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昆虫嗅觉的神经生物学:比较语境下的感觉处理。

The neurobiology of insect olfaction: sensory processing in a comparative context.

机构信息

Department of Neuroscience, College of Science, University of Arizona, 1040 East Fourth Street, Tucson, AZ 85721-0077, USA.

出版信息

Prog Neurobiol. 2011 Nov;95(3):427-47. doi: 10.1016/j.pneurobio.2011.09.007. Epub 2011 Sep 24.

Abstract

The simplicity and accessibility of the olfactory systems of insects underlie a body of research essential to understanding not only olfactory function but also general principles of sensory processing. As insect olfactory neurobiology takes advantage of a variety of species separated by millions of years of evolution, the field naturally has yielded some conflicting results. Far from impeding progress, the varieties of insect olfactory systems reflect the various natural histories, adaptations to specific environments, and the roles olfaction plays in the life of the species studied. We review current findings in insect olfactory neurobiology, with special attention to differences among species. We begin by describing the olfactory environments and olfactory-based behaviors of insects, as these form the context in which neurobiological findings are interpreted. Next, we review recent work describing changes in olfactory systems as adaptations to new environments or behaviors promoting speciation. We proceed to discuss variations on the basic anatomy of the antennal (olfactory) lobe of the brain and higher-order olfactory centers. Finally, we describe features of olfactory information processing including gain control, transformation between input and output by operations such as broadening and sharpening of tuning curves, the role of spiking synchrony in the antennal lobe, and the encoding of temporal features of encounters with an odor plume. In each section, we draw connections between particular features of the olfactory neurobiology of a species and the animal's life history. We propose that this perspective is beneficial for insect olfactory neurobiology in particular and sensory neurobiology in general.

摘要

昆虫嗅觉系统的简单性和可及性是理解嗅觉功能和一般感觉处理原理的基础。由于昆虫嗅觉神经生物学利用了各种经过数百万年进化分离的物种,该领域自然产生了一些相互矛盾的结果。昆虫嗅觉系统的多样性并没有阻碍进展,而是反映了各种自然历史、对特定环境的适应以及嗅觉在研究物种生命中的作用。我们回顾了昆虫嗅觉神经生物学的当前发现,特别关注物种间的差异。我们首先描述昆虫的嗅觉环境和基于嗅觉的行为,因为这些构成了神经生物学发现的解释背景。接下来,我们回顾了最近描述嗅觉系统变化的工作,这些变化是适应新环境或促进物种形成的行为的结果。然后,我们讨论了触角(嗅觉)叶和高级嗅觉中心的基本解剖结构的变化。最后,我们描述了嗅觉信息处理的特征,包括增益控制、通过调谐曲线的展宽和锐化等操作将输入和输出转换、触角叶中尖峰同步的作用以及与气味羽流相遇的时间特征的编码。在每一节中,我们都将特定物种的嗅觉神经生物学特征与动物的生活史联系起来。我们提出,这种观点对昆虫嗅觉神经生物学特别是感觉神经生物学都有好处。

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