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      Arthropod Biology and Evolution 

      Architectural Principles and Evolution of the Arthropod Central Nervous System

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          Mushroom body memoir: from maps to models.

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            Design principles of insect and vertebrate visual systems.

            A century ago, Cajal noted striking similarities between the neural circuits that underlie vision in vertebrates and flies. Over the past few decades, structural and functional studies have provided strong support for Cajal's view. In parallel, genetic studies have revealed some common molecular mechanisms controlling development of vertebrate and fly visual systems and suggested that they share a common evolutionary origin. Here, we review these shared features, focusing on the first several layers-retina, optic tectum (superior colliculus), and lateral geniculate nucleus in vertebrates; and retina, lamina, and medulla in fly. We argue that vertebrate and fly visual circuits utilize common design principles and that taking advantage of this phylogenetic conservation will speed progress in elucidating both functional strategies and developmental mechanisms, as has already occurred in other areas of neurobiology ranging from electrical signaling and synaptic plasticity to neurogenesis and axon guidance. Copyright 2010 Elsevier Inc. All rights reserved.
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              Evolution of insect olfaction.

              Neuroethology utilizes a wide range of multidisciplinary approaches to decipher neural correlates of natural behaviors associated with an animal's ecological niche. By placing emphasis on comparative analyses of adaptive and evolutionary trends across species, a neuroethological perspective is uniquely suited to uncovering general organizational and biological principles that shape the function and anatomy of the nervous system. In this review, we focus on the application of neuroethological principles in the study of insect olfaction and discuss how ecological environment and other selective pressures influence the development of insect olfactory neurobiology, not only informing our understanding of olfactory evolution but also providing broader insights into sensory processing. Copyright © 2011 Elsevier Inc. All rights reserved.
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                Author and book information

                Book Chapter
                2013
                April 12 2013
                : 299-342
                10.1007/978-3-642-36160-9_13
                aace5988-5855-4c0d-9369-f8f771860377
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