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Orbitofrontal Cortex Neurons Respond to Sound and Activate Primary Auditory Cortex Neurons

机译:眶额皮质神经元响应声音并激活初级听觉皮质神经元

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摘要

Sensory environments change over a wide dynamic range and sensory processing can change rapidly to facilitate stable perception. While rapid changes may occur throughout the sensory processing pathway, cortical changes are believed to profoundly influence perception. Prior stimulation studies showed that orbitofrontal cortex (OFC) can modify receptive fields and sensory coding in A1, but the engagement of OFC during listening and the pathways mediating OFC influences on A1 are unknown. We show in mice that OFC neurons respond to sounds consistent with a role of OFC in audition. We then show in vitro that OFC axons are present in A1 and excite pyramidal and GABAergic cells in all layers of A1 via glutamatergic synapses. Optogenetic stimulation of OFC terminals in A1 in vivo evokes short-latency neural activity in A1 and pairing activation of OFC projections in A1 with sounds alters sound-evoked A1 responses. Together, our results identify a direct connection from OFC to A1 that can excite A1 neurons at the earliest stage of cortical processing, and thereby sculpt A1 receptive fields. These results are consistent with a role for OFC in adjusting to changing behavioral relevance of sensory inputs and modulating A1 receptive fields to enhance sound processing.
机译:感觉环境在很大的动态范围内变化,并且感觉处理可以迅速变化以促进稳定的感知。尽管在整个感觉处理途径中可能发生快速变化,但据信皮质变化会深刻影响感知。先前的刺激研究表明,眶额叶皮质(OFC)可以改变A1的感受野和感觉编码,但是在聆听过程中OFC的参与以及介导OFC影响A1的途径尚不清楚。我们在小鼠中显示,OFC神经元对声音的响应与OFC在试听中的作用一致。然后,我们在体外显示OFC轴突存在于A1中,并通过谷氨酸能突触激发A1所有层中的锥体细胞和GABA能细胞。体内A1中OFC末端的光遗传刺激引起A1中的短时延神经活动,并且A1中OFC投影与声音的配对激活改变了声诱发的A1反应。在一起,我们的结果确定了从OFC到A1的直接联系,可以在皮层处理的最早阶段激发A1神经元,从而雕刻A1感受野。这些结果与OFC在适应改变感官输入的行为相关性以及调节A1感受野以增强声音处理方面的作用一致。

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