有和无脊髓损伤轮椅篮球运动员小侧比赛后神经肌肉疲劳。

Josu Ascondo, Aitor Iturricastillo, Cristina Granados, Uxue Fernandez-Lasa, Estibaliz Romaratezabala, Javier Yanci
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摘要

目的:分析脊髓损伤(SCI)和非脊髓损伤(Non-SCI)轮椅篮球运动员在一系列小边比赛(SSG)中心理生理反应和神经肌肉疲劳的差异。方法:13名高水平男子轮椅篮球运动员(年龄28.8±9.2岁,体重75.9±11.3 kg),每周1次,连续5周参加4对4次的SSG。在每次SSG结束时记录SSG过程中的绝对心率和相对心率(HR)、肌肉和呼吸感知用力(rempus和RPEres)、鼓室温度和加速能力。结果:脊髓损伤运动员与非脊髓损伤运动员在SSG系列的相对HR变量上无显著差异。结论:脊髓损伤组与非脊髓损伤组轮椅篮球运动员在SSG任务中的生理反应和加速能力存在差异。
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Neuromuscular Fatigue after Small-Sided Games in Wheelchair Basketball Players with and without Spinal Cord Injury.

Purpose: The aim was to analyze the differences between wheelchair basketball players with Spinal Cord Injury (SCI) and without Spinal Cord injury (Non-SCI) in psycho-physiological response and neuromuscular fatigue in a series of small-sided games (SSG). Methods: Thirteen high-level wheelchair basketball male players (age 28.8 ± 9.2 years, body mass 75.9 ± 11.3 kg) participated in four versus four SSG once a week for five consecutive weeks. Absolute and relative heart rate (HR) during SSG and muscular and respiratory perceived exertion (RPEmus and RPEres), tympanic temperature, and acceleration capacity were recorded at the end of each SSG. Results: No significant differences were observed between SCI and non-SCI players in relative HR variables in SSG series. However, the SCI group had a lower absolute HR (mean HR and peak HR) (p < .05 or p < .01, ES = 0.73-1.39) and higher perceived muscular load (RPEmusTL) (p < .01, ES = 0.75-0.82) during SSG. Regarding the evolution of the physiological response, no differences were observed between the four bouts in the SCI group. However, the Non-SCI group showed an increase in the absolute and relative variables of HR and RPEres and RPEmus (p < .05 or p < .01, ES = 0.45-1.06). On the contrary, only the SCI group showed a loss of acceleration capacity between the four series (p < .05, ES = 0.28-0.35). Conclusion: The results of this study show that there are differences between SCI and non-SCI wheelchair basketball players in their physiological response and acceleration capacity during SSG tasks.

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