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Neuroendocrine control of seasonal plasticity in the auditory and vocal systems of fish

机译:神经内分泌控制鱼类听觉和声音系统的季节性可塑性

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摘要

Seasonal changes in reproductive-related vocal behavior are widespread among fishes. This review highlights recent studies of the vocal plainfin midshipman fish, Porichthys notatus, a neuroethological model system used for the past two decades to explore neural and endocrine mechanisms of vocal-acoustic social behaviors shared with tetrapods. Integrative approaches combining behavior, neurophysiology, neuropharmacology, neuroanatomy, and gene expression methodologies have taken advantage of simple, stereotyped and easily quantifiable behaviors controlled by discrete neural networks in this model system to enable discoveries such as the first demonstration of adaptive seasonal plasticity in the auditory periphery of a vertebrate as well as rapid steroid and neuropeptide effects on vocal physiology and behavior. This simple model system has now revealed cellular and molecular mechanisms underlying seasonal and steroid-driven auditory and vocal plasticity in the vertebrate brain.
机译:与生殖有关的声音行为的季节性变化在鱼类中普遍存在。这篇综述重点介绍了对声带中鳍鱼Porichthys notatus的最新研究,该神经声学模型系统在过去的二十年中一直用于探索与四足动物共享的声声社会行为的神经和内分泌机制。行为,神经生理学,神经药理学,神经解剖学和基因表达方法相结合的综合方法已经利用了该模型系统中离散神经网络控制的简单,定型和易于量化的行为,从而实现了诸如首次在听觉中展示适应性季节可塑性的发现脊椎动物的外周以及类固醇和神经肽对声音生理和行为的快速影响。现在,这个简单的模型系统揭示了脊椎动物脑中季节性和类固醇驱动的听觉和声音可塑性的潜在细胞和分子机制。

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