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Two spatial memories for honeybee navigation

机译:蜜蜂导航的两个空间记忆

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Insect navigation is thought to be based on an egocentric reference system which relates vector information derived from path integration to views of landmarks experienced en route and at the goal. Here we show that honeybees also possess an allocentric form of spatial memory which allows localization of multiple places relative to the intended goal, the hive. The egocentric route memory, which is called the specialized route memory (SRM) here, initially dominates navigation when an animal is first trained to a feeding site and then released at an unexpected site and this is why it is the only reference system detected so far in experiments with bees. However, the SRM can be replaced by an allocentric spatial memory called the general landscape memory (GLM). The GLM is directly accessible to the honeybee (and to the experimenter) if no SRM exists, for example, if bees were not trained along a route before testing. Under these conditions bees return to the hive from all directions around the hive at a speed comparable to that of an equally long flight along a trained route. The flexible use of the GLM indicates that bees may store relational information on places, connections between landmarks and the hive and/or views of landmarks from different directions and, thus, the GLM may have a graph structure, at least with respect to one goal, i.e. the hive. [References: 29]
机译:昆虫导航被认为是基于一个以自我为中心的参考系统,该系统将从路径整合中获得的矢量信息与在途中和目标处经历的地标景观相关联。在这里,我们证明了蜜蜂还拥有同心圆形式的空间记忆,可以相对于预期目标蜂巢定位多个位置。以自我为中心的路线记忆,在这里被称为专用路线记忆(SRM),最初是在动物被首先训练到饲养地点然后释放到意外地点时主导导航,这就是为什么它是迄今为止唯一检测到的参考系统的原因。在与蜜蜂的实验中。但是,SRM可以被称为通用景观内存(GLM)的同心圆空间内存替代。如果不存在SRM,则蜜蜂(和实验者)可以直接访问GLM,例如,如果未在测试之前沿路线训练蜜蜂。在这种情况下,蜜蜂从蜂巢周围的所有方向返回蜂巢,其速度与经过训练的路线进行同样长距离飞行的速度相当。 GLM的灵活使用表示蜜蜂可以存储有关地点,地标与蜂巢之间的连接和/或从不同方向的地标视图的关系信息,因此,GLM至少在一个目标方面可以具有图结构。 ,即蜂巢。 [参考:29]

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