肌电刺激。在POST时,100Hz时的自主激活水平和诱发的双脉冲幅度显著降低。此外,无论测试角度如何,POST时位置指向误差均显著增加,与隐藏的运动肢体相比,参与者将指针定位在更伸展的位置。在POST24时,神经肌肉功能和位置觉参数已恢复到基线水平。本实验结果表明,疲劳离心方案后立即出现位置指向准确性受损,表现为中枢和外周疲劳均存在。由于位置指向准确性在很大程度上依赖于大脑水平上身体的体外表征,运动肢体体外表征的急性变化可能是由中枢疲劳相关机制改变了负责将动觉信号转换为体外坐标的认知过程所致。