Yang Li-Zhuang, Zhang Wei, Shi Bin, Yang Zhiyu, Wei Zhengde, Gu Feng, Zhang Jing, Cui Guanbao, Liu Ying, Zhou Yifeng, Zhang Xiaochu, Rao Hengyi
CAS Key Laboratory of Brain Function & Disease, and School of Life Sciences, University of Science and Technology of China, Hefei, Anhui, China.
Provincial Hospital Affiliated to Anhui Medical University, Hefei, Anhui, China.
PLoS One. 2014 Dec 22;9(12):e115772. doi: 10.1371/journal.pone.0115772. eCollection 2014.
Transcranial direct current stimulation (tDCS) is a non-invasive brain stimulation technique that can modulate cortical excitability. Although the clinical value of tDCS has been advocated, the potential of tDCS in cognitive rehabilitation of face processing deficits is less understood. Face processing has been associated with the occipito-temporal cortex (OT). The present study investigated whether face processing in healthy adults can be modulated by applying tDCS over the OT. Experiment 1 investigated whether tDCS can affect N170, a face-sensitive ERP component, with a face orientation judgment task. The N170 in the right hemisphere was reduced in active stimulation conditions compared with the sham stimulation condition for both upright faces and inverted faces. Experiment 2 further demonstrated that tDCS can modulate the composite face effect, a type of holistic processing that reflects the obligatory attention to all parts of a face. The composite face effect was reduced in active stimulation conditions compared with the sham stimulation condition. Additionally, the current polarity did not modulate the effect of tDCS in the two experiments. The present study demonstrates that N170 can be causally manipulated by stimulating the OT with weak currents. Furthermore, our study provides evidence that obligatory attention to all parts of a face can be affected by the commonly used tDCS parameter setting.
经颅直流电刺激(tDCS)是一种可调节皮层兴奋性的非侵入性脑刺激技术。尽管tDCS的临床价值已得到认可,但其在面部加工缺陷认知康复方面的潜力却鲜为人知。面部加工与枕颞叶皮层(OT)有关。本研究调查了通过在OT上施加tDCS是否可以调节健康成年人的面部加工。实验1通过面部朝向判断任务研究了tDCS是否会影响N170(一种对面部敏感的事件相关电位成分)。在主动刺激条件下,与假刺激条件相比,直立面孔和倒置面孔在右半球的N170均降低。实验2进一步证明,tDCS可以调节合成面孔效应,这是一种整体加工类型,反映了对面部所有部分的强制性注意。与假刺激条件相比,主动刺激条件下的合成面孔效应降低。此外,在这两个实验中电流极性并未调节tDCS的效果。本研究表明,通过弱电流刺激OT可以因果性地操纵N170。此外,我们的研究提供了证据,即常用的tDCS参数设置会影响对面部所有部分的强制性注意。