The Impact of Acute Mild Normobaric Hypoxia and a Single Bout of Exercise to Volitional Exhaustion on Cognitive Performance in Endurance and Strength-Trained Athletes: The role of BDNF, EP-1, Catecholamines and Lactate.

IF 1.9 3区 医学 Q2 SPORT SCIENCES Journal of Human Kinetics Pub Date : 2023-07-01 DOI:10.5114/jhk/168282
Zofia Piotrowicz, Miłosz Czuba, Małgorzata Chalimoniuk, Józef Langfort
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Abstract

The aim of the study was to examine whether a single bout of exercise to volitional exhaustion, performed under moderate normobaric hypoxia (H), would affect psychomotor performance (PP) in differently trained athletes. For this purpose, ten strength-trained (S) athletes, ten endurance-trained (E) athletes and ten healthy men leading a sedentary lifestyle as a control (C) group performed voluntarily two graded exercise tests until volitional exhaustion (EVE) under normoxia (N) and H (FiO2 = 14.7%). We measured the peripheral level of the brain derived neurotrophic factor (BDNF), choice reaction time (CRT) and the number of correct reactions (NCR) as indices of PP. Psychomotor tests were performed at rest, immediately after the EVE and 3 minutes after the EVE. Venous blood samples were collected at rest, immediately after cessation of each EVE, and 1 h after each EVE. The results showed that the EVE significantly (p < 0.05) impaired CRT under N and H, and NCR under H only in the E group. The higher WRmax in the E compared to the S and C groups was associated with a significant (p < 0.005) increase in adrenaline (A) and noradrenaline (NA). There were no significant differences between conditions (N vs. H) in the BDNF at rest and after exercise. The EVE impaired cognitive function only in the E group; higher involvement of the sympathetic nervous system, A and NA may also play a role in this phenomenon. Therefore, it can be concluded that exposure to H did not have a negative impact on CRT or NCR. Moreover, BDNF did not improve cognitive function.

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急性轻度常压缺氧和单次运动对耐力和力量训练运动员认知表现的影响:BDNF、EP-1、儿茶酚胺和乳酸盐的作用
本研究的目的是检验在中度常压缺氧(H)下进行的单次运动是否会影响不同训练的运动员的精神运动表现(PP)。为此,10名力量训练(S)运动员、10名耐力训练(E)运动员和10名以久坐生活方式的健康男性作为对照组(C),在常氧(N)和H (FiO2 = 14.7%)下自愿进行了两次分级运动测试,直到意志衰竭(EVE)。测定脑源性神经营养因子(BDNF)外周水平、选择反应时间(CRT)和正确反应次数(NCR)作为PP的指标。精神运动测试分别在静息、EVE后立即和EVE后3分钟进行。静息时、每次EVE结束后立即和每次EVE结束后1小时采集静脉血。结果显示,仅E组在N和H下EVE对CRT的影响显著(p < 0.05), H下NCR的影响显著(p < 0.05)。与S和C组相比,E组WRmax的升高与肾上腺素(a)和去甲肾上腺素(NA)的显著升高(p < 0.005)相关。休息和运动后的BDNF在不同条件(N和H)之间没有显著差异。EVE仅在E组出现认知功能损伤;交感神经系统的高度参与,A和NA也可能在这一现象中起作用。因此,可以得出结论,暴露于H对CRT或NCR没有负面影响。此外,BDNF没有改善认知功能。
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来源期刊
Journal of Human Kinetics
Journal of Human Kinetics 医学-运动科学
CiteScore
4.80
自引率
0.00%
发文量
83
审稿时长
3 months
期刊介绍: The Journal of Human Kinetics is an open access interdisciplinary periodical offering the latest research in the science of human movement studies. This comprehensive professional journal features articles and research notes encompassing such topic areas as: Kinesiology, Exercise Physiology and Nutrition, Sports Training and Behavioural Sciences in Sport, but especially considering elite and competitive aspects of sport. The journal publishes original papers, invited reviews, short communications and letters to the Editors. Manuscripts submitted to the journal must contain novel data on theoretical or experimental research or on practical applications in the field of sport sciences. The Journal of Human Kinetics is published in March, June, September and December. We encourage scientists from around the world to submit their papers to our periodical.
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