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Neurobiology of the homing pigeon—a review

机译:鸽子的神经生物学—综述

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Homing pigeons are well known as good homers, and the knowledge of principal parameters determining their homing behaviour and the neurological basis for this have been elucidated in the last decades. Several orientation mechanisms and parameters—sun compass, earth’s magnetic field, olfactory cues, visual cues—are known to be involved in homing behaviour, whereas there are still controversial discussions about their detailed function and their importance. This paper attempts to review and summarise the present knowledge about pigeon homing by describing the known orientation mechanisms and factors, including their pros and cons. Additionally, behavioural features like motivation, experience, and track preferences are discussed. All behaviour has its origin in the brain and the neuronal basis of homing and the neuroanatomical particularities of homing pigeons are a main topic of this review. Homing pigeons have larger brains in comparison to other non-homing pigeon breeds and particularly show increased size of the hippocampus. This underlines our hypothesis that there is a relationship between hippocampus size and spatial ability. The role of the hippocampus in homing and its plasticity in response to navigational experience are discussed in support of this hypothesis. Keywords Homing pigeon - Navigation - Brain - Avian hippocampus - Behaviour
机译:归巢鸽是众所周知的好本垒打,并且在过去的几十年中已经阐明了决定其归巢行为的主要参数知识和神经学基础。归位行为涉及多种定向机制和参数(太阳罗盘,地球磁场,嗅觉线索,视觉线索),而关于其详细功能及其重要性仍存在争议。本文试图通过描述已知的定向机制和因素,包括其优缺点,来回顾和总结有关鸽子归巢的当前知识。此外,还讨论了诸如动机,经验和追踪偏好等行为特征。所有行为都起源于大脑,而归巢的神经元基础以及归巢鸽子的神经解剖学特性是本综述的主要主题。与其他非归巢鸽相比,归巢鸽的大脑更大,尤其是海马体的大小有所增加。这强调了我们的假设,即海马体大小与空间能力之间存在联系。为支持这一假设,我们讨论了海马在归巢中的作用及其可塑性,以应对航行经历。归巢鸽子-导航-脑-禽海马-行为

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