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FUNCTIONAL ANALYSIS OF SWIM-BLADDER MUSCLES ENGAGED IN SOUND PRODUCTION OF THE TOADFISH.蟾鱼发声相关鳔肌的功能分析
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Steroid hormones in bluegill, a species with male alternative reproductive tactics including female mimicry.蓝鳃太阳鱼中的类固醇激素,蓝鳃太阳鱼是一种具有包括雌性拟态在内的雄性替代繁殖策略的物种。
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Steroid-dependent plasticity of vocal motor systems: novel insights from teleost fish.类固醇依赖的发声运动系统可塑性:硬骨鱼的新见解。
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Seasonal changes in intrinsic electrophysiological activity of song control neurons in wild song sparrows.野生歌带鹀中鸣叫控制神经元内在电生理活动的季节性变化。
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Xenopus vocalizations are controlled by a sexually differentiated hindbrain central pattern generator.非洲爪蟾的发声由一个具有性别差异的后脑中枢模式发生器控制。
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Plasticity in brain sexuality is revealed by the rapid actions of steroid hormones.类固醇激素的快速作用揭示了大脑性别的可塑性。
J Neurosci. 2007 Jan 31;27(5):1114-22. doi: 10.1523/JNEUROSCI.4282-06.2007.
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Breathing and calling: neuronal networks in the Xenopus laevis hindbrain.呼吸与发声:非洲爪蟾后脑的神经网络
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10
Innervation of sonic muscles in teleosts: occipital vs. spinal nerves.硬骨鱼科发声肌肉的神经支配:枕神经与脊神经。
Brain Behav Evol. 2007;69(2):132-41. doi: 10.1159/000095202. Epub 2007 Jan 24.

社会发声的中枢模式发生器:雄激素依赖的神经生理机制。

Central pattern generators for social vocalization: androgen-dependent neurophysiological mechanisms.

作者信息

Bass Andrew H, Remage-Healey Luke

机构信息

Department of Neurobiology and Behavior, Cornell University, Ithaca, NY 14853, USA.

出版信息

Horm Behav. 2008 May;53(5):659-72. doi: 10.1016/j.yhbeh.2007.12.010. Epub 2008 Jan 5.

DOI:10.1016/j.yhbeh.2007.12.010
PMID:18262186
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2570494/
Abstract

Historically, most studies of vertebrate central pattern generators (CPGs) have focused on mechanisms for locomotion and respiration. Here, we highlight new results for ectothermic vertebrates, namely teleost fish and amphibians, showing how androgenic steroids can influence the temporal patterning of CPGs for social vocalization. Investigations of vocalizing teleosts show how androgens can rapidly (within minutes) modulate the neurophysiological output of the vocal CPG (fictive vocalizations that mimic the temporal properties of natural vocalizations) inclusive of their divergent actions between species, as well as intraspecific differences between male reproductive morphs. Studies of anuran amphibians (frogs) demonstrate that long-term steroid treatments (wks) can masculinize the fictive vocalizations of females, inclusive of its sensitivity to rapid modulation by serotonin. Given the conserved organization of vocal control systems across vertebrate groups, the vocal CPGs of fish and amphibians provide tractable models for identifying androgen-dependent events that are fundamental to the mechanisms of vocal motor patterning. These basic mechanisms can also inform our understanding of the more complex CPGs for vocalization, and social behaviors in general, that have evolved among birds and mammals.

摘要

从历史上看,大多数关于脊椎动物中枢模式发生器(CPG)的研究都集中在运动和呼吸机制上。在这里,我们重点介绍变温脊椎动物,即硬骨鱼和两栖动物的新研究结果,展示雄激素类固醇如何影响用于社交发声的CPG的时间模式。对发声硬骨鱼的研究表明,雄激素如何能够迅速(在数分钟内)调节发声CPG的神经生理输出(模拟自然发声时间特性的虚构发声),包括它们在物种间的不同作用,以及雄性繁殖形态之间的种内差异。对无尾两栖动物(青蛙)的研究表明,长期类固醇处理(数周)可以使雌性的虚构发声雄性化,包括其对血清素快速调节的敏感性。鉴于脊椎动物群体中发声控制系统的保守组织,鱼类和两栖动物的发声CPG为识别对发声运动模式机制至关重要的雄激素依赖性事件提供了易于处理的模型。这些基本机制也可以为我们理解鸟类和哺乳动物中进化出的更复杂的发声CPG以及一般社交行为提供信息。