Borgmann Anke, Scharstein Hans, Büschges Ansgar
Department of Animal Physiology, Zoological Institute, University of Cologne, Weyertal 119, 50923 Cologne, Germany.
J Neurophysiol. 2007 Sep;98(3):1685-96. doi: 10.1152/jn.00291.2007. Epub 2007 Jun 27.
A key element of walking is the coordinated interplay of multiple limbs to achieve a stable locomotor pattern that is adapted to the environment. We investigated intersegmental coordination of walking in the stick insect, Carausius morosus by examining the influence a single stepping leg has on the motoneural activity of the other hemiganglia, and whether this influence changes with the walking direction. We used a reduced single leg walking preparation with only one intact front, middle, or hind leg. The intact leg performed stepping movements on a treadmill, thus providing intersegmental signals about its stepping to the other hemiganglia. The activity of coxal motoneurons was simultaneously recorded extracellularly in all other segments. Stepping sequences of any given single leg in either walking direction were accompanied by an increase in coxal motoneuron (MN) activity of all other segments, which was mostly modulated and slightly in phase with stance of the walking leg. In addition, forward stepping of the front leg and, to a lesser extent, backward stepping of the hind leg elicited alternating activity in mesothoracic coxal MNs. Forward and backward stepping of the middle leg did not elicit alternating activity in coxal MNs in any other hemiganglia, indicating that the influence of middle leg stepping is qualitatively different from that of forward front and backward hind leg stepping. Our results indicate that in an insect walking system individual segments differ with respect to their intersegmental influences and thus cannot be treated as similar within the chain of segmental walking pattern generators. Consequences for the current concepts on intersegmental coordination are discussed.
行走的一个关键要素是多个肢体之间的协同相互作用,以实现适应环境的稳定运动模式。我们通过研究单条步足对其他半神经节运动神经元活动的影响,以及这种影响是否随行走方向而变化,来探究竹节虫(Carausius morosus)行走时的节间协调。我们采用了一种简化的单腿行走准备方式,只保留一条完整的前腿、中腿或后腿。这条完整的腿在跑步机上进行迈步运动,从而向其他半神经节提供有关其迈步的节间信号。同时在所有其他节段细胞外记录基节运动神经元的活动。在任何一个行走方向上,任何给定单条腿的迈步序列都会伴随着所有其他节段基节运动神经元(MN)活动的增加,这种增加大多受到调制,并且与行走腿的 stance 略有相位关系。此外,前腿向前迈步以及后腿向后迈步(程度较轻)会引发中胸基节 MNs 的交替活动。中腿向前和向后迈步在任何其他半神经节的基节 MNs 中均未引发交替活动,这表明中腿迈步的影响在性质上与前腿向前和后腿向后迈步的影响不同。我们的结果表明,在昆虫行走系统中,各个节段在节间影响方面存在差异,因此在节段性行走模式发生器链中不能将它们视为相似。文中还讨论了这些结果对当前节间协调概念的影响。