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Higher Brain Centers for Intelligent Motor Control in Insects

机译:昆虫中智能电机控制的高脑中心

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The higher control of orientation, walking and gap climbing behavior in the fruit fly Drosophila is studied by neurogenetic means. An insect brain model is presented for the control of object approaches. The model comprises learning abilities of flies at two different time scales. A short-term orientation memory allows for the continued approach of objects that disappeared from sight. Flies can come hack to the still invisible object even after a detour to a distracter object. A long-term memory allows for the storage of experience with particular types of objects in order to trigger avoidance behavior in the future instead of the default approach behavior. Moreover, we provide evidence that the highly adaptive and successful locomotion of flies relies also on short-term integrators, motor learning, body size representation and adaptive termination of behavior.
机译:通过神经发生方法研究了果蝇果蝇中的取向,行走和间隙攀爬行为的更高控制。展示了昆虫脑模型以控制对象方法。该模型包括两种不同时间尺度的苍蝇的学习能力。短期定向记忆允许从视线中消失的物体的持续接近。即使在绕道而行的对象之后,苍蝇也可以在仍然看不见的物体中来攻击。长期存储器允许以特定类型的物体存储体验,以便在将来触发避免行为而不是默认的方法行为。此外,我们提供了证据表明,苍蝇的高度适应性和成功的运动依赖于短期集成商,电机学习,体型表示和行为的自适应终止。

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