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首页> 外文期刊>Neuron >Inhibitory and excitatory mechanisms underlying auditory responses to learned vocalizations in the songbird nucleus HVC.
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Inhibitory and excitatory mechanisms underlying auditory responses to learned vocalizations in the songbird nucleus HVC.

机译:听觉反应对鸣禽核HVC中发声的抑制和兴奋机制。

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摘要

Speech and birdsong require auditory feedback for their development and maintenance, necessitating precise auditory encoding of vocal sounds. In songbirds, the telencephalic song premotor nucleus HVC contains neurons that respond highly selectively to the bird's own song (BOS), a property distinguishing HVC from its auditory afferents. We examined the contribution of inhibitory and excitatory synaptic inputs to BOS-evoked firing in those HVC neurons innervating a pathway essential for audition-dependent vocal plasticity. Using in vivo intracellular techniques, we found that G protein-coupled, potassium-mediated inhibition, tuned to the BOS, interacts with BOS-tuned excitation through several mechanisms to shape neuronal firing patterns. Furthermore, in the absence of this inhibition, the response bias to the BOS increases, reminiscent of cancellation mechanisms in other sensorimotor systems.
机译:语音和鸟鸣声需要其发展和维持的听觉反馈,因此需要对声音进行精确的听觉编码。在鸣禽中,端脑歌曲前运动核HVC包含对鸟的自身歌曲(BOS)高度选择性反应的神经元,这是区分HVC与听觉传入的特性。我们研究了抑制和兴奋性突触输入对那些HVC神经元的BOS诱发的放电的影响,这些神经支配了依赖于听觉依赖性的声音可塑性的必经途径。使用体内细胞内技术,我们发现调节至BOS的G蛋白偶联,钾介导的抑制作用通过多种机制与BOS调节的兴奋作用相互作用,从而形成神经元放电模式。此外,在没有这种抑制的情况下,对BOS的反应偏倚增加,让人联想到其他感觉运动系统中的抵消机制。

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