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双半球经颅直流电刺激顶叶岛盖对触觉方向辨别能力的影响

The Effect of Dual-Hemisphere Transcranial Direct Current Stimulation Over the Parietal Operculum on Tactile Orientation Discrimination.

作者信息

Fujimoto Shuhei, Tanaka Satoshi, Laakso Ilkka, Yamaguchi Tomofumi, Kon Noriko, Nakayama Takeo, Kondo Kunitsugu, Kitada Ryo

机构信息

Tokyo Bay Rehabilitation HospitalChiba, Japan.

Department of Public Health, Kyoto University Graduate School of MedicineKyoto, Japan.

出版信息

Front Behav Neurosci. 2017 Sep 20;11:173. doi: 10.3389/fnbeh.2017.00173. eCollection 2017.

Abstract

The parietal operculum (PO) often shows ipsilateral activation during tactile object perception in neuroimaging experiments. However, the relative contribution of the PO to tactile judgment remains unclear. Here, we examined the effect of transcranial direct current stimulation (tDCS) over bilateral PO to test the relative contributions of the ipsilateral PO to tactile object processing. Ten healthy adults participated in this study, which had a double-blind, sham-controlled, cross-over design. Participants discriminated grating orientation during three tDCS and sham conditions. In the dual-hemisphere tDCS conditions, anodal and cathodal electrodes were placed over the left and right PO. In the uni-hemisphere tDCS condition, anodal and cathodal electrodes were applied over the left PO and contralateral orbit, respectively. In the tDCS and sham conditions, we applied 2 mA for 15 min and for 15 s, respectively. Computational models of electric fields (EFs) during tDCS indicated that the strongest electric fields were located in regions in and around the PO. Compared with the sham condition, dual-hemisphere tDCS improved the discrimination threshold of the index finger contralateral to the anodal electrode. Importantly, dual-hemisphere tDCS with the anodal electrode over the left PO yielded a decreased threshold in the right finger compared with the uni-hemisphere tDCS condition. These results suggest that the ipsilateral PO inhibits tactile processing of grating orientation, indicating interhemispheric inhibition (IHI) of the PO.

摘要

在神经影像学实验中,顶叶岛盖(PO)在触觉物体感知过程中常表现出同侧激活。然而,PO对触觉判断的相对贡献仍不清楚。在此,我们研究了经颅直流电刺激(tDCS)作用于双侧PO的效果,以测试同侧PO对触觉物体加工的相对贡献。10名健康成年人参与了本研究,该研究采用双盲、假刺激对照、交叉设计。参与者在三种tDCS和假刺激条件下辨别光栅方向。在双侧半球tDCS条件下,将阳极和阴极电极分别置于左侧和右侧PO上方。在单侧半球tDCS条件下,阳极和阴极电极分别置于左侧PO和对侧眼眶上方。在tDCS和假刺激条件下,我们分别施加2 mA电流15分钟和15秒。tDCS期间的电场(EFs)计算模型表明,最强电场位于PO及其周围区域。与假刺激条件相比,双侧半球tDCS提高了阳极电极对侧食指的辨别阈值。重要的是,与单侧半球tDCS条件相比,左侧PO上方放置阳极电极的双侧半球tDCS使右侧手指的阈值降低。这些结果表明,同侧PO抑制了光栅方向的触觉加工,提示PO存在半球间抑制(IHI)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75ab/5611440/cf3b6afbb048/fnbeh-11-00173-g0001.jpg

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