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10 Hz transcranial alternating current stimulation over posterior parietal cortex facilitates tactile temporal order judgment

机译:10 Hz经颅交流刺激后部Parietal Cortex促进触觉时间命令判断

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The temporal order judgment (TOJ) task has been widely used to investigate spatial attentional bias and the sensitivity of temporal discrimination during the processing of bilateral tactile information. Previous studies have shown that TOJ is impaired in patients who are suffering from chronic pain, stroke, and Parkinson's disease. In addition, studies have indicated that the posterior parietal cortex (PPC) is involved in the TOJ task. However, the neural basis of the TOJ task has not been fully elucidated. To investigate the causal relationship between cortical oscillation and certain behaviors, transcranial alternating current stimulation (tACS) has been used. tACS can entrain an oscillation in the cortex to the applying frequency. In previous studies, increased alpha-band (around 10 Hz) oscillation in the PPC is associated with attentional inhibition of the contralateral side. Therefore, we hypothesized that 10 Hz tACS over PPC would inhibit tactile processing in the contralateral side, leading to ipsilateral spatial attentional bias and impaired temporal discrimination. However, we found that 10 Hz tACS over either side of the PPC facilitated temporal discrimination, with 10 Hz tACS over the right PPC leading to a rightward shift of attentional bias. These findings indicated that 10 Hz tACS over the PPC has a facilitative effect in the processing of bilateral tactile information, and may be useful for modulating or treating spatial bias or temporal discrimination during the integration of bilateral stimulation, at least in the somatosensory domain.
机译:时间顺序判断(TOJ)任务已被广泛用于调查空间注意力偏差和在双边触觉信息加工过程中的时间辨别的敏感性。以前的研究表明,患有慢性疼痛,中风和帕金森病的患者患者受到影响。此外,研究表明,后耳廓皮质(PPC)涉及TOJ任务。但是,TOJ任务的神经基础尚未完全阐明。为了研究皮层振荡和某些行为之间的因果关系,已经使用了经颅交流刺激(TACS)。 TAC可以在皮层中捕获振荡到施加频率。在先前的研究中,PPC中增加的α带(约10Hz)振荡与对侧侧的注意力抑制有关。因此,我们假设PPC上的10 Hz TAC会抑制对侧侧的触觉加工,导致同侧空间注意力偏见和受损的时间辨别。然而,我们发现PPC促进的时间辨别的两侧10 Hz TAC,在右侧PPC上具有10 Hz TAC,导致注意力偏差的右转。这些发现表明,PPC上的10 Hz TAC在双边触觉信息的加工中具有促进效果,并且可用于调节或治疗在双侧刺激的整合期间的空间偏差或时间辨别,至少在躯体感觉域中。

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