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Steady-state responses in MEG demonstrate information integration within but not across the auditory and visual senses

机译:MEG中的稳态响应表明信息整合在听觉和视觉感官之内,但并非跨听觉和视觉感官

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To form a unified percept of our environment, the human brain integrates information within and across the senses. This MEG study investigated interactions within and between sensory modalities using a frequency analysis of steady-state responses that are elicited time-locked to periodically modulated stimuli. Critically, in the frequency domain, interactions between sensory signals are indexed by crossmodulation terms (i.e. the sums and differences of the fundamental frequencies). The 3 × 2 factorial design, manipulated (1) modality: auditory, visual or audiovisual (2) steady-state modulation: the auditory and visual signals were modulated only in one sensory feature (e.g. visual gratings modulated in luminance at 6. Hz) or in two features (e.g. tones modulated in frequency at 40. Hz & amplitude at 0.2. Hz). This design enabled us to investigate crossmodulation frequencies that are elicited when two stimulus features are modulated concurrently (i) in one sensory modality or (ii) in auditory and visual modalities. In support of within-modality integration, we reliably identified crossmodulation frequencies when two stimulus features in one sensory modality were modulated at different frequencies. In contrast, no crossmodulation frequencies were identified when information needed to be combined from auditory and visual modalities. The absence of audiovisual crossmodulation frequencies suggests that the previously reported audiovisual interactions in primary sensory areas may mediate low level spatiotemporal coincidence detection that is prominent for stimulus transients but less relevant for sustained SSR responses. In conclusion, our results indicate that information in SSRs is integrated over multiple time scales within but not across sensory modalities at the primary cortical level.
机译:为了形成对我们环境的统一感知,人脑将信息整合到感官之内和之中。这项MEG研究通过对稳态响应进行频率分析来研究感觉模态之间及其之间的相互作用,该稳态响应被时间锁定到周期性调制的刺激上。至关重要的是,在频域中,感觉信号之间的交互作用是通过交叉调制项(即基频的和与差)来索引的。 3×2析因设计,可操作的(1)方式:听觉,视觉或视听(2)稳态调制:仅在一种感官特征中调制听觉和视觉信号(例如,以6 Hz的亮度调制视觉光栅)或两个功能(例如,以40. Hz的频率和0.2。Hz的幅度调制的音调)。这种设计使我们能够研究在同时刺激两种刺激特征时(i)以一种感觉方式或(ii)以听觉和视觉方式进行调制时引起的交叉调制频率。为了支持模态内整合,当一种感觉模态中的两个刺激特征以不同的频率进行调制时,我​​们可靠地确定了交叉调制频率。相反,当需要从听觉和视觉方式中组合信息时,没有识别出交叉调制频率。视听交叉调制频率的缺乏表明先前报道的在主要感觉区域的视听交互作用可能会介导低水平的时空重合检测,这对于刺激瞬变很重要,但与持续的SSR反应无关。总之,我们的结果表明,SSRs中的信息在初级皮质水平上的多个时间尺度内(而不是跨感觉模态)被整合。

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