首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Interaction of the Left Dorsolateral Prefrontal Cortex (l-DLPFC) and Right Orbitofrontal Cortex (OFC) in Hot and Cold Executive Functions: Evidence from Transcranial Direct Current Stimulation (tDCS)
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Interaction of the Left Dorsolateral Prefrontal Cortex (l-DLPFC) and Right Orbitofrontal Cortex (OFC) in Hot and Cold Executive Functions: Evidence from Transcranial Direct Current Stimulation (tDCS)

机译:左背体前额外皮层(L-DLPFC)和右眶内皮质皮质(OFC)在热冷执行功能中的相互作用:来自经颅直流刺激的证据(TDCS)

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摘要

An organizing principle which has recently emerged proposes that executive functions (EF) can be divided into cognitive (cold) and affective/reward-related (hot) processes related to the dorsolateral prefrontal cortex (DLPFC) and orbitofrontal cortex (OFC) respectively. A controversial question is whether cold and hot EF are functionally and structurally independent or not. This study investigated how the left DLPFC (l-DLPFC) and right OFC (r-OFC) interact in hot and cold EF using transcranial direct current stimulation (tDCS). Twenty-four healthy male subjects received anodal, cathodal and sham tDCS (20 min, 1.5 mA) over the l-DLPFC (F3) and r-OFC (Fp2) with a 72-h interval between each stimulation condition. After five minutes of stimulation, participants underwent a series of cold and hot EF tasks including the Go/No-Go and Tower of Hanoi (TOH) as measures of cold EF and the BART and temporal discounting tasks as measures of hot EF. Inhibitory control mostly benefited from anodal l-DLPFC/cathodal r-OFC tDCS. Planning and problem solving were more prominently affected by anodal l-DLPFC/cathodal r-OFC stimulation, although the reversed electrode position with the anode positioned over the r-OFC also affected some aspects of task performance. Risk-taking behavior and risky decision-making decreased under both anodal l-DLPFC/cathodal r-OFC and anodal r-OFC/cathodal l-DLPFC tDCS. Cold EF rely on DLPFC activation while hot EF rely on both, DLPFC and OFC activation. Results suggest that EF are placed on continuum with lateral and mesial prefrontal areas contributing to cold and hot aspects respectively. (C) 2017 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:最近出现的组织原则提出,执行职能(EF)分别分为与背侧前额前皮质皮质(DLPFC)和胰酸钴皮层(OFC)有关的认知(冷)和情感/奖励相关(热)过程。有争议的问题是冷和热的EF是否在功能上和结构上独立。本研究研究了左DLPFC(L-DLPFC)和右侧(R-OFC)如何使用经颅直流电流刺激(TDC)在热和冷的EF中相互作用。在每次刺激条件之间具有72-H间隔,在L-DLPFC(F3)和R-OFC(FP2)上接受二十四个健康男性受试者在L-DLPFC(F3)和R-OFC(FP2)上接受了阳极,阴极和假的TDC(20分钟,1.5 mA)。经过五分钟的刺激后,参与者经历了一系列冷酷和热的EF任务,包括Go / No-Go和Hanoi塔(TOH)作为冷EF和BART的措施,以及作为热门效率的衡量标准的衡量标准。抑制控制主要受益于anoDal L-DLPFC / Cathodal R-OFC TDC。规划和问题解决是由anoodal L-DLPFC /阴极R-OFC刺激的突出影响,尽管具有位于R-OFC的阳极的反向电极位置也影响了任务性能的一些方面。在阳极L-DLPFC /阴极R-OFC和AnoDal R-OFC / Cathodal L-DLPFC TDC下,风险采取行为和风险决策减少。冷EF依靠DLPFC激活,同时热EF依赖于DLPFC和OFC激活。结果表明,EF分别涉及横向和间隙前额叶区域的连续体,分别有助于冷和热的各个方面。 (c)2017年IBRO。 elsevier有限公司出版。保留所有权利。

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