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脑神经递质与精神疲劳的相互作用:研究方案。

The interplay of brain neurotransmission and mental fatigue: A research protocol.

机构信息

Faculty of Physical Education and Physiotherapy, Human Physiology and Sports Physiotherapy Research Group, Vrije Universiteit Brussel, Brussel, Belgium.

Research Foundation Flanders (FWO), Brussels, Belgium.

出版信息

PLoS One. 2024 Sep 10;19(9):e0310271. doi: 10.1371/journal.pone.0310271. eCollection 2024.

Abstract

INTRODUCTION

Mental fatigue (MF) significantly affects both cognitive and physical performance. However, the precise mechanisms, particularly concerning neurotransmission, require further investigation. An implication of the role of dopamine (DA) and noradrenaline (NA) is stated, but empirical evidence for this theory still needs to be provided. To address this gap, we aim to investigate the role of brain neurotransmission in elucidating if, and how prolonged cognitive activity induces MF and its subsequent impact on cognitive performance.

METHODS

This study (registration number: G095422N) will adopt a randomized cross-over design with sixteen healthy participants aged 18-35 years. The sessions include a familiarization, two experimental (DA: 20mg Methylphenidate; NA: 8mg Reboxetine) conditions, and one placebo (lactose tablet: 10mg) condition. A 60-minute individualized Stroop task will be used to investigate whether, and how the onset of MF changes under the influence of reuptake inhibitors. Attention and response inhibition will be assessed before and after the MF-inducing task using a Go/NoGo task. The integration of physiological (electroencephalography, heart rate), behavioral (attention, response inhibition), and subjective indicators (scales and questionnaires) will be used to detect the underlying mechanisms holistically. Data analysis will involve linear mixed models with significance at p<0.05.

DISCUSSION

The integration of diverse techniques and analyses offers a comprehensive perspective on the onset and impact of MF, introducing a novel approach. Future research plans involve extending this protocol to explore the connection between brain neurotransmission and physical fatigue. This protocol will further advance our understanding of the complex interplay between the brain and fatigue.

摘要

简介

精神疲劳(MF)显著影响认知和身体表现。然而,确切的机制,特别是关于神经递质的机制,需要进一步研究。多巴胺(DA)和去甲肾上腺素(NA)的作用已经被提出,但这一理论的实证证据仍有待提供。为了解决这一差距,我们旨在研究脑神经递质在阐明是否以及如何延长认知活动引起 MF 及其对认知表现的后续影响中的作用。

方法

本研究(注册号:G095422N)将采用随机交叉设计,纳入 18-35 岁的 16 名健康参与者。每个参与者将经历一个熟悉化阶段和三个实验条件(DA:20mg 哌醋甲酯;NA:8mg 瑞波西汀;安慰剂:乳糖片 10mg)。使用 60 分钟的个体化斯特鲁普任务来研究在再摄取抑制剂的影响下,MF 的发作是否以及如何发生变化。在 MF 诱导任务前后,使用 Go/NoGo 任务评估注意力和反应抑制。生理(脑电图、心率)、行为(注意力、反应抑制)和主观指标(量表和问卷)的综合分析将用于全面检测潜在机制。数据分析将采用线性混合模型,以 p<0.05 为显著性水平。

讨论

多种技术和分析的综合提供了对 MF 发作和影响的全面视角,引入了一种新方法。未来的研究计划包括扩展该方案,以探索脑神经递质与身体疲劳之间的联系。该方案将进一步推进我们对大脑和疲劳之间复杂相互作用的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22a7/11386444/3e9db0499085/pone.0310271.g001.jpg

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