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耳部活动反卷积(DEA):一种用于研究中枢听觉处理的新实验范式。

Deconvolution of Ears' Activity (DEA): A New Experimental Paradigm to Investigate Central Auditory Processing.

作者信息

Bardy Fabrice

机构信息

HEARing Co-operative Research Center, Carlton, VIC, Australia.

Department of Linguistics, Macquarie University, Sydney, NSW, Australia.

出版信息

Front Syst Neurosci. 2022 Jul 14;16:892198. doi: 10.3389/fnsys.2022.892198. eCollection 2022.

Abstract

A novel experimental paradigm, "deconvolution of ears' activity" (DEA), is presented which allows to disentangle overlapping neural activity from both auditory cortices when two auditory stimuli are presented closely together in time in each ear. Pairs of multi-tone complexes were presented either binaurally, or sequentially by alternating presentation order in each ear (i.e., first tone complex of the pair presented to one ear and second tone complex to the other ear), using stimulus onset asynchronies (SOAs) shorter than the neural response length. This timing strategy creates overlapping responses, which can be mathematically separated using least-squares deconvolution. The DEA paradigm allowed the evaluation of the neural representation in the auditory cortex of responses to stimuli presented at syllabic rates (i.e., SOAs between 120 and 260 ms). Analysis of the neuromagnetic responses in each cortex offered a sensitive technique to study hemispheric lateralization, ear representation (right vs. left), pathway advantage (contra- vs. ipsi-lateral) and cortical binaural interaction. To provide a proof-of-concept of the DEA paradigm, data was recorded from three normal-hearing adults. Results showed good test-retest reliability, and indicated that the difference score between hemispheres can potentially be used to assess central auditory processing. This suggests that the method could be a potentially valuable tool for generating an objective "auditory profile" by assessing individual fine-grained auditory processing using a non-invasive recording method.

摘要

本文提出了一种新的实验范式——“耳朵活动去卷积”(DEA),当在每只耳朵中两个听觉刺激在时间上紧密相邻呈现时,该范式能够从两个听觉皮层中分离出重叠的神经活动。使用比神经反应长度短的刺激起始异步(SOA),双耳呈现多音复合音对,或者在每只耳朵中通过交替呈现顺序依次呈现(即,将音对中的第一个复合音呈现给一只耳朵,第二个复合音呈现给另一只耳朵)。这种时间策略会产生重叠反应,可使用最小二乘去卷积在数学上进行分离。DEA范式允许评估听觉皮层中对以音节速率呈现的刺激(即SOA在120至260毫秒之间)的反应的神经表征。对每个皮层中的神经磁反应进行分析,提供了一种研究半球侧化、耳朵表征(右耳与左耳)、通路优势(对侧与同侧)以及皮层双耳相互作用的灵敏技术。为了验证DEA范式的概念,记录了三名听力正常成年人的数据。结果显示了良好的重测信度,并表明半球之间的差异分数可能可用于评估中枢听觉处理。这表明该方法可能是一种潜在有价值的工具,通过使用非侵入性记录方法评估个体的精细听觉处理来生成客观的“听觉图谱”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/294a/9331736/7a7fb74df8bd/fnsys-16-892198-g0001.jpg

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