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Seasonal-like growth and regression of the avian song control system: neural and behavioral plasticity in adult male Gambel's white-crowned sparrows.

机译:禽歌控制系统的季节性增长和消退:成年雄性Gambel白冠麻雀的神经和行为可塑性。

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Birdsong is regulated by a series of discrete brain nuclei known as the song control system. In seasonally-breeding male songbirds, seasonal changes in steroid sex hormones regulate the structure and electrophysiology of song control system neurons, resulting in dramatic changes in singing behavior. Male songbirds can be brought into the laboratory, where circulating levels of steroid hormone and photoperiod can be abruptly manipulated, providing controlled conditions under which rapid "seasonal-like" changes in behavior and morphology can be carefully studied. In this mini-review, we discuss the steroidal and cellular mechanisms underlying seasonal-like growth and regression of the song control system in adult male Gambel's white-crowned sparrows (Zonotrichia leucophrys gambelii), and its impact on song behavior. Specifically, we discuss recent advances concerning: (1) the role of androgen and estrogen receptors in inducing seasonal-like growth of the song control system; (2) how photoperiod modulatesthe time course of testosterone-induced growth of the song control system; (3) how bilateral intracerebral infusion of androgen and estrogen receptor antagonists near the song control nucleus HVC prevents seasonal-like increases in song stereotypy but not song rate; and (4) the steroidal and cellular mechanisms that mediate rapid regression of the song control system. Throughout this mini-review we compare data collected from white-crowned sparrows to that from other songbird species. We conclude by outlining avenues of future research.
机译:Birdsong由一系列离散的脑核(称为歌曲控制系统)进行调节。在季节性繁殖的雄性鸣禽中,类固醇性激素的季节性变化调节了歌曲控制系统神经元的结构和电生理,从而导致歌唱行为发生了戏剧性的变化。可以将雄性鸟带入实验室,在那里可以突然控制类固醇激素和光周期的循环水平,提供可以仔细研究行为和形态快速“季节性变化”的受控条件。在本微型审查中,我们讨论了成年雄性Gambel白冠麻雀(Zonotrichia leucophrys gambelii)的歌曲控制系统的季节性增长和消退的类固醇和细胞机制及其对歌曲行为的影响。具体来说,我们讨论有关以下方面的最新进展:(1)雄激素和雌激素受体在诱导歌曲控制系统的季节性增长中的作用; (2)光周期如何调节睾丸激素诱导的歌曲控制系统生长的时间过程; (3)如何在歌曲控制核HVC附近双侧脑内输注雄激素和雌激素受体拮抗剂,以防止歌曲刻板感的季节性增加,但不能防止歌曲频率增加; (4)介导歌曲控制系统快速消退的甾体和细胞机制。在本次迷你回顾中,我们将白冠麻雀与其他鸣禽物种收集的数据进行了比较。最后,我们概述了未来研究的途径。

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