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Time Domain and Frequency Domain Measures of the EEG in Relation to Crossmodal Spatial Attention

机译:脑电的时域和频域量度与跨模态空间注意的关系

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摘要

Understanding how auditory and visual stimuli interact with respect to spatial attention is an important piece toward an understanding of human attention processes more generally. Previous work has reported that both time-domain, namely the auditory-evoked contralateral positivity (ACOP), and frequency-domain, namely alpha power, aspects of the EEG over ventral-occipital cortex are modulated by the presentation of an auditory stimulus, suggestive of an automatic modulation of visual spatial attention in response to auditory stimuli. However, the extent of the automaticity of these effects has not been fully explored. In particular, it is unclear whether the modulation of visual spatial attention in response to an auditory stimulus is affected by an individual's belief of the location of auditory stimulation, or instead occurs as a purely bottom-up process, irrespective of top-down factors.;Experiment 1 sought to clarify this phenomenon via spatially ambiguous auditory stimuli, and a participant instruction manipulation. Twenty-four healthy adults performed an auditory detection task, in which they were asked to detect a pure tone embedded in noise. Within the task, the location of the auditory stimuli was unambiguous with respect to their lateral position in space, i.e. emanating from the left or right, but ambiguous with respect to their location in front of vs. behind the participants. The previously reported ACOP effect was replicated with respect to tone lateralization, but was not modulated by the front vs. back belief manipulation. The previously reported alpha power effect was also replicated with respect to tone lateralization, but was additionally modulated by the belief manipulation, such that time-frequency alpha suppression was greater when participants were instructed that the tones were being presented from in front of vs. back of their position.;Within Experiment 2, eighteen healthy adults performed a bimodal spatial judgment task, which required participants to make spatial judgments about the location of unimodal auditory, unimodal visual, or bimodal auditory-visual stimuli. Auditory stimuli were bursts of noise, while visual stimuli were low luminance ovals. Behaviorally, spatial judgments from Experiment 2 suggest that auditory and visual stimulus positions are not processed independently, with the influence of visual position on auditory response greater than the influence of auditory position of visual response. Physiologically, ACOP and alpha power effects in response to unimodal auditory stimuli that had been observed within Experiment 1 were replicated. However, while both unimodal visual and bimodal stimuli elicited alpha power lateralization, the ACOP effect was absent. Taken together with the results of Experiment 1, this result suggest that while the ACOP and alpha power modulation have a similar topography and time-course, they appear to reflect dissociable processes.
机译:理解听觉和视觉刺激如何与空间注意力有关是更广泛地理解人类注意力过程的重要部分。以前的工作已经报道,通过听觉刺激的提示,脑电图在腹枕皮质上的时域(即听觉诱发的对侧阳性(ACOP))和频域(即α功率)均受到提示。听觉刺激响应的视觉空间注意力自动调节的研究但是,这些效果的自动化程度尚未得到充分探讨。尤其是,尚不清楚响应听觉刺激的视觉空间注意力的调节是否受个人对听觉刺激位置的信念的影响,还是作为纯自下而上的过程发生,而与自上而下的因素无关。 ;实验1试图通过空间模棱两可的听觉刺激和参与者的指令操纵来澄清这种现象。 24名健康成年人执行了听觉检测任务,其中要求他们检测嵌入噪声中的纯音。在任务中,听觉刺激的位置相对于它们在空间中的侧向位置是明确的,即从左侧或右侧发出,但是相对于它们在参与者前面还是后面的位置是模糊的。先前报道的ACOP效果在音调偏侧方面是可复制的,但不受正面和背面信仰操纵的调节。先前报告的alpha功率效果在音调偏侧方面也被复制,但是通过信念操纵进行了额外的调制,因此当指示参与者从对前和反面呈现音调时,时频alpha抑制效果会更大。在实验2中,十八名健康成年人执行了双峰空间判断任务,要求参与者对单峰听觉,单峰视觉或双峰听觉视觉刺激的位置进行空间判断。听觉刺激是一阵噪音,而视觉刺激是低亮度的椭圆形。从行为上讲,实验2的空间判断表明听觉和视觉刺激位置不是独立处理的,视觉位置对听觉响应的影响大于视觉响应的听觉位置的影响。在生理上,复制了在实验1中观察到的响应单峰听觉刺激的ACOP和α功率效应。然而,虽然单峰视觉刺激和双峰刺激均引起α光功率偏侧化,但ACOP效应却不存在。结合实验1的结果,该结果表明,尽管ACOP和α功率调制具有相似的形貌和时程,但它们似乎反映了可分离的过程。

著录项

  • 作者

    Roberts, Daniel M.;

  • 作者单位

    George Mason University.;

  • 授予单位 George Mason University.;
  • 学科 Neurosciences.;Cognitive psychology.
  • 学位 Ph.D.
  • 年度 2018
  • 页码 177 p.
  • 总页数 177
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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