建立阳极左前额叶经颅直流电刺激对工作记忆能力影响的元模型

M. Wischnewski, Taylor Berger, Alexander Opitz
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摘要

摘要 大量研究已经证明了阳极前额叶经颅直流电刺激(tDCS)对工作记忆的有益影响。然而,在应用的 tDCS 参数和工作记忆结果测量中存在很大的差异。我们采用元建模方法研究了左前额叶皮层的 tDCS 电场与工作记忆能力改善之间的关系。利用这种方法,我们将多项研究中的结果测量向量与 tDCS 相关电场进行了关联。这些成绩-电场相关性(PEC)是针对灰质的每个空间位置计算得出的。我们从 67 项研究中提取了 354 个数据点,比较了 tDCS 对以下方面影响的空间图谱:I)工作记忆的准确性和速度(与工作记忆类型和评估时间无关);II)言语和视觉空间工作记忆(与成绩测量和评估时间无关);III)刺激期间和刺激后的成绩(与成绩测量和工作记忆类型无关)。我们发现,对额叶下部区域(布罗德曼第 47 区)进行阳极 tDCS 刺激可提高准确性,而对背外侧和前额叶前部区域(布罗德曼第 9/10 区)进行刺激则可提高工作记忆速度。此外,左前额叶 tDCS 只对言语工作记忆有益处,对视觉空间工作记忆没有改善。我们还观察到区域特异性效应只针对刺激期间的任务表现,而非刺激后的任务表现。这项研究的结果阐明了前额叶区域在工作记忆中的因果关系,并有助于指导 tDCS 在涉及工作记忆缺陷的疾病治疗中的应用。
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Meta-modeling the effects of anodal left prefrontal transcranial direct current stimulation on working memory performance
Abstract Numerous studies have demonstrated the beneficial effects of anodal prefrontal transcranial direct current stimulation (tDCS) on working memory. However, a large variability exists in the applied tDCS parameters and working memory outcome measures. Using a meta-modeling approach, we investigated the relationship between tDCS electric fields in the left prefrontal cortex and improvements in working memory performance. Using this approach, a vector of outcome measures is correlated with the tDCS-related electric fields across several studies. These performance-electric field correlations (PEC) are calculated for each spatial location of the grey matter. Extracting 354 data points from 67 studies, we compared the spatial maps of tDCS effects on I) working memory accuracy and speed (regardless of working memory type and time of assessment), II) verbal and visuospatial working memory (regardless of performance measurement and time of assessment), and III) performance during and after stimulation (regardless of performance measurement and working memory type). We found that accuracy improves when anodal tDCS is applied to inferior frontal regions (Brodmann area 47) while working memory speed benefits from stimulation to dorsolateral and anterior prefrontal areas (Brodmann areas 9/10). Furthermore, the beneficial effects of left prefrontal tDCS are exclusive to verbal working memory, with no improvements in visuospatial working memory. We also observed region-specific effects only for task performance during, but not after, stimulation. The results of this study elucidate the causal involvement of prefrontal regions in working memory and can help guide tDCS placement for therapeutic application in disorders that involve working memory deficits.
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