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女子排球运动员非侵入性脑刺激后食欲素A唾液水平评估及其与注意力的相关性

Evaluation of Orexin-A Salivary Levels and its Correlation with Attention After Non-invasive Brain Stimulation in Female Volleyball Players.

作者信息

Moscatelli Fiorenzo, Monda Antonietta, Messina Antonietta, Monda Marcellino, Monda Vincenzo, Villano Ines, De Maria Antonella, Nicola Mancini, Marsala Gabriella, de Stefano Maria Ida, Limone Pierpaolo, Messina Giovanni, Polito Rita

机构信息

Department of Wellbeing, Nutrition and Sport, Pegaso Telematic University, Naples, Italy.

Department of Human Science and Quality of Life Promotion, San Raffaele Telematic University, Rome, Italy.

出版信息

Sports Med Open. 2024 Apr 4;10(1):32. doi: 10.1186/s40798-024-00698-5.

Abstract

BACKGROUND

The capacity to change attention from one area to another depending on the many environmental circumstances present is a crucial aspect of selective attention and is strictly correlated to reaction time. The cholinergic system of the basal forebrain is crucial for attentive abilities. Several inputs, particularly orexin neurons, whose cell bodies are found in the postero-lateral hypothalamus, can activate the cholinergic system. The aim of this study was to investigate if high frequencies rTMS at dorsolateral prefrontal cortex (DLPFC) in highly trained volleyball players can change Orexin-A levels, attention and reaction time. This study was a double-blinded (participant and evaluator) matched-pair experimental design. Twenty right-handed female volleyball players were recruited for the study (age 24.6 ± 2.7 years; height 177.0 ± 5.5 cm; body mass 67.5 ± 6.5 kg; BMI 21.5 ± 1.2).

RESULTS

The main finding of this study was that 10 Hz rTMS to the DLPFC seems to increase Orexin-A salivary levels and the percentage of correct answers, while decreasing RT. After rTMS, the athletes show an increase in the percentage of correct answers immediately after the end of stimulation, and also after 15 and 30 min. Moreover, the athletes show decreases in reaction time after the end of stimulation and after 15 and 30 min to the end of stimulation, while no differences were found at the end of stimulation. Finally, the athletes show significant increases in Orexin-A salivary levels after stimulation with a peak after 30' of the end.

CONCLUSION

The results of our study seem to indicate that there is a relationship between salivary Orexin-A levels and RT. These results could provide useful tools for modulating sports training; in fact, if confirmed, they could lead coaches to offer their athletes rTMS sessions appropriately integrated with training. In fact, alternating attention is a mental flexibility that enables people to change their point of focus and switch between tasks requiring various levels of cognition.

摘要

背景

根据当前众多环境情况,将注意力从一个区域转移到另一个区域的能力是选择性注意力的一个关键方面,并且与反应时间密切相关。基底前脑的胆碱能系统对注意力能力至关重要。几个输入,特别是食欲素神经元(其细胞体位于下丘脑后外侧),可以激活胆碱能系统。本研究的目的是调查在训练有素的排球运动员中,对背外侧前额叶皮质(DLPFC)进行高频重复经颅磁刺激(rTMS)是否会改变食欲素A水平、注意力和反应时间。本研究采用双盲(参与者和评估者)配对实验设计。招募了20名右利手女性排球运动员参与本研究(年龄24.6±2.7岁;身高177.0±5.5厘米;体重67.5±6.5千克;体重指数21.5±1.2)。

结果

本研究的主要发现是,对DLPFC施加10赫兹rTMS似乎会增加唾液中食欲素A的水平和正确答案的百分比,同时缩短反应时间。rTMS后,运动员在刺激结束后立即以及15分钟和30分钟后正确答案的百分比有所增加。此外,运动员在刺激结束后以及刺激结束后15分钟和30分钟时反应时间缩短,而在刺激结束时未发现差异。最后,运动员在刺激后唾液中食欲素A水平显著增加,在结束后30分钟达到峰值。

结论

我们的研究结果似乎表明唾液中食欲素A水平与反应时间之间存在关联。这些结果可为调节运动训练提供有用工具;事实上,如果得到证实,它们可能会促使教练为运动员提供与训练适当结合的rTMS疗程。实际上,交替注意力是一种心理灵活性,使人们能够改变关注点并在需要不同认知水平的任务之间切换。

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