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Dissociable influences of primary auditory cortex and the posterior auditory field on neuronal responses in the dorsal zone of auditory cortex

机译:原发听觉皮层和后听觉场对听觉皮层背区神经元反应的可分离的影响

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Current models of hierarchical processing in auditory cortex have been based principally on anatomical connectivity while functional interactions between individual regions have remained largely unexplored. Previous cortical deactivation studies in the cat have addressed functional reciprocal connectivity between primary auditory cortex (A1) and other hierarchically lower level fields. The present study sought to assess the functional contribution of inputs along multiple stages of the current hierarchical model to a higher order area, the dorsal zone (DZ) of auditory cortex, in the anaesthetized cat. Cryoloops were placed over A1 and posterior auditory field (PAF). Multiunit neuronal responses to noise burst and tonal stimuli were recorded in DZ during cortical deactivation of each field individually and in concert. Deactivation of A1 suppressed peak neuronal responses in DZ regardless of stimulus and resulted in increased minimum thresholds and reduced absolute bandwidths for tone frequency receptive fields in DZ. PAF deactivation had less robust effects on DZ firing rates and receptive fields compared with A1 deactivation, and combined A1/PAF cooling was largely driven by the effects of A1 deactivation at the population level. These results provide physiological support for the current anatomically based model of both serial and parallel processing schemes in auditory cortical hierarchical organization.
机译:目前,听觉皮层中的分层处理模型主要基于解剖学连通性,而各个区域之间的功能性相互作用仍未得到充分研究。在猫中进行的先前的皮质失活研究已经解决了主要听觉皮层(A1)与其他层次较低的场之间的功能相互联系。本研究试图评估在当前模型的多个阶段中,输入对麻醉猫中较高阶区域(听觉皮层的背区(DZ))的功能贡献。将冷冻环放置在A1和后耳道(PAF)上方。在DZ中,每个区域的皮层失活分别并一致地记录了对噪声爆发和音调刺激的多单位神经元反应。不管刺激如何,A1的失活都会抑制DZ中的峰值神经元反应,并导致DZ中音频接收场的最小阈值增加和绝对带宽减小。与A1失活相比,PAF失活对DZ发射速率和感受野的影响较小,而A1 / PAF组合冷却很大程度上受A1失活在种群水平的影响。这些结果为听觉皮质分级组织中的串行和并行处理方案的当前基于解剖模型的模型提供生理支持。

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