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沙漠蚂蚁的里程计:一种能计算步长和行走速度的步幅积分器。

The desert ant odometer: a stride integrator that accounts for stride length and walking speed.

作者信息

Wittlinger Matthias, Wehner Rüdiger, Wolf Harald

机构信息

Institute of Neurobiology, University of Ulm, Albert-Einstein-Allee 11, D-89069 Ulm, Germany.

出版信息

J Exp Biol. 2007 Jan;210(Pt 2):198-207. doi: 10.1242/jeb.02657.

Abstract

Desert ants, Cataglyphis, use path integration as a major means of navigation. Path integration requires measurement of two parameters, namely, direction and distance of travel. Directional information is provided by a celestial compass, whereas distance measurement is accomplished by a stride integrator, or pedometer. Here we examine the recently demonstrated pedometer function in more detail. By manipulating leg lengths in foraging desert ants we could also change their stride lengths. Ants with elongated legs ('stilts') or shortened legs ('stumps') take larger or shorter strides, respectively, and misgauge travel distance. Travel distance is overestimated by experimental animals walking on stilts, and underestimated by animals walking on stumps - strongly indicative of stride integrator function in distance measurement. High-speed video analysis was used to examine the actual changes in stride length, stride frequency and walking speed caused by the manipulations of leg length. Unexpectedly, quantitative characteristics of walking behaviour remained almost unaffected by imposed changes in leg length, demonstrating remarkable robustness of leg coordination and walking performance. These data further allowed normalisation of homing distances displayed by manipulated animals with regard to scaling and speed effects. The predicted changes in homing distance are in quantitative agreement with the experimental data, further supporting the pedometer hypothesis.

摘要

沙漠蚁(箭蚁属)将路径整合作为主要的导航方式。路径整合需要测量两个参数,即行进方向和距离。方向信息由天体罗盘提供,而距离测量则通过步幅积分器或计步器来完成。在此,我们更详细地研究了最近证实的计步器功能。通过操控觅食的沙漠蚁的腿长,我们也能够改变它们的步幅。腿被拉长(“高跷腿”)或缩短(“短腿”)的蚂蚁分别迈出更大或更小的步幅,并误判行进距离。在“高跷腿”上行走的实验动物高估行进距离,而在“短腿”上行走的动物则低估行进距离——这有力地表明了步幅积分器在距离测量中的功能。利用高速视频分析来研究腿长操控所导致的步幅长度、步频和行走速度的实际变化。出乎意料的是,行走行为的定量特征几乎不受腿长人为改变的影响,这表明腿部协调性和行走表现具有显著的稳健性。这些数据还使得能够对被操控动物所显示的归巢距离进行归一化处理,以考虑缩放和速度效应。归巢距离的预测变化与实验数据在数量上一致,进一步支持了计步器假说。

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