小脑经颅直流电刺激对跳眼适应和皮质醇反应的影响。

Q3 Medicine Cerebellum and Ataxias Pub Date : 2021-01-04 DOI:10.1186/s40673-020-00124-y
Delia A Gheorghe, Muriel T N Panouillères, Nicholas D Walsh
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引用次数: 2

摘要

背景:经颅直流电刺激(tDCS)在前额叶皮层已经被证明可以调节主观、神经元和神经内分泌反应,特别是在应激处理的背景下。然而,目前尚不清楚tDCS刺激其他大脑区域(如小脑)是否也能类似地影响应激反应。尽管越来越多的证据表明小脑与压力相关的加工有关,但没有研究调查小脑tDCS对激素和行为的影响。方法:本研究验证了小脑tDCS对情绪、行为和皮质醇的影响。为了做到这一点,我们采用了单盲、假对照设计来测量在在线阳极和阴极刺激下小脑依赖的跳眼适应任务中的表现,以及皮质醇输出和情绪的变化。45名参与者被纳入分析。刺激组在人口学变量、已知影响皮质醇水平、情绪和许多个性特征的潜在混杂因素上进行匹配。结果:结果显示,tDCS极性不影响皮质醇水平或主观情绪,但影响行为。接受阳极刺激的参与者的跳眼适应性增加了8.4%,明显高于阴极组(1.6%)。结论:刺激对跳眼适应的影响是目前研究小脑刺激对相关功能影响机制的重要文献。我们的结论是,需要进一步的研究来了解小脑tDCS是否以及如何在挑战条件下模块应激反应。
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Investigating the effects of cerebellar transcranial direct current stimulation on saccadic adaptation and cortisol response.

Background: Transcranial Direct Current Stimulation (tDCS) over the prefrontal cortex has been shown to modulate subjective, neuronal and neuroendocrine responses, particularly in the context of stress processing. However, it is currently unknown whether tDCS stimulation over other brain regions, such as the cerebellum, can similarly affect the stress response. Despite increasing evidence linking the cerebellum to stress-related processing, no studies have investigated the hormonal and behavioural effects of cerebellar tDCS.

Methods: This study tested the hypothesis of a cerebellar tDCS effect on mood, behaviour and cortisol. To do this we employed a single-blind, sham-controlled design to measure performance on a cerebellar-dependent saccadic adaptation task, together with changes in cortisol output and mood, during online anodal and cathodal stimulation. Forty-five participants were included in the analysis. Stimulation groups were matched on demographic variables, potential confounding factors known to affect cortisol levels, mood and a number of personality characteristics.

Results: Results showed that tDCS polarity did not affect cortisol levels or subjective mood, but did affect behaviour. Participants receiving anodal stimulation showed an 8.4% increase in saccadic adaptation, which was significantly larger compared to the cathodal group (1.6%).

Conclusion: The stimulation effect on saccadic adaptation contributes to the current body of literature examining the mechanisms of cerebellar stimulation on associated function. We conclude that further studies are needed to understand whether and how cerebellar tDCS may module stress reactivity under challenge conditions.

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Cerebellum and Ataxias
Cerebellum and Ataxias Medicine-Neurology (clinical)
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