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首页> 外文期刊>Journal of Biomechanics >The control structure of the nematode Caenorhabditis elegans: Neuro-sensory integration and proprioceptive feedback
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The control structure of the nematode Caenorhabditis elegans: Neuro-sensory integration and proprioceptive feedback

机译:Nematode Caenorhabditis elegans的控制结构:神经感觉集成和壁虎搜索反馈

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摘要

We develop a biophysically realistic model of the nematode C. elegans that includes: (i) its muscle structure and activation, (ii) key connectomic activation circuitry, and (iii) a weighted and time-dynamic proprioception. In combination, we show that these model components can reproduce the complex waveforms exhibited in C elegans locomotive behaviors, chiefly omega turns. This is achieved via weighted, time-dependent suppression of the proprioceptive signal. Though speculative, such dynamics are biologically plausible due to the presence of neuromodulators which have recently been experimentally implicated in the escape response, which includes an omega turn. This is the first integrated neuromechanical model to reveal a mechanism capable of generating the complex waveforms observed in the behavior of C elegans, thus contributing to a mathematical framework for understanding how control decisions can be executed at the connectome level in order to produce the full repertoire of observed behaviors. (C) 2018 Elsevier Ltd. All rights reserved.
机译:我们开发了Nematode C.秀丽隐杆线的生物物理学型号,包括:(i)其肌肉结构和激活,(ii)键串联激活电路,(iii)加权和时间动态预防型。组合,我们表明,这些模型组件可以重现Celelcans机车行为中展出的复杂波形,主要是欧米茄转弯。这是通过加权,时间依赖性抑制的预脉冲信号来实现的。虽然投机性,由于最近在逃避响应中实验上的神经调节剂存在,这种动态是生物学似是可以是生物可言论的,其包括ω转弯。这是第一集成的神经力学模型,以揭示能够在CEVERANS的行为中观察到观察到的复杂波形的机制,从而有助于了解控制决策如何在连接级别执行的数学框架,以便产生完整的reptoIre观察到的行为。 (c)2018年elestvier有限公司保留所有权利。

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