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诱导 4 公里自行车计时赛中局部缺血对神经肌肉疲劳发展的影响。

Effects of induced local ischemia during a 4-km cycling time trial on neuromuscular fatigue development.

机构信息

Endurance Performance Research Group, School of Physical Education and Sport , University of São Paulo, São Paulo, Brazil.

Laboratory of Exercise Physiology, School of Physical Education, University of Campinas, Campinas, São Paulo, Brazil.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2021 Jun 1;320(6):R812-R823. doi: 10.1152/ajpregu.00312.2020. Epub 2021 Mar 31.

Abstract

The present study analyzed the effects of local ischemia during endurance exercise on neuromuscular fatigue (NMF). Nine cyclists performed, in a counterbalanced order, two separate 4-km cycling time trials (TT) with (ISCH) or without (CONTR) induced local ischemia. NMF was characterized by using isometric maximal voluntary contractions (IMVC), whereas central [voluntary activation (VA)] and peripheral fatigue [peak torque of potentiated twitch (TwPt)] of knee extensors were evaluated using electrically evoked contractions performed before (PRE) and 1 min after (POST) the TT. Electromyographic activity (EMG), power output (PO), oxygen uptake (V̇o), and rating of perceived exertion (RPE) were also recorded. The decrease in IMVC (-15 ± 9% vs. -10 ± 8%, = 0.66), VA (-4 ± 3% vs. -3 ± 3%, = 0.46), and TwPt (-16 ± 7% vs. -19 ± 14%, = 0.67) was similar in ISCH and CONTR. Endurance performance was drastically reduced in ISCH condition (512 ± 29 s) compared with CONTR (386 ± 17 s) ( < 0.001), which was accompanied by lower EMG, PO, and V̇o responses (all < 0.05). RPE was greater in ISCH compared with CONTR ( < 0.05), but the rate of change was similar throughout the TT (8.19 ± 2.59 vs. 7.81 ± 2.01 RPE.% of total time, > 0.05). These results indicate that similar end-exercise NMF levels were accompanied by impaired endurance performance in ISCH compared with CONTR. These novel findings suggest that the local reduced oxygen availability affected the afferent feedback signals to the central nervous system, ultimately increasing perceived effort and reducing muscle activity and exercise intensity to avoid surpassing a sensory tolerance limit before the finish line.

摘要

本研究分析了耐力运动过程中局部缺血对神经肌肉疲劳(NMF)的影响。9 名自行车运动员以平衡的方式进行了两次单独的 4 公里计时赛(TT),分别为有(ISCH)和无(CONTR)局部缺血。使用等长最大自愿收缩(IMVC)来描述 NMF,而通过电刺激收缩在 TT 之前(PRE)和之后 1 分钟(POST)评估膝伸肌的中枢[自愿激活(VA)]和外周疲劳[增强的 twitch 峰值扭矩(TwPt)]。还记录了肌电图活动(EMG)、功率输出(PO)、摄氧量(V̇o)和感觉努力评分(RPE)。IMVC 的下降(-15±9%与-10±8%, = 0.66)、VA(-4±3%与-3±3%, = 0.46)和 TwPt(-16±7%与-19±14%, = 0.67)在 ISCH 和 CONTR 中相似。与 CONTR(386±17s)相比,ISCH 条件下的耐力表现急剧下降(512±29s)( < 0.001),这伴随着 EMG、PO 和 V̇o 反应的降低(均<0.05)。与 CONTR 相比,ISCH 的 RPE 更高(<0.05),但 TT 期间的变化率相似(8.19±2.59与 7.81±2.01 RPE.% of total time, > 0.05)。这些结果表明,与 CONTR 相比,ISCH 时相似的运动后 NMF 水平伴随着耐力表现受损。这些新发现表明,局部氧供应减少影响了向中枢神经系统的传入反馈信号,最终增加了感知努力,并减少了肌肉活动和运动强度,以避免在到达终点线之前超过感觉耐受极限。

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