Suppr超能文献

视听诱发电位中跨感觉成分的时空频率特征

Spatio-temporal frequency characteristics of intersensory components in audiovisually evoked potentials.

作者信息

Sakowitz Oliver Werner, Quian Quiroga Rodrigo, Schürmann Martin, Başar Erol

机构信息

Institute of Physiology, Medical University Lübeck, 23538 Lübeck, Germany.

出版信息

Brain Res Cogn Brain Res. 2005 May;23(2-3):316-26. doi: 10.1016/j.cogbrainres.2004.10.012. Epub 2004 Dec 9.

Abstract

Perception of the external world is based on complex neural processes allowing for combination of sensory experiences from different modalities. Audiovisual (AV) integration is discussed in this paper on the basis of the intersensory component (IC), which is the part of the multisensory-evoked potential that is not explained by linear summation of the unisensory-evoked potentials. It was predicted that audiovisual ICs can be extracted, localized, and differentiated by means of wavelet-based frequency analysis. Healthy, right-handed subjects (n = 15) were instructed to view and listen to presented stimuli (A: auditory; V: visual; and AV: audiovisual). Electroencephalographic data was analyzed off-line by means of wavelet transformation utilizing quadratic B-spline mother wavelets. Cross-modal interaction was investigated by subtracting wavelet responses to unimodal stimuli (A, V) alone from the wavelet responses to the combined stimuli (AV; i.e., interaction = AV - (A + V)). These difference waveforms revealed the phase-locked fraction of ICs further characterized by frequency-band and location. Spatio-temporally distinct ICs were observed in all frequency bands [31-62 Hz (gamma), 16-31 Hz (beta), 8-16 Hz (alpha), 4-8 Hz (theta), 0.5-4 Hz band (delta)]. These were most pronounced and sustained in the theta frequency band with early (<100 ms) appearance in fronto-centro-parietal sites. In contrast, alpha-band ICs tended to appear later (>200 ms) in these locations. High-frequency (beta- and gamma-band) ICs were less organized in their spatial pattern with both early and late appearance. ICs may reflect sensory and cognitive/integrative processes at the cortical level. In case of intersensory processing, alpha- and theta-activity appear to be spatio-temporally distinct, and could therefore participate in different stages of perception. These findings add further support to current model views of oscillatory activity in selectively distributed networks.

摘要

对外界的感知基于复杂的神经过程,这些过程允许整合来自不同感觉模态的感官体验。本文基于跨感觉成分(IC)讨论视听(AV)整合,跨感觉成分是多感觉诱发电位中不能由单感觉诱发电位的线性总和解释的部分。据预测,视听IC可以通过基于小波的频率分析来提取、定位和区分。健康的右利手受试者(n = 15)被要求观看和聆听呈现的刺激(A:听觉;V:视觉;AV:视听)。利用二次B样条母小波通过小波变换对脑电图数据进行离线分析。通过从对组合刺激(AV)的小波响应中减去对单模态刺激(A、V)的小波响应来研究跨模态相互作用(即相互作用 = AV - (A + V))。这些差异波形揭示了IC的锁相部分,进一步通过频带和位置进行表征。在所有频带[31 - 62 Hz(γ)、16 - 31 Hz(β)、8 - 16 Hz(α)、4 - 8 Hz(θ)、0.5 - 4 Hz频带(δ)]中观察到时空上不同的IC。这些在θ频带中最为明显且持续,在额中央顶叶部位早期(<100 ms)出现。相比之下,α频带IC在这些位置往往较晚(>200 ms)出现。高频(β和γ频带)IC在其空间模式上组织性较差,早期和晚期均有出现。IC可能反映皮质水平的感觉和认知/整合过程。在跨感觉处理的情况下,α和θ活动在时空上似乎是不同的,因此可能参与感知的不同阶段。这些发现进一步支持了当前关于选择性分布网络中振荡活动的模型观点。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验