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言语声诱发的频率跟随反应在种间高度保守,包含皮质成分。

Frequency-Following Responses to Speech Sounds Are Highly Conserved across Species and Contain Cortical Contributions.

机构信息

Department of Communication Sciences and Disorders, University of Pittsburgh, Pittsburgh, Pennsylvania 15260.

Department of Neurological Surgery, UPMC Children's Hospital of Pittsburgh, Pittsburgh, Pennsylvania 15213.

出版信息

eNeuro. 2021 Dec 23;8(6). doi: 10.1523/ENEURO.0451-21.2021. Print 2021 Nov-Dec.

Abstract

Time-varying pitch is a vital cue for human speech perception. Neural processing of time-varying pitch has been extensively assayed using scalp-recorded frequency-following responses (FFRs), an electrophysiological signal thought to reflect integrated phase-locked neural ensemble activity from subcortical auditory areas. Emerging evidence increasingly points to a putative contribution of auditory cortical ensembles to the scalp-recorded FFRs. However, the properties of cortical FFRs and precise characterization of laminar sources are still unclear. Here we used direct human intracortical recordings as well as extracranial and intracranial recordings from macaques and guinea pigs to characterize the properties of cortical sources of FFRs to time-varying pitch patterns. We found robust FFRs in the auditory cortex across all species. We leveraged representational similarity analysis as a translational bridge to characterize similarities between the human and animal models. Laminar recordings in animal models showed FFRs emerging primarily from the thalamorecipient layers of the auditory cortex. FFRs arising from these cortical sources significantly contributed to the scalp-recorded FFRs via volume conduction. Our research paves the way for a wide array of studies to investigate the role of cortical FFRs in auditory perception and plasticity.

摘要

时变音高是人类言语感知的重要线索。神经处理时变音高的方法有很多,其中包括头皮记录的频率跟随反应(FFR),这是一种被认为反映了来自皮质下听觉区域的整合锁相神经集合活动的电生理信号。越来越多的新证据表明,听觉皮质集合可能对头皮记录的 FFR 有一定的贡献。然而,皮质 FFR 的特性和层源的精确特征仍然不清楚。在这里,我们使用直接的人类皮质内记录以及来自猕猴和豚鼠的颅外和颅内记录,来描述 FFR 对时变音高模式的皮质源的特性。我们发现所有物种的听觉皮质中都有很强的 FFR。我们利用表示相似性分析作为一种转化桥梁来描述人类和动物模型之间的相似性。动物模型中的层记录显示,FFR 主要出现在听觉皮质的丘脑接受层。这些皮质源产生的 FFR 通过容积传导对头皮记录的 FFR 有显著贡献。我们的研究为广泛的研究铺平了道路,这些研究旨在探讨皮质 FFR 在听觉感知和可塑性中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32cf/8704423/84bf965541da/ENEURO.0451-21.2021_f001.jpg

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