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经颅直流电刺激调节思维漫游:基于电场建模的荟萃分析。

Modulation of mind wandering using transcranial direct current stimulation: A meta-analysis based on electric field modeling.

机构信息

Institute for Psychology, UiT The Arctic University of Norway, Norway.

出版信息

Neuroimage. 2023 May 15;272:120051. doi: 10.1016/j.neuroimage.2023.120051. Epub 2023 Mar 23.

Abstract

Mind wandering (MW) is a heterogeneous construct involving task-unrelated thoughts. Recently, the interest in modulating MW propensity via non-invasive brain stimulation techniques has increased. Single-session transcranial direct current stimulation (tDCS) in healthy controls has led to mixed results in modulating MW propensity, possibly due to methodological heterogeneity. Therefore, our aim was to conduct a systematic meta-analysis to examine the influence of left dorsolateral prefrontal cortex (lDLPFC) and right inferior parietal lobule (rIPL) targeted tDCS on MW propensity. Importantly, by computational modeling of tDCS-induced electric fields, we accounted for differences in tDCS-dose across studies that varied strongly in their applied methodology. Fifteen single-session, sham-controlled tDCS studies published until October 2021 were included. All studies involved healthy adult participants and used cognitive tasks combined with MW thought-probes. Heterogeneity in tDCS electrode placement, stimulation polarity and intensity were controlled for by means of electric field simulations, while overall methodological quality was assessed via an extended risk of bias (RoB) assessment. We found that RoB was the strongest predictor of study outcomes. Moreover, the rIPL was the most promising cortical area for influencing MW, with stronger anodal electric fields in this region being negatively associated with MW propensity. Electric field strength in the lDLPFC was not related to MW propensity. We identified several severe methodological problems that could have contributed to overestimated effect sizes in this literature, an issue that needs urgent attention in future research in this area. Overall, there is no reliable evidence for tDCS influencing MW in the healthy. However, the analysis also revealed that increasing neural excitability in the rIPL via tDCS might be associated with reduced MW propensity. In an exploratory approach, we also found some indication that targeting prefrontal regions outside the lDLPFC with tDCS could lead to increased MW propensity.

摘要

思维漫游(MW)是一种涉及与任务无关的思想的异质结构。最近,人们对通过非侵入性脑刺激技术调节 MW 倾向的兴趣有所增加。在健康对照中,单次经颅直流电刺激(tDCS)在调节 MW 倾向方面的结果喜忧参半,这可能是由于方法学的异质性。因此,我们的目的是进行系统的荟萃分析,以检查左背外侧前额叶皮层(lDLPFC)和右下顶叶皮层(rIPL)靶向 tDCS 对 MW 倾向的影响。重要的是,通过对 tDCS 诱导电场的计算建模,我们考虑了研究之间 tDCS 剂量的差异,这些差异在应用方法上有很大的不同。共纳入了截至 2021 年 10 月发表的 15 项单疗程、假刺激对照的 tDCS 研究。所有研究均涉及健康成年参与者,并使用认知任务结合 MW 思维探测。通过电场模拟控制 tDCS 电极放置、刺激极性和强度的异质性,同时通过扩展风险偏倚(RoB)评估评估整体方法学质量。我们发现 RoB 是研究结果的最强预测因子。此外,rIPL 是影响 MW 的最有前途的皮质区域,该区域的阳极电场强度越强,与 MW 倾向呈负相关。lDLPFC 的电场强度与 MW 倾向无关。我们发现了一些严重的方法学问题,这些问题可能导致该文献中高估了效应大小,这是该领域未来研究中急需关注的问题。总的来说,没有可靠的证据表明 tDCS 会影响健康人的 MW。然而,分析还表明,通过 tDCS 增加 rIPL 中的神经兴奋性可能与降低 MW 倾向有关。在探索性方法中,我们还发现一些迹象表明,用 tDCS 靶向 lDLPFC 以外的前额叶区域可能会导致 MW 倾向增加。

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