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Trait-like differences in underlying oscillatory state predict individual differences in the TMS-evoked Response

机译:潜在振荡状态的特质样差异预测TMS诱发反应的个体差异

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Background Combined transcranial magnetic stimulation (TMS) and electroencephalography (EEG) can provide insights into how differing cognitive contexts produce different brain states, through TMS-based measures of effective connectivity. For instance, in a recent study, the amplitude of the TMS-evoked response (TMS-ER) derived during the delay-period of a spatial short-term memory (STM) task had a larger amplitude, and greater spread to distal cortical areas, than the TMS-ER from a fixation condition (Johnson et al. J Neurophysiol, 2012). This indicated that the brain's electrical response to TMS is influenced by the cognitive context (STM or fixation) at the time of stimulation. This study also showed significant individual differences in the shape of the TMS-ER. Further, delay-period spectrograms revealed patterns of activity, the sustained pattern of delay-period activity (SPDPA), which were different across individuals. Objective/hypothesis The present study addressed whether individual differences in the SPDPA predict spectral properties of the TMS-ER. We predicted that significant relationships would exist in task-relevant areas, such as the prefrontal cortex in the case of STM. Methods The TMS-ER was derived using TMS-EEG and source-localization methods. Results The SPDPA varied significantly across subjects, and these differences predicted individual differences in several frequency-dependent parameters of the TMS-ER that were specific to task-relevant areas, including prefrontal cortex for STM. Furthermore, a follow-up test-retest study revealed that the SPDPA was stable over sessions. Conclusions These observations offer a window into how individual differences in the effects of TMS are related to trait-like individual differences in physiological profile.
机译:背景技术经颅磁刺激(TMS)和脑电图(EEG)的结合,可以通过基于TMS的有效连通性测量方法,洞悉不同的认知环境如何产生不同的大脑状态。例如,在最近的一项研究中,在空间短期记忆(STM)任务的延迟期间得出的TMS诱发反应(TMS-ER)的振幅具有较大的振幅,并更大程度地扩散到远端皮层区域,而不是固定条件下的TMS-ER(Johnson等人,J Neurophysiol,2012)。这表明在刺激时大脑对TMS的电反应受认知环境(STM或注视)的影响。这项研究还表明,TMS-ER的形状存在明显的个体差异。此外,延迟周期频谱图揭示了活动模式,即延迟周期活动的持续模式(SPDPA),这在个体之间是不同的。目的/假设本研究探讨了SPDPA中的个体差异是否可以预测TMS-ER的光谱特性。我们预测在与任务相关的区域中将存在重要的关系,例如在STM的情况下,前额叶皮层。方法采用TMS-EEG和源定位方法得到TMS-ER。结果SPDPA在受试者之间差异显着,这些差异预测了TMS-ER的几个频率相关参数的个体差异,这些参数特定于任务相关区域,包括STM的前额叶皮层。此外,一项后续测试-再测试研究表明,SPDPA在整个疗程中均保持稳定。结论这些观察结果为了解TMS效应中的个体差异与生理特征中性状样个体差异之间的关系提供了一个窗口。

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