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蝾螈脊髓运动中枢模式发生器的组织:生物学与建模

Organisation of the spinal central pattern generators for locomotion in the salamander: biology and modelling.

作者信息

Chevallier Stéphanie, Jan Ijspeert Auke, Ryczko Dimitri, Nagy Frédéric, Cabelguen Jean-Marie

机构信息

INSERM U 862, Université Bordeaux 2, Institut François Magendie, 146 rue Léo Saignat, 33077 Bordeaux Cedex, France.

出版信息

Brain Res Rev. 2008 Jan;57(1):147-61. doi: 10.1016/j.brainresrev.2007.07.006. Epub 2007 Jul 27.

Abstract

Among living tetrapods, salamanders are regarded as most closely resembling the first terrestrial vertebrates, and are therefore an interesting group in which the evolutionary changes in the locomotor behaviour from aquatic to terrestrial habitats can be inferred. Salamanders exhibit two locomotor modes: swimming and terrestrial stepping. The swimming is anguilliform and resembles closely that of the lamprey. On the ground, the salamander switches to a stepping gait with axial undulations that is also observed in many reptiles. The salamander is therefore ideally suited for examining the neural mechanisms for the generation of these two locomotor modes, as well as the neural mechanisms of gait transition. In the present paper, we describe the kinematics and patterns of activation of axial and limb muscles during stepping and swimming in adult salamanders. We then review the current neurobiological data about the organisation of the spinal networks underlying swimming and stepping, and the mechanisms of gait transition. Finally we report modelling studies aimed at understanding the organisation and operation of the salamander locomotor circuits. Altogether, the neurobiological and the modelling data support the hypothesis of a phylogenetic conservatism from agnathians to amphibians of the spinal locomotor networks generating axial motor patterns.

摘要

在现存的四足动物中,蝾螈被认为与最早的陆生脊椎动物最为相似,因此是一个有趣的研究对象,通过它可以推断出从水生栖息地到陆生栖息地运动行为的进化变化。蝾螈表现出两种运动模式:游泳和陆地行走。其游泳方式呈鳗形,与七鳃鳗的游泳方式极为相似。在陆地上,蝾螈会切换到一种带有轴向波动的行走步态,这种步态在许多爬行动物中也能观察到。因此,蝾螈非常适合用于研究产生这两种运动模式的神经机制以及步态转换的神经机制。在本文中,我们描述了成年蝾螈在行走和游泳过程中轴向肌肉和肢体肌肉的运动学及激活模式。然后,我们回顾了当前关于游泳和行走背后的脊髓网络组织以及步态转换机制的神经生物学数据。最后,我们报告了旨在理解蝾螈运动回路组织和运作的建模研究。总的来说,神经生物学和建模数据支持了从无颌类到两栖类,产生轴向运动模式的脊髓运动网络具有系统发育保守性的假说。

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