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Neural Oscillations in Temporoparietal Lobes under Inhibitory Control in a Naturalistic Situation

机译:自然状态下抑制性控制下颞叶的神经振荡

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The stop-signal paradigm has been commonly applied as a measure of inhibitory control due to its exclusive ability to capture theoretically important parameters related to the response inhibition. To observe the inhibitory function in realistic environmental settings, we designed a battlefield scenario (BFS), which is inspired by real condition like open fire between soldier and terrorist for saving civilian because terrorism is serious problem worldwide. The stop-signal task has been widely adopted as a way to parametrically quantify the response inhibition process. This study compared the response inhibition in two different scenarios: One used traditional simple visual symbols as go and stop signals i.e. symbol scenario (SBS), and the other translated the typical design into a battlefield scenario. The outcomes confirmed that both scenarios induced increased activity in the right inferior frontal gyrus (IFG) and pre supplementary motor area (preSMA), which have been associated to response inhibition. Particularly, in right temporoparietal junction (rTPJ) we found both higher BOLD activation and EEG power modulation in the battlefield scenario than in the traditional scenario after the stop stimulus onset.
机译:停止信号范式由于具有捕获与响应抑制相关的理论上重要的参数的独特能力,因此通常被用作抑制控制的量度。为了观察现实环境中的抑制功能,我们设计了一个战场场景(BFS),该场景受到诸如士兵与恐怖分子之间开火以拯救平民的现实条件的启发,因为恐怖主义在世界范围内都是严重的问题。停止信号任务已被广泛用作参数化响应抑制过程的一种方法。这项研究比较了两种不同情况下的响应抑制:一种使用传统的简单视觉符号作为走行和停止信号,即符号场景(SBS),另一种将典型设计转换为战场场景。结果证实,这两种情况均导致右下额回(IFG)和辅助前运动区(preSMA)的活动增加,这与反应抑制有关。特别地,在停止刺激开始后,我们发现在战场情景中右颞颞顶交界处(rTPJ)的BOLD激活和脑电功率调制均高于传统情景。

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