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昆虫大脑中的多模态信息处理与联想学习

Multimodal Information Processing and Associative Learning in the Insect Brain.

作者信息

Thiagarajan Devasena, Sachse Silke

机构信息

Department of Evolutionary Neuroethology, Max Planck Institute for Chemical Ecology, Hans-Knöll-Str. 8, 07745 Jena, Germany.

出版信息

Insects. 2022 Mar 28;13(4):332. doi: 10.3390/insects13040332.

Abstract

The study of sensory systems in insects has a long-spanning history of almost an entire century. Olfaction, vision, and gustation are thoroughly researched in several robust insect models and new discoveries are made every day on the more elusive thermo- and mechano-sensory systems. Few specialized senses such as hygro- and magneto-reception are also identified in some insects. In light of recent advancements in the scientific investigation of insect behavior, it is not only important to study sensory modalities individually, but also as a combination of multimodal inputs. This is of particular significance, as a combinatorial approach to study sensory behaviors mimics the real-time environment of an insect with a wide spectrum of information available to it. As a fascinating field that is recently gaining new insight, multimodal integration in insects serves as a fundamental basis to understand complex insect behaviors including, but not limited to navigation, foraging, learning, and memory. In this review, we have summarized various studies that investigated sensory integration across modalities, with emphasis on three insect models (honeybees, ants and flies), their behaviors, and the corresponding neuronal underpinnings.

摘要

对昆虫感觉系统的研究有着近一个世纪的悠久历史。在几种成熟的昆虫模型中,嗅觉、视觉和味觉都得到了深入研究,并且每天都有关于更难以捉摸的热感和机械感觉系统的新发现。在一些昆虫中还发现了很少的特殊感觉,如湿感和磁感受。鉴于昆虫行为科学研究的最新进展,不仅单独研究感觉模态很重要,而且将其作为多模态输入的组合来研究也很重要。这具有特别重要的意义,因为研究感觉行为的组合方法模仿了昆虫所处的具有广泛可用信息的实时环境。作为一个最近获得新见解的迷人领域,昆虫的多模态整合是理解复杂昆虫行为(包括但不限于导航、觅食、学习和记忆)的基本基础。在这篇综述中,我们总结了各种研究感觉跨模态整合的研究,重点关注三种昆虫模型(蜜蜂、蚂蚁和苍蝇)、它们的行为以及相应的神经基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e7a/9033018/4e145b3e95b1/insects-13-00332-g001.jpg

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