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麻醉大鼠听觉皮层区域中刺激特异性适应的拓扑分布

Topographic Distribution of Stimulus-Specific Adaptation across Auditory Cortical Fields in the Anesthetized Rat.

作者信息

Nieto-Diego Javier, Malmierca Manuel S

机构信息

Auditory Neuroscience Laboratory, Institute of Neuroscience of Castilla y León (INCYL), Salamanca, Spain.

Salamanca Institute for Biomedical Research (IBSAL), Salamanca, Spain.

出版信息

PLoS Biol. 2016 Mar 7;14(3):e1002397. doi: 10.1371/journal.pbio.1002397. eCollection 2016 Mar.

Abstract

Stimulus-specific adaptation (SSA) in single neurons of the auditory cortex was suggested to be a potential neural correlate of the mismatch negativity (MMN), a widely studied component of the auditory event-related potentials (ERP) that is elicited by changes in the auditory environment. However, several aspects on this SSA/MMN relation remain unresolved. SSA occurs in the primary auditory cortex (A1), but detailed studies on SSA beyond A1 are lacking. To study the topographic organization of SSA, we mapped the whole rat auditory cortex with multiunit activity recordings, using an oddball paradigm. We demonstrate that SSA occurs outside A1 and differs between primary and nonprimary cortical fields. In particular, SSA is much stronger and develops faster in the nonprimary than in the primary fields, paralleling the organization of subcortical SSA. Importantly, strong SSA is present in the nonprimary auditory cortex within the latency range of the MMN in the rat and correlates with an MMN-like difference wave in the simultaneously recorded local field potentials (LFP). We present new and strong evidence linking SSA at the cellular level to the MMN, a central tool in cognitive and clinical neuroscience.

摘要

听觉皮层单个神经元中的刺激特异性适应(SSA)被认为是失配负波(MMN)的潜在神经关联物,MMN是听觉事件相关电位(ERP)中一个被广泛研究的成分,由听觉环境的变化引发。然而,关于这种SSA/MMN关系的几个方面仍未得到解决。SSA发生在初级听觉皮层(A1),但对A1以外区域的SSA缺乏详细研究。为了研究SSA的拓扑组织,我们使用奇偶数范式,通过多单元活动记录对整个大鼠听觉皮层进行了映射。我们证明SSA发生在A1之外,并且在初级和非初级皮层区域之间存在差异。特别是,SSA在非初级区域比在初级区域更强且发展更快,这与皮层下SSA的组织情况相似。重要的是,在大鼠MMN的潜伏期范围内,非初级听觉皮层中存在强烈的SSA,并且与同时记录的局部场电位(LFP)中的类似MMN的差异波相关。我们提供了新的有力证据,将细胞水平的SSA与MMN联系起来,MMN是认知和临床神经科学中的核心工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da87/4780834/decae766dc9c/pbio.1002397.g001.jpg

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