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认知表现下降,谁之过?主观精神疲劳、大脑去激活还是副交感神经活动增加?这很复杂!

A drop in cognitive performance, whodunit? Subjective mental fatigue, brain deactivation or increased parasympathetic activity? It's complicated!

机构信息

Human Physiology and Sports Physiotherapy Research Group, Vrije Universiteit Brussel, Brussels, Belgium; VIPER Research Unit, Royal Military Academy, Brussels, Belgium.

Department of Radiology, UZ-Brussel, Vrije Universiteit Brussel, Brussels, Belgium.

出版信息

Cortex. 2022 Oct;155:30-45. doi: 10.1016/j.cortex.2022.06.006. Epub 2022 Jun 30.

Abstract

INTRODUCTION

The discussion on the mechanism(s) underlying mental fatigue is still ongoing. We want to reconfirm a performance-impairing effect of executing a lengthy cognitive task on the subsequent task, and determine how this effect is subtended by neurophysiological variations and subjective experience.

METHODS

Twenty participants (12 females; age: 23 ± 1 y) performed an experimental (EXP) and a control trial (CON) in a randomized counter-balanced order. In both trials a 90-min cognitive task had to be performed (EXP, Stroop task; CON, documentary), that was preceded and followed up by a 10-min flanker task that was completed in the MRI scanner. Throughout the protocol, subjective self-evaluation, peripheral autonomic activation and metabolic measures, cognitive performance and functional brain imagery were recorded. Due to equipment issues, only 11 participants could be included in the analysis of the peripheral autonomic activation.

RESULTS

Flanker performance dropped both in EXP and CON (p = .010). Heart rate variability increased in time, both in EXP and CON (p ≤ .047). A time-on-task related drop in Stroop performance (p = .007) and higher subjective mental fatigue was observed in EXP compared to CON (p < .001). Moreover, the BOLD signal of response inhibition-associated brain activity in corpus callosum, somatosensory association cortex and anterior cingulate cortex was reduced during the post-flanker task in EXP compared to CON (p < .001). Discussion Our results indicate two different processes: 1) A time-on-task effect as a peripheral physiological deactivation that coincided with the observed post-flanker performance drop both in EXP and CON; and 2) An increase in the level of subjective mental fatigue with prolonged performance on a 90-min Stroop task that is associated with a decrease in response inhibition-associated brain activity in both grey and white matter, specifically in the EXP-condition.

CONCLUSION

Our results highlight the multifactoriality of carryover effects, in the present study increased parasympathetic activity was linked with the drop in performance.

摘要

引言

关于精神疲劳的机制的讨论仍在继续。我们想重新确认执行冗长认知任务对后续任务的表现影响,并确定这种影响如何由神经生理变化和主观体验来支撑。

方法

20 名参与者(12 名女性;年龄:23±1 岁)以随机、平衡的顺序进行了实验(EXP)和对照(CON)试验。在这两个试验中,都需要进行 90 分钟的认知任务(EXP:斯特鲁普任务;CON:纪录片),在认知任务之前和之后都要进行 10 分钟的侧翼任务,该任务在磁共振成像(MRI)扫描仪中完成。在整个方案中,记录了主观自我评估、外周自主神经激活和代谢测量、认知表现和功能脑成像。由于设备问题,只有 11 名参与者的外周自主神经激活分析可纳入分析。

结果

侧翼任务的表现都在 EXP 和 CON 中下降(p=0.010)。心率变异性随时间增加,EXP 和 CON 中均增加(p≤0.047)。EXP 中与任务持续时间相关的斯特鲁普表现下降(p=0.007)和更高的主观精神疲劳与 CON 相比(p<0.001)。此外,在 EXP 中,与反应抑制相关的脑活动的脑白质信号在执行后侧翼任务时在胼胝体、躯体感觉联合皮层和前扣带皮层中减少(p<0.001)。讨论我们的结果表明了两个不同的过程:1)作为外周生理去激活的任务持续时间效应,这与 EXP 和 CON 中观察到的侧翼任务表现下降同时发生;2)在执行 90 分钟斯特鲁普任务时,主观精神疲劳程度增加,这与灰质和白质中反应抑制相关的脑活动减少有关,特别是在 EXP 条件下。

结论

我们的结果强调了延续效应的多因素性,在本研究中,增加的副交感神经活动与表现下降有关。

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