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Using Transcranial Direct Current Stimulation to Enhance Creative Cognition: Interactions between Task, Polarity, and Stimulation Site

机译:使用经颅直流电刺激增强创造力认知:任务,极性和刺激部位之间的相互作用

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Creative cognition is frequently described as involving two primary processes, idea generation and idea selection. A growing body of research has used transcranial direct current stimulation (tDCS) to examine the neural mechanisms implicated in each of these processes. This literature has yielded a diverse set of findings that vary depending on the location and type (anodal, cathodal, or both) of electrical stimulation employed, as well as the task’s reliance on idea generation or idea selection. As a result, understanding the interactions between stimulation site, polarity and task demands is required to evaluate the potential of tDCS to enhance creative performance. Here, we review tDCS designs that have elicited reliable and dissociable enhancements for creative cognition. Cathodal stimulation over the left inferior frontotemporal cortex has been associated with improvements on tasks that rely primarily on idea generation, whereas anodal tDCS over left dorsolateral prefrontal cortex (DLPFC) and frontopolar cortex has been shown to augment performance on tasks that impose high demands on creative idea selection. These results highlight the functional selectivity of tDCS for different components of creative thinking and confirm the dissociable contributions of left dorsal and inferior lateral frontotemporal cortex for different creativity tasks. We discuss promising avenues for future research that can advance our understanding of the effectiveness of tDCS as a method to enhance creative cognition.
机译:创造性认知经常被描述为涉及两个主要过程,即思想产生和思想选择。越来越多的研究已经使用经颅直流电刺激(tDCS)来检查与这些过程有关的神经机制。这些文献得出了一系列不同的发现,这些发现取决于所采用的电刺激的位置和类型(阳极,阴极或两者兼有)以及任务对想法产生或想法选择的依赖。因此,需要了解刺激部位,极性和任务要求之间的相互作用,以评估tDCS增强创造力的潜力。在这里,我们回顾了tDCS设计,这些设计已经引发了对创意认知的可靠且可分离的增强。左下额颞叶皮层上的阴极刺激与主要依靠想法产生的任务的改善有关,而左背外侧前额叶皮层(DLPFC)和额极皮层上的阳极tDCS已显示出可增强对创意提出高要求的任务的性能想法选择。这些结果突出了tDCS对创造性思维的不同组成部分的功能选择性,并证实了左背和下额额颞叶皮层对不同创造性任务的贡献。我们讨论了未来研究的有希望的途径,这些途径可以增进我们对tDCS有效性的理解,这种方法可以增强创造性认知。

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