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首页> 外文期刊>The Journal of Experimental Biology >The mysterious cognitive abilities of bees: why models of visual processing need to consider experience and individual differences in animal performance
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The mysterious cognitive abilities of bees: why models of visual processing need to consider experience and individual differences in animal performance

机译:蜜蜂的神秘认知能力:为什么视觉加工模型需要考虑经验和动物表现的个体差异

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Vision is one of the most important modalities for the remote perception of biologically important stimuli. Insects like honeybees and bumblebees use their colour and spatial vision to solve tasks, such as navigation, or to recognise rewarding flowers during foraging. Bee vision is one of the most intensively studied animal visual systems, and several models have been developed to describe its function. These models have largely assumed that bee vision is determined by mechanistic hard-wired circuits, with little or no consideration for behavioural plasticity or cognitive factors. However, recent work on both bee colour vision and spatial vision suggests that cognitive factors are indeed a very significant factor in determining what a bee sees. Individual bumblebees trade-off speed for accuracy, and will decide on which criteria to prioritise depending upon contextual information. With continued visual experience, honeybees can learn to use non-elemental processing, including configural mechanisms and rule learning, and can access top-down information to enhance learning of sophisticated, novel visual tasks. Honeybees can learn delayed-matching-to-sample tasks and the rules governing this decision making, and even transfer learned rules between different sensory modalities. Finally, bees can learn complex categorisation tasks and display numerical processing abilities for numbers up to and including four. Taken together, this evidence suggests that bees do have a capacity for sophisticated visual behaviours that fit a definition for cognition, and thus simple elemental models of bee vision need to take account of how a variety of factors may influence the type of results one may gain from animal behaviour experiments.
机译:视觉是远距离感知生物学重要刺激的最重要方式之一。蜜蜂和大黄蜂等昆虫利用它们的颜色和空间视力来解决诸如导航之类的任务,或者在觅食期间识别出赏花。蜜蜂视觉是最深入研究的动物视觉系统之一,并且已经开发了多种模型来描述其功能。这些模型在很大程度上假设蜜蜂的视力是由机械硬接线电路确定的,很少或根本没有考虑行为可塑性或认知因素。但是,有关蜜蜂颜色视觉和空间视觉的最新研究表明,认知因素确实是确定蜜蜂所见事物的非常重要的因素。各个大黄蜂权衡速度以提高准确性,并将根据上下文信息决定要优先考虑的标准。凭借持续的视觉体验,蜜蜂可以学习使用非元素处理,包括配置机制和规则学习,并且可以访问自上而下的信息以增强对复杂,新颖的视觉任务的学习。蜜蜂可以学习延迟匹配样本的任务以及控制该决策的规则,甚至可以在不同的感觉方式之间传递学习到的规则。最后,蜜蜂可以学习复杂的分类任务,并显示数字处理能力,最多可包含四个数字。综上所述,该证据表明蜜蜂确实具有符合认知定义的复杂视觉行为的能力,因此,蜜蜂视觉的简单元素模型需要考虑多种因素如何影响人们可能获得的结果类型来自动物行为实验。

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