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Autonomous circuitry for substrate exploration in freely moving Drosophila larvae

机译:自由移动果蝇幼虫底物探索的自主电路

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摘要

Many organisms, from bacteria to human hunter-gatherers, use specialized random walk strategies to explore their environment. Such behaviors are an efficient stratagem for sampling the environment and usually consist of an alternation between straight runs and turns that redirect these runs. Drosophila larvae execute an exploratory routine of this kind that consists of sequences of straight crawls, pauses, turns, and redirected crawls. Central pattern generating networks underlying rhythmic movements are distributed along the anteroposterior axis of the nervous system. The way in which the operation of these networks is incorporated into extended behavioral routines such as substrate exploration has not yet been explored. In particular, the part played by the brain in dictating the sequence of movements required is unknown.
机译:从细菌到人类狩猎者,许多生物都使用专门的随机行走策略来探索其环境。这种行为是对环境进行采样的有效策略,通常包括在直线行驶和转弯之间进行交替,以重定向这些行驶。果蝇幼虫执行这种探索性例程,该例程由直线爬网,暂停,转弯和重定向爬网的序列组成。有节奏的运动的中央模式生成网络沿着神经系统的前后轴分布。尚未探索将这些网络的操作纳入扩展的行为例程(如底物探索)的方式。尤其是,大脑在决定所需运动顺序方面所起的作用是未知的。

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