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Acquisition and expression of memories of distance and direction in navigating wood ants

机译:木蚁航行中距离和方向记忆的获取和表达

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摘要

Wood ants, like other central place foragers, rely on route memories to guide them to and from a reliable food source. They use visual memories of the surrounding scene and probably compass information to control their direction. Do they also remember the length of their route and do they link memories of direction and distance? To answer these questions, we trained wood ant (Formica rufa) foragers in a channel to perform either a single short foraging route or two foraging routes in opposite directions. By shifting the starting position of the route within the channel, but keeping the direction and distance fixed, we tried to ensure that the ants would rely upon vector memories rather than visual memories to decide when to stop. The homeward memories that the ants formed were revealed by placing fed or unfed ants directly into a channel and assessing the direction and distance that they walked without prior performance of the food-ward leg of the journey. This procedure prevented the distance and direction walked being affected by a home vector derived from path integration. Ants that were unfed walked in the feeder direction. Fed ants walked in the opposite direction for a distance related to the separation between start and feeder. Vector memories of a return route can thus be primed by the ants' feeding state and expressed even when the ants have not performed the food-ward route. Tests on ants that have acquired two routes indicate that memories of the direction and distance of the return routes are linked, suggesting that they may be encoded by a common neural population within the ant brain.
机译:像其他中心觅食者一样,木蚂蚁依靠路线记忆来引导它们往返可靠的食物来源。他们使用周围场景的视觉记忆以及指南针信息来控制方向。他们还记得路线的长度吗,并且将方向和距离的记忆联系起来吗?为了回答这些问题,我们在一个通道中训练了木蚂蚁(Formica rufa)觅食者,以执行一条短的觅食路线或两条相反方向的觅食路线。通过移动通道在通道内的起始位置,但保持方向和距离固定,我们试图确保蚂蚁将依靠矢量内存而不是视觉内存来决定何时停止。通过将喂食或未喂食的蚂蚁直接放置在通道中并评估它们行走的方向和距离,而无需事先进行食物的行进路线,就可以揭示蚂蚁形成的往家往事。该过程防止了行走距离和方向受到源自路径积分的原点矢量的影响。未喂食的蚂蚁向喂食器方向行走。喂食的蚂蚁沿着相反的方向行走一段距离,该距离与启动器和喂料器之间的距离有关。因此,即使在蚂蚁没有执行进食路线的情况下,返回路线的矢量存储器也可以通过蚂蚁的进食状态来准备和表达。对已经获得两条路径的蚂蚁进行的测试表明,返回路径的方向和距离的记忆是相关的,这表明它们可能是由蚂蚁大脑中的普通神经种群编码的。

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