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Auditory Categorization of Man-Made Sounds Versus Natural Sounds by Means of MEG Functional Brain Connectivity

机译:通过MEG功能性大脑连接性对人造声音和自然声音进行听觉分类

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摘要

Previous neuroimaging studies have shown that sounds can be discriminated due to living-related or man-made-related characteristics and involve different brain regions. However, these studies have mainly provided source space analyses, which offer simple maps of activated brain regions but do not explain how regions of a distributed system are functionally organized under a specific task. In the present study, we aimed to further examine the functional connectivity of the auditory processing pathway across different categories of non-speech sounds in healthy adults, by means of MEG. Our analyses demonstrated significant activation and interconnection differences between living and man-made object sounds, in the prefrontal areas, anterior-superior temporal gyrus (aSTG), posterior cingulate cortex (PCC), and supramarginal gyrus (SMG), occurring within 80–120 ms post-stimulus interval. Current findings replicated previous ones, in that other regions beyond the auditory cortex are involved during auditory processing. According to the functional connectivity analysis, differential brain networks across the categories exist, which proposes that sound category discrimination processing relies on distinct cortical networks, a notion that has been strongly argued in the literature also in relation to the visual system.
机译:以前的神经影像学研究表明,由于生活相关或人为相关的特征,声音可以被区分,并且涉及不同的大脑区域。但是,这些研究主要提供了源空间分析,这些分析提供了激活的大脑区域的简单图谱,但没有解释在特定任务下如何组织分布式系统的区域。在本研究中,我们旨在通过MEG进一步检查健康成年人中跨不同类别的非语音声音的听觉处理路径的功能连通性。我们的分析表明,在前额叶区域,前上颞颞回(aSTG),后扣带回皮质(PCC)和上arg回(SMG)之间,活体和人造对象声音之间存在显着的激活和互连差异。刺激后间隔的毫秒数。当前的发现重复了以前的发现,在听觉处理过程中涉及到了听觉皮层以外的其他区域。根据功能连通性分析,存在跨类别的差分大脑网络,这表明声音类别的辨别处理依赖于不同的皮层网络,这一观念在文献中也与视觉系统有关。

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