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首页> 外文期刊>The Journal of Experimental Biology >Path integration in a three-dimensional maze: ground distance estimation keeps desert ants Cataglyphis fortis on course
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Path integration in a three-dimensional maze: ground distance estimation keeps desert ants Cataglyphis fortis on course

机译:三维迷宫中的路径整合:地面距离估计使沙漠蚂蚁Cataglyphis fortis保持前进

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In this study, we investigate the ability of desert ants to gauge the ground distances of sloped sections in a three-dimensional (3D) outbound path. Ground distance estimation, as opposed to a simple measurement of walking distances, is a necessary prerequisite for precise path integration in undulating terrain. We trained ants to visit a feeder along a path that included an angular turn as well as a 'hill', resulting in an outbound path with a distinct 3D structure. We then observed the ants' return path in a test field on level ground. From the angles of the ants' return path on the test field one can infer which property of the hill segment was fed into the ants path integration module, the actual walking distance or the ground distance. The results show clearly that it is the ground distance that Cataglyphis fortis feeds into its path integrator, and suggest that the ants are able to keep an accurate home vector also in hilly terrain.
机译:在这项研究中,我们调查了沙漠蚂蚁测量三维(3D)出站路径中倾斜部分的地面距离的能力。与简单的步行距离测量相反,地面距离估计是在起伏的地形中进行精确路径整合的必​​要先决条件。我们训练了蚂蚁沿着包括角转弯和“山坡”的路径访问馈线,从而形成具有独特3D结构的出站路径。然后,我们在水平地面上的测试场中观察了蚂蚁的返回路径。从蚂蚁返回路径在测试场上的角度,可以推断出山段的哪个属性被馈送到了蚂蚁路径积分模块中,实际的步行距离或地面距离。结果清楚地表明,正是Cataglyphis fortis馈入其路径积分器的地面距离,并表明蚂蚁也能够在丘陵地形中保持准确的原点矢量。

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