...
首页> 外文期刊>Frontiers in Psychology >Detection of Near-Threshold Sounds is Independent of EEG Phase in Common Frequency Bands
【24h】

Detection of Near-Threshold Sounds is Independent of EEG Phase in Common Frequency Bands

机译:在普通频带中,近阈值声音的检测与EEG相位无关

获取原文
           

摘要

Low-frequency oscillations in the electroencephalogram (EEG) are thought to reflect periodic excitability changes of large neural networks. Consistent with this notion, detection probability of near-threshold somatosensory, visual, and auditory targets has been reported to co-vary with the phase of oscillations in the EEG. In audition, entrainment of δ-oscillations to the periodic occurrence of sounds has been suggested to function as a mechanism of attentional selection. Here, we examine in humans whether the detection of brief near-threshold sounds in quiet depends on the phase of EEG oscillations. When stimuli were presented at irregular intervals, we did not find a systematic relationship between detection probability and phase. When stimuli were presented at regular intervals (2-s), reaction times were significantly shorter and we observed phase entrainment of EEG oscillations corresponding to the frequency of stimulus presentation (0.5 Hz), revealing an adjustment of the system to the regular stimulation. The amplitude of the entrained oscillation was higher for hits than for misses, suggesting a link between entrainment and stimulus detection. However, detection was independent of phase at frequencies ≥1 Hz. Furthermore, we show that when the data are analyzed using acausal, though common, algorithms, an apparent “entrainment” of the δ-phase to presented stimuli emerges and detection probability appears to depend on δ-phase, similar to reports in the literature. We show that these effects are artifacts from phase distortion at stimulus onset by contamination with the event-related potential, which differs markedly for hits and misses. This highlights the need to carefully deal with this common problem, since otherwise it might bias and mislead this exciting field of research.
机译:脑电图(EEG)中的低频振荡被认为反映了大型神经网络的周期性兴奋性变化。与该观点一致,据报道,接近阈值的体感,视觉和听觉目标的检测概率与脑电图的振荡相位不同。在试听中,有人提出将δ振荡带入声音​​的周期性发生是听觉选择的一种机制。在这里,我们检查了人类是否在安静的情况下检测到短阈值声音是否取决于脑电图振荡的相位。当以不规则的间隔呈现刺激时,我们没有发现检测概率与相位之间的系统关系。当以规则间隔(2-s)呈现刺激时,反应时间明显缩短,并且我们观察到与刺激呈现频率(0.5 Hz)相对应的脑电图振荡的相位夹带,揭示了系统对规则刺激的调整。命中的夹带振荡幅度高于未命中,表明夹带和刺激检测之间存在联系。但是,检测与频率≥1Hz的相位无关。此外,我们显示,当使用非因果的(尽管是通用的)算法分析数据时,出现了δ相的明显“夹带”以呈现刺激,并且检测概率似乎取决于δ相,类似于文献中的报道。我们表明,这些效应是由于与事件相关的电位的污染而在刺激开始时产生的相位失真造成的伪影,对于击中和遗漏而言,显着不同。这突出了需要仔细处理这个常见问题的必要性,因为否则可能会偏向并误导这一令人兴奋的研究领域。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号