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鸣禽作为复杂序列行为产生与学习的模型。

The songbird as a model for the generation and learning of complex sequential behaviors.

作者信息

Fee Michale S, Scharff Constance

机构信息

Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139, USA.

出版信息

ILAR J. 2010;51(4):362-77. doi: 10.1093/ilar.51.4.362.

Abstract

Over the past four decades songbirds have become a widely used model organism for neuroscientists studying complex sequential behaviors and sensory-guided motor learning. Like human babies, young songbirds learn many of the sounds they use for communication by imitating adults. This remarkable behavior emerges as a product of genetic predispositions and specific individual experiences. Research on different aspects of this behavior has elucidated key principles that may underlie vertebrate motor learning and motor performance in general, including (1) the mechanisms by which neural circuits generate sequential behaviors, (2) the existence of specialized neuronal circuits for the generation of exploratory variability, (3) the importance of basal ganglia-forebrain circuits for learning sequentially patterned behaviors, including speech and language, and (4) the existence of genetic toolkits that may have been coopted multiple times during evolution to play a role in learned vocal communication, such as the transcription factor FoxP2 and its molecular targets. This review presents new techniques, experiments, and findings in areas where songbirds have made significant contributions toward understanding of some of the most fundamental questions in neuroscience.

摘要

在过去的四十年里,鸣禽已成为神经科学家研究复杂序列行为和感觉引导运动学习时广泛使用的模式生物。像人类婴儿一样,幼鸟鸣禽通过模仿成年鸟来学习许多用于交流的声音。这种非凡的行为是遗传倾向和特定个体经历共同作用的产物。对这种行为不同方面的研究阐明了可能是脊椎动物运动学习和一般运动表现基础的关键原理,包括:(1)神经回路产生序列行为的机制;(2)存在专门用于产生探索性变异性的神经元回路;(3)基底神经节 - 前脑回路对学习包括言语和语言在内的序列模式行为的重要性;(4)存在可能在进化过程中被多次利用以在学习的发声交流中发挥作用的遗传工具包,例如转录因子FoxP2及其分子靶点。本综述介绍了鸣禽在有助于理解神经科学中一些最基本问题的领域中的新技术、实验和发现。

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