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左右两侧视听整合的调制:侧与空间连贯性的影响。

Modulation of audiovisual integration in the left and right sides: effects of side and spatial coherency.

机构信息

Hunan University of Humanities, Science and Technology, Loudi, 417000, China.

出版信息

BMC Neurosci. 2024 Aug 27;25(1):40. doi: 10.1186/s12868-024-00889-6.

Abstract

BACKGROUND

Using event-related potentials (ERPs), we aimed to investigate audiovisual integration neural mechanisms during a letter identification task in the left and right sides. Unimodal (A,V) and bimodal (AV) stimuli were presented on either side, with ERPs from unimodal (A,V) stimuli on the same side being compared to those from simultaneous bimodal stimuli (AV). Non-zero results of the AV-(A + V) difference waveforms indicated audiovisual integration on the left/right side.

RESULTS

When spatially coherent AV stimuli were presented on the right side, two significant ERP components in the integrated differential wave were noted. The N134 and N262, present in the first 300 ms of the AV-(A + V) integration difference wave, indicated significant audiovisual integration effects. However, when these stimuli were presented on the left side, there were no significant integration components. This audiovisual integration difference may stem from left/right asymmetry of cerebral hemisphere language processing.

CONCLUSIONS

Audiovisual letter information presented on the right side was easier to integrate, process, and represent. Additionally, only one significant integrative component peaked at 140 ms in the parietal cortex for spatially non-coherent AV stimuli and provided audiovisual multisensory integration, which could be attributed to some integrative neural processes that depend on the spatial congruity of the auditory and visual stimuli.

摘要

背景

我们使用事件相关电位(ERPs)来研究在左、右两侧进行字母识别任务时的视听整合神经机制。单模态(A,V)和双模态(AV)刺激分别呈现于两侧,同侧的单模态(A,V)刺激的 ERPs 与同时呈现的双模态刺激(AV)的 ERPs 进行比较。AV-(A+V)差波形的非零结果表明了左/右侧的视听整合。

结果

当空间上一致的 AV 刺激呈现于右侧时,在整合的差分波中记录到两个显著的 ERP 成分。在 AV-(A+V)整合差异波的前 300 毫秒内出现的 N134 和 N262 表明了显著的视听整合效应。然而,当这些刺激呈现于左侧时,没有显著的整合成分。这种视听整合差异可能源于大脑半球语言处理的左右不对称性。

结论

呈现于右侧的视听字母信息更容易整合、处理和表示。此外,对于空间上不一致的 AV 刺激,仅在顶叶皮层有一个显著的整合成分在 140 毫秒处达到峰值,提供了视听多感觉整合,这可能归因于一些依赖于听觉和视觉刺激空间一致性的整合神经过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2748/11351292/9e555b946503/12868_2024_889_Fig1_HTML.jpg

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