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Plasticity in the Drosophila larval visual system

机译:果蝇幼虫视觉系统的可塑性。

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摘要

The remarkable ability of the nervous system to modify its structure and function is mostly experience and activity modulated. The molecular basis of neuronal plasticity has been studied in higher behavioral processes, such as learning and memory formation. However, neuronal plasticity is not restricted to higher brain functions and it may provide a basic feature of adaptation of all neural circuits. The fruit fly Drosophila melanogaster provides a powerful genetic model to gain insight into the molecular basis of nervous system development and function. The nervous system of the larvae is again a magnitude simpler than its adult counter part, allowing the genetic assessment of a number of individual genetically identifiable neurons. We review here recent progress on the genetic basis of neuronal plasticity in developing and functioning neural circuits focusing on the simple visual system of the Drosophila larva.
机译:神经系统改变其结构和功能的非凡能力主要受经验和活动调节。神经元可塑性的分子基础已经在较高的行为过程中进行了研究,例如学习和记忆形成。但是,神经元可塑性并不局限于较高的大脑功能,它可以提供适应所有神经回路的基本特征。果蝇果蝇提供了强大的遗传模型,可深入了解神经系统发育和功能的分子基础。幼虫的神经系统比其成年对手的神经系统更简单,可以对许多个体的遗传识别神经元进行遗传评估。我们在这里回顾最近进展的神经元可塑性的遗传基础上的发展和功能集中在果蝇幼虫的简单视觉系统的神经回路。

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