Lateralization-specific adaptation in auditory cortical evoked potentials: Comparison with frequency-specificity

IF 2.4 4区 医学 Q3 NEUROSCIENCES European Journal of Neuroscience Pub Date : 2024-12-16 DOI:10.1111/ejn.16644
Barkın İlhan, Saliha Kurt, Yavuz Bolay, Pekcan Ungan
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Abstract

‘Opponent channels model’ (OCM) is the widely accepted model for cortical representation of sound lateralization. Stimulus-specific ‘release from adaptation’ (RFA) in cortical responses has been used in previous studies to test the predictions of this model. However, these attempts were shown to be prone to confounds of spurious responses such as those to auditory motion and sound onset. The present study aims to determine whether a multiple-adaptor RFA algorithm could be employed for relatively confound-free quantification of the population response of lateralization-specific auditory cortical neurons, and provide useful data for estimation of the OCM hemifield tuning curves. Two experiments were conducted on 12 volunteers with normal hearing. In Exp.1, quadruple tone pips of either low or high frequency were presented as adaptor, followed by a single tone pip of either frequency as probe. In Exp.2, tone pips were replaced with dichotic click train pips with left-leading and right-leading interaural time difference (ITD). Frequency- and ITD-specific RFA in cortical responses N1 and P2 was quantified using global field magnitude difference between ERPs to mismatched and matched adaptor-probe pairs.

RFA level measured was lower for ITD mismatch than frequency mismatch. Nonetheless, it allowed measurement of ITD-specific cortical neurons' population response, without any spurious response confound. We proposed a method for extraction of ITD-specific response magnitude from the N1 response to a lateralized sound. Using it, one can reliably measure the activity of lateralization-specific cortical neurons, i.e. elicited by moderate ITD changes. This allows estimation of hemifield tuning curves in OCM using ERP data.

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听觉皮层诱发电位的偏侧特异性适应:与频率特异性的比较。
“对手通道模型”(OCM)是被广泛接受的声音侧化皮层表征模型。刺激特异性“适应释放”(RFA)在皮层反应中已被用于先前的研究,以测试该模型的预测。然而,这些尝试被证明容易混淆虚假的反应,如听觉运动和声音发作。本研究旨在确定多适配器RFA算法是否可以用于相对无混杂的量化偏侧化特异性听觉皮层神经元的群体反应,并为OCM半场调谐曲线的估计提供有用的数据。在12名听力正常的志愿者身上进行了两项实验。在Exp.1中,将低频或高频的四音点作为适配器,然后将任一频率的单音点作为探头。在Exp.2中,音调点被替换为左导和右导的二元滴答序列点。使用不匹配和匹配的适配器-探针对之间的ERPs的全局场量级差来量化皮层反应N1和P2的频率和itd特异性RFA。相对于频率失配,过渡段失配的RFA水平较低。尽管如此,它允许测量itd特异性皮层神经元的群体反应,没有任何虚假的反应混淆。我们提出了一种从侧向声音的N1响应中提取过渡段特定响应幅度的方法。使用它,人们可以可靠地测量侧化特异性皮质神经元的活动,即由中度ITD变化引起的活动。这允许使用ERP数据估计OCM中的半场调谐曲线。
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来源期刊
European Journal of Neuroscience
European Journal of Neuroscience 医学-神经科学
CiteScore
7.10
自引率
5.90%
发文量
305
审稿时长
3.5 months
期刊介绍: EJN is the journal of FENS and supports the international neuroscientific community by publishing original high quality research articles and reviews in all fields of neuroscience. In addition, to engage with issues that are of interest to the science community, we also publish Editorials, Meetings Reports and Neuro-Opinions on topics that are of current interest in the fields of neuroscience research and training in science. We have recently established a series of ‘Profiles of Women in Neuroscience’. Our goal is to provide a vehicle for publications that further the understanding of the structure and function of the nervous system in both health and disease and to provide a vehicle to engage the neuroscience community. As the official journal of FENS, profits from the journal are re-invested in the neuroscientific community through the activities of FENS.
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