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如何向后找到回家的路?强壮箭蚁在向后行走时的运动及腿间协调。

How to find home backwards? Locomotion and inter-leg coordination during rearward walking of Cataglyphis fortis desert ants.

作者信息

Pfeffer Sarah E, Wahl Verena L, Wittlinger Matthias

机构信息

Institute of Neurobiology, University of Ulm, Ulm D-89069, Germany

Institute of Neurobiology, University of Ulm, Ulm D-89069, Germany.

出版信息

J Exp Biol. 2016 Jul 15;219(Pt 14):2110-8. doi: 10.1242/jeb.137778.

Abstract

For insects, flexibility in the performance of terrestrial locomotion is a vital part of facing the challenges of their often unpredictable environment. Arthropods such as scorpions and crustaceans can switch readily from forward to backward locomotion, but in insects this behaviour seems to be less common and, therefore, is only poorly understood. Here we present an example of spontaneous and persistent backward walking in Cataglyphis desert ants that allows us to investigate rearward locomotion within a natural context. When ants find a food item that is too large to be lifted up and to be carried in a normal forward-faced orientation, they will drag the load walking backwards to their home nest. A detailed examination of this behaviour reveals a surprising flexibility of the locomotor output. Compared with forward walks with regular tripod coordination, no main coordination pattern can be assigned to rearward walks. However, we often observed leg-pair-specific stepping patterns. The front legs frequently step with small stride lengths, while the middle and the hind legs are characterized by less numerous but larger strides. But still, these specializations show no rigidly fixed leg coupling, nor are they strictly embedded within a temporal context; therefore, they do not result in a repetitive coordination pattern. The individual legs act as separate units, most likely to better maintain stability during backward dragging.

摘要

对于昆虫而言,陆地运动表现的灵活性是应对其通常不可预测的环境挑战的重要组成部分。蝎子和甲壳类等节肢动物能够轻松地从向前运动切换到向后运动,但在昆虫中,这种行为似乎不太常见,因此人们对此了解甚少。在此,我们展示了撒哈拉银蚁自发且持续向后行走的一个例子,这使我们能够在自然环境中研究向后运动。当蚂蚁找到一个太大而无法抬起并以正常向前的姿势搬运的食物时,它们会拖着食物向后走回自己的巢穴。对这种行为的详细研究揭示了运动输出令人惊讶的灵活性。与具有规则三脚架协调的向前行走相比,向后行走没有可确定的主要协调模式。然而,我们经常观察到特定腿对的迈步模式。前腿经常以小步幅迈步,而中腿和后腿的特点是步幅较少但较大。但是,这些特殊之处并没有表现出严格固定的腿部耦合,也没有严格地嵌入到时间背景中;因此,它们不会产生重复的协调模式。各个腿作为独立的单元起作用,最有可能是为了在向后拖动时更好地保持稳定性。

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