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Compensating Level-Dependent Frequency Representation in Auditory Cortex by Synaptic Integration of Corticocortical Input

机译:通过皮层皮质输入的突触整合来补偿听觉皮层中与水平相关的频率表示

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摘要

Robust perception of auditory objects over a large range of sound intensities is a fundamental feature of the auditory system. However, firing characteristics of single neurons across the entire auditory system, like the frequency tuning, can change significantly with stimulus intensity. Physiological correlates of level-constancy of auditory representations hence should be manifested on the level of larger neuronal assemblies or population patterns. In this study we have investigated how information of frequency and sound level is integrated on the circuit-level in the primary auditory cortex (AI) of the Mongolian gerbil. We used a combination of pharmacological silencing of corticocortically relayed activity and laminar current source density (CSD) analysis. Our data demonstrate that with increasing stimulus intensities progressively lower frequencies lead to the maximal impulse response within cortical input layers at a given cortical site inherited from thalamocortical synaptic inputs. We further identified a temporally precise intercolumnar synaptic convergence of early thalamocortical and horizontal corticocortical inputs. Later tone-evoked activity in upper layers showed a preservation of broad tonotopic tuning across sound levels without shifts towards lower frequencies. Synaptic integration within corticocortical circuits may hence contribute to a level-robust representation of auditory information on a neuronal population level in the auditory cortex.
机译:在很大的声音强度范围内对听觉对象的鲁棒感知是听觉系统的基本特征。但是,整个听觉系统中单个神经元的放电特性(如频率调谐)会随着刺激强度而发生显着变化。因此,听觉表现水平恒定的生理相关性应表现在较大的神经元集合或群体模式的水平上。在这项研究中,我们调查了频率和声音水平的信息如何在蒙古沙鼠的主听皮层(AI)的电路级上进行整合。我们结合使用了药理学沉默的皮质皮层传递活动和层流电流源密度(CSD)分析。我们的数据表明,随着刺激强度的增加,频率逐渐降低,导致从丘脑皮质突触输入继承的给定皮质部位,皮质输入层内的最大脉冲响应。我们进一步确定了早期丘脑皮层和水平皮层皮层输入的时间精确列间突触收敛。后来在上层引起的声调活动显示出在整个声级上都保留了广泛的音调调整,而没有向低频移动。因此,皮层皮质回路内的突触整合可能有助于在听觉皮层神经元群体水平上增强听觉信息的水平鲁棒性。

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  • 作者

    Max F. K. Happel; Frank W. Ohl;

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  • 年(卷),期 -1(12),1
  • 年度 -1
  • 页码 e0169461
  • 总页数 19
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