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穿越光杂波:索诺兰沙漠蚁 Novomessor cockerelli 的路径整合和全景引导导航。

Traveling through light clutter: Path integration and panorama guided navigation in the Sonoran Desert ant, Novomessor cockerelli.

机构信息

Department of Psychology, University of Alberta, Alberta, Canada.

Department of Biology, Mesa Community College, Mesa, AZ, United States.

出版信息

Behav Processes. 2021 May;186:104373. doi: 10.1016/j.beproc.2021.104373. Epub 2021 Mar 5.

Abstract

Foraging ants use multiple navigational strategies, including path integration and visual panorama cues, which are used simultaneously and weighted based upon context, the environment and the species' sensory ecology. In particular, the amount of visual clutter in the habitat predicts the weighting given to the forager's path integrator and surrounding panorama cues. Here, we characterize the individual cue use and cue weighting of the Sonoran Desert ant, Novomessor cockerelli, by testing foragers after local and distant displacement. Foragers attend to both a path-integration-based vector and the surrounding panorama to navigate, on and off foraging routes. When both cues were present, foragers initially oriented to their path integrator alone, yet weighting was dynamic, with foragers abandoning the vector and switching to panorama-based navigation after a few meters. If displaced to unfamiliar locations, experienced foragers travelled almost their full homeward vector (∼85 %) before the onset of search. Through panorama analysis, we show views acquired on-route provide sufficient information for orientation over only short distances, with rapid parallel decreases in panorama similarity and navigational performance after even small local displacements. These findings are consistent with heavy path integrator weighting over the panorama when the local habitat contains few prominent terrestrial cues.

摘要

觅食蚂蚁使用多种导航策略,包括路径整合和视觉全景线索,这些策略同时使用,并根据上下文、环境和物种的感觉生态学进行加权。特别是,栖息地中的视觉杂乱程度预测了觅食者的路径积分器和周围全景线索的权重。在这里,我们通过测试局部和远距离位移后的觅食者来描述索诺兰沙漠蚂蚁 Novomessor cockerelli 的个体线索使用和线索权重。觅食者在觅食路线上和路线外,通过基于路径整合的向量和周围全景来导航。当两个线索都存在时,觅食者最初只关注自己的路径积分器,但权重是动态的,觅食者在几米后放弃向量并切换到基于全景的导航。如果被转移到不熟悉的地方,有经验的觅食者在开始搜索之前,几乎会沿着他们的全部回家向量(约 85%)行进。通过全景分析,我们表明在路线上获取的视图仅在短距离内提供足够的定向信息,即使在小的局部位移后,全景相似性和导航性能也会迅速平行下降。这些发现与当地栖息地包含很少突出的地面线索时,对全景进行大量路径积分器加权是一致的。

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