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首页> 外文期刊>Journal of Cognitive Neuroscience >Upper Beta Band Oscillations in Human Premotor Cortex Encode Subjective Choices in a Vibrotactile Comparison Task
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Upper Beta Band Oscillations in Human Premotor Cortex Encode Subjective Choices in a Vibrotactile Comparison Task

机译:人类前运动皮层的高β带振荡编码触觉比较任务中的主观选择。

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Comparisons of sequentially presented vibrotactile frequencies have been extensively studied using electrophysiological recordings in nonhuman primates. Although neural signatures for working memory aspects of such tasks were recently also identified in human oscillatory EEG activity, homologue correlates of the comparison process are yet unknown. Here, we recorded EEG activity while participants decided which of two sequentially presented vibrotactile stimuli had a higher frequency. Because choices in this type of task are known to be systematically biased by the time-order effect, we applied Bayesian modeling to account for individual choice behavior. Using model-based EEG analysis, we found that upper beta band amplitude (∼20–30 Hz) was modulated by participants' choices. The modulation emerged ∼750 msec before a behavioral response was given and was source-localized to premotor areas.Importantly, the choice-dependent modulation of beta band amplitude was invariant to different motor response mappings and reflected the categorical outcome of the subjective comparison between the two frequencies. Consistently, this pattern was evident for both correct and incorrect trials, indicating that the beta band amplitude mirrors the internal representation of the comparison outcome. Our data complement previous findings in nonhuman primates and corroborate that the beta band activity in premotor areas reflects the categorical outcome of a sensory comparison prior to translation into an effector-specific motor command.
机译:已在非人类灵长类动物中使用电生理学记录广泛地研究了顺序显示的触觉频率的比较。尽管最近在人类振荡性脑电图活动中也发现了此类任务的工作记忆方面的神经信号,但比较过程的同源相关性仍未知。在这里,我们记录了脑电图的活动,而参与者则确定了依次出现的两个触觉刺激中哪个频率更高。由于已知此类任务中的选择会受到时间顺序效应的系统性偏见,因此我们应用贝叶斯模型来说明个体选择行为。使用基于模型的脑电图分析,我们发现参与者的选择调制了较高的β波段幅度(约20–30 Hz)。在给出行为响应之前,调制出现在约750毫秒处,并且源定位于运动前区域。重要的是,β带幅度的选择依赖调制对于不同的运动响应映射是不变的,反映了两者之间主观比较的分类结果。两个频率。一致地,这种模式对于正确和不正确的试验都是显而易见的,表明β谱带振幅反映了比较结果的内部表示。我们的数据补充了先前在非人类灵长类动物中的发现,并证实了运动前区域中的β谱带活动反映了翻译成效应子特定的运动命令之前感觉比较的分类结果。

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