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Fatigue sensation induced by the sounds associated with mental fatigue and its related neural activities: revealed by magnetoencephalography

机译:精神疲劳和相关神经活动相关声音引起的疲劳感:脑磁图显示

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Background It has been proposed that an inappropriately conditioned fatigue sensation could be one cause of chronic fatigue. Although classical conditioning of the fatigue sensation has been reported in rats, there have been no reports in humans. Our aim was to examine whether classical conditioning of the mental fatigue sensation can take place in humans and to clarify the neural mechanisms of fatigue sensation using magnetoencephalography (MEG). Methods Ten and 9 healthy volunteers participated in a conditioning and a control experiment, respectively. In the conditioning experiment, we used metronome sounds as conditioned stimuli and two-back task trials as unconditioned stimuli to cause fatigue sensation. Participants underwent MEG measurement while listening to the metronome sounds for 6 min. Thereafter, fatigue-inducing mental task trials (two-back task trials), which are demanding working-memory task trials, were performed for 60 min; metronome sounds were started 30 min after the start of the task trials (conditioning session). The next day, neural activities while listening to the metronome for 6 min were measured. Levels of fatigue sensation were also assessed using a visual analogue scale. In the control experiment, participants listened to the metronome on the first and second days, but they did not perform conditioning session. MEG was not recorded in the control experiment. Results The level of fatigue sensation caused by listening to the metronome on the second day was significantly higher relative to that on the first day only when participants performed the conditioning session on the first day. Equivalent current dipoles (ECDs) in the insular cortex, with mean latencies of approximately 190 ms, were observed in six of eight participants after the conditioning session, although ECDs were not identified in any participant before the conditioning session. Conclusions We demonstrated that the metronome sounds can cause mental fatigue sensation as a result of repeated pairings of the sounds with mental fatigue and that the insular cortex is involved in the neural substrates of this phenomenon.
机译:背景技术已经提出,不适当地调节的疲劳感可能是慢性疲劳的原因之一。尽管已经在大鼠中报道了疲劳感觉的经典条件,但是在人类中还没有报道。我们的目的是检查经典的精神疲劳感条件是否可以在人类中发生,并使用脑磁图(MEG)阐明疲劳感的神经机制。方法10名健康志愿者和9名健康志愿者分别参加了调节和对照实验。在调节实验中,我们使用节拍器声音作为调节刺激,并使用两背任务试验作为非调节刺激来引起疲劳感。参与者在听节拍器声音6分钟的同时进行MEG测量。此后,进行了要求进行工作记忆任务试验的诱发疲劳的心理任务试验(两次背部任务试验),持续了60分钟;节拍器声音在任务试验开始30分钟后开始(调理阶段)。第二天,在听节拍器6分钟时测量神经活动。还使用视觉模拟量表评估疲劳感水平。在对照实验中,参与者在第一天和第二天听了节拍器,但没有进行调节。在对照实验中未记录MEG。结果仅当参与者在第一天进行调节时,第二天听节拍器引起的疲劳感水平才比第一天明显提高。在条件治疗后的八名参与者中,有六名参与者在岛上皮层中观察到等效电流偶极子(ECD),平均潜伏期约为190 ms,尽管在条件干预之前未在任何参与者中识别出ECD。结论我们证明节拍器的声音会由于反复将声音与精神疲劳配对而引起精神疲劳感,并且岛突皮层参与了该现象的神经基质。

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