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温带环境下不同运动强度和方案中脑温升高与身体表现之间的关联。

Association between the increase in brain temperature and physical performance at different exercise intensities and protocols in a temperate environment.

作者信息

Kunstetter A C, Wanner S P, Madeira L G, Wilke C F, Rodrigues L O C, Lima N R V

机构信息

Laboratório de Fisiologia do Exercício, Departamento de Educação Física, Escola de Educação Física, Fisioterapia e Terapia Ocupacional, Universidade Federal de Minas Gerais, Belo Horizonte, MG, Brasil.

出版信息

Braz J Med Biol Res. 2014 Aug;47(8):679-88. doi: 10.1590/1414-431x20143561. Epub 2014 Jul 8.

Abstract

There is evidence that brain temperature (T brain) provides a more sensitive index than other core body temperatures in determining physical performance. However, no study has addressed whether the association between performance and increases in T brain in a temperate environment is dependent upon exercise intensity, and this was the primary aim of the present study. Adult male Wistar rats were subjected to constant exercise at three different speeds (18, 21, and 24 m/min) until the onset of volitional fatigue. T brain was continuously measured by a thermistor inserted through a brain guide cannula. Exercise induced a speed-dependent increase in T brain, with the fastest speed associated with a higher rate of T brain increase. Rats subjected to constant exercise had similar T brain values at the time of fatigue, although a pronounced individual variability was observed (38.7-41.7°C). There were negative correlations between the rate of T brain increase and performance for all speeds that were studied. These results indicate that performance during constant exercise is negatively associated with the increase in T brain, particularly with its rate of increase. We then investigated how an incremental-speed protocol affected the association between the increase in T brain and performance. At volitional fatigue, T brain was lower during incremental exercise compared with the T brain resulting from constant exercise (39.3 ± 0.3 vs 40.3 ± 0.1°C; P<0.05), and no association between the rate of T brain increase and performance was observed. These findings suggest that the influence of T brain on performance under temperate conditions is dependent on exercise protocol.

摘要

有证据表明,在确定身体机能方面,脑温(T brain)比其他核心体温提供了一个更敏感的指标。然而,尚无研究探讨在温带环境中,机能与脑温升高之间的关联是否取决于运动强度,而这正是本研究的主要目的。成年雄性Wistar大鼠以三种不同速度(18、21和24米/分钟)持续运动,直至出现自愿性疲劳。通过插入脑导套管的热敏电阻连续测量脑温。运动导致脑温随速度增加而升高,速度最快时脑温升高速率更高。持续运动的大鼠在疲劳时脑温值相似,尽管观察到明显的个体差异(38.7 - 41.7°C)。在所研究的所有速度下,脑温升高速率与机能之间均呈负相关。这些结果表明,持续运动期间的机能与脑温升高呈负相关,尤其是与其升高速率相关。然后,我们研究了递增速度方案如何影响脑温升高与机能之间的关联。在自愿性疲劳时,递增运动期间的脑温低于持续运动时的脑温(39.3 ± 0.3 vs 40.3 ± 0.1°C;P<0.05),且未观察到脑温升高速率与机能之间的关联。这些发现表明,在温带条件下,脑温对机能的影响取决于运动方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb0a/4165295/ce55673635b2/1414-431X-bjmbr-47-08-00679-gf001.jpg

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