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Temporal Processing by Caenorhabditis elegans Sensory Neurons

机译:秀丽隐杆线虫感觉神经元的时间加工。

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摘要

Caenorhabditis elegans is a promising organism for trying to understand how nervous systems generate real-time behavior. Its low neuron count suggests that we may be able to observe all of the constituents of the computation of sophisticated sensorimotor behavior. However, its appropriateness as a system for quantitative dynamical study has yet to be established. We show that C. elegans chemosensory neurons can operate in a highly deterministic and low-noise mode, and they act as reliable linear filters of their input. We then use dynamical systems analysis in combination with classical genetic perturbation to uncover cellular and circuit mechanisms of temporal processing. This work should firmly establish C. elegans as a viable platform for applying quantitative dynamical systems methods to understanding how a nervous system processes sensory information, integrates it with an evolving internal state, and produces goal-directed, coordinated behavior.
机译:秀丽隐杆线虫是一种有前途的有机体,用于试图了解神经系统如何产生实时行为。它的神经元数量少表明我们也许能够观察到复杂的感觉运动行为计算的所有组成部分。但是,它是否适合作为定量动力学研究系统尚未建立。我们显示线虫化学感应神经元可以在高度确定性和低噪声的模式下运行,并且充当其输入的可靠线性滤波器。然后,我们将动力学系统分析与经典遗传扰动结合使用,以揭示时间处理的细胞和电路机制。这项工作应牢固地将秀丽隐杆线虫确立为一个可行的平台,以应用定量动力学系统方法来理解神经系统如何处理感官信息,将其与不断发展的内部状态整合在一起并产生目标导向的协调行为。

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  • 作者

    Kato Saul Sen;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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