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Clues to basis of exploratory behaviour of the C. elegans snout from head somatotropy

机译:线索从线粒体生长的线虫鼻子探究行为的基础

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摘要

Wave propagation during locomotory movements of Caenorhabditis elegans is constrained to a single dorso/ventral plane. By contrast, the tip of the head (snout) can make rapid exploratory movements in all directions relative to the body axis. These extra degrees of freedom are probably important for animals to seek and identify desirable passages in the interstices of the three-dimensional matrix of soil particles, their usual habitat. The differences in degrees of freedom of movement between snout and body are reflected in the innervation of the musculature. Along the length of the body, the two quadrants of dorsal muscle receive common innervation as do the two quadrants of ventral muscle. By contrast, muscles in the snout have an octagonal arrangement of innervation. It is likely that the exploratory behaviour of the snout is mediated by octant-specific motor and sensory neurons, together with their associated interneurons. The well-defined anatomical structure and neural circuitry of the snout together with behavioural observations should facilitate the implementation of models of the neural basis of exploratory movements, which could lead to an understanding of the basis of this relatively complex behaviour, a behaviour that has similarities to foraging in some vertebrates.This article is part of a discussion meeting issue ‘Connectome to behaviour: modelling C. elegans at cellular resolution’.
机译:秀丽隐杆线虫运动过程中的波传播被限制在单个背/腹平面中。相比之下,头部的尖端(鼻子)可以在相对于身体轴线的所有方向上进行快速探索运动。这些额外的自由度对于动物寻找和识别它们通常的栖息地的三维土壤颗粒矩阵的空隙中的理想通道可能很重要。口鼻和身体之间运动自由度的差异反映在肌肉组织的神经支配上。沿着身体的长度,背肌的两个象限与腹肌的两个象限一样受到共同的神经支配。相反,口鼻部的肌肉具有八边形的神经支配。口鼻部的探索行为很可能是由八进制特异的运动神经元和感觉神经元及其相关的中间神经元介导的。口鼻部的明确的解剖结构和神经回路以及行为观察应有助于探索性运动的神经基础模型的实现,这可能会导致人们理解这种相对复杂的行为的基础,这种行为具有相似性本文是“ Connectome to behaviour:以细胞分辨率模拟秀丽隐杆线虫”的讨论会议的一部分。

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