Development and application of a neuroinformatics environment for neuroscience and neuroethology
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[1] Ryohei Kanzaki,et al. Neural control mechanisms of the pheromone‐triggered programmed behavior in male silkmoths revealed by double‐labeling of descending interneurons and a motor neuron , 2005, The Journal of comparative neurology.
[2] Ryohei Kanzaki,et al. Neurons associated with the flip‐flop activity in the lateral accessory lobe and ventral protocerebrum of the silkworm moth brain , 2010, The Journal of comparative neurology.
[3] Arjen van Ooyen,et al. The need for integrating neuronal morphology databases and computational environments in exploring neuronal structure and function , 2001, Anatomy and Embryology.
[4] Jacob E. Levin,et al. Construction and analysis of a database representing a neural map , 1994, Microscopy research and technique.
[5] Kevin W Eliceiri,et al. VisBio: A Computational Tool for Visualization of Multidimensional Biological Image Data , 2004, Traffic.
[6] R. Kanzaki,et al. Coordination of flipflopping neural signals and head turning during pheromone-mediated walking in a male silkworm moth Bombyx mori , 1998, Journal of Comparative Physiology A.
[7] R. Kanzaki,et al. Morphological and physiological properties of pheromone-triggered flipflopping descending interneurons of the male silkworm moth, Bombyx mori , 1994, Journal of Comparative Physiology A.
[8] Ulla Ruotsalainen,et al. Neuroscience data and tool sharing - A legal and policy framework for neuroinformatics , 2003, Neuroinformatics.
[9] Nobuyuki Matsui,et al. Reconstruction and simulation for three-dimensional morphological structure of insect neurons , 2006, Neurocomputing.
[10] Ryohei Kanzaki,et al. Reconstructing the Population Activity of Olfactory Output Neurons that Innervate Identifiable Processing Units , 2008, Frontiers in neural circuits.
[11] Shahram Ghandeharizadeh,et al. Database Challenges and Solutions in Neuroscientific Applications , 1997, NeuroImage.
[12] B. Webb,et al. Can robots make good models of biological behaviour? , 2001, Behavioral and Brain Sciences.
[13] Michael T. Mader,et al. The Drosophila Standard Brain , 2002, Current Biology.
[14] K.M. Passino,et al. Honey Bee Social Foraging Algorithms for Resource Allocation, Part I: Algorithm and Theory , 2007, 2007 American Control Conference.
[15] E. Kramer,et al. Orientation of the Male Silkmoth to the Sex Attractant Bombykol , 1975 .
[16] L. Luo,et al. Representation of the Glomerular Olfactory Map in the Drosophila Brain , 2002, Cell.
[17] Sandy Pittendrigh,et al. Neurosys - A semistructured laboratory database , 2003, Neuroinformatics.
[18] Y. Obara. Bombyx mori Mationg Dance : an Essential in Locationg the Female , 1979 .
[19] R. Kanzaki,et al. Comprehensive morphological identification and GABA immunocytochemistry of antennal lobe local interneurons in Bombyx mori , 2008, The Journal of comparative neurology.
[20] Ryohei Kanzaki,et al. Neural basis of odor-source searching behavior in insect brain systems evaluated with a mobile robot. , 2004, Chemical senses.
[21] N. Matsui,et al. On Self-Organizing Map Based Classification of Insect Neurons , 2006, TENCON 2006 - 2006 IEEE Region 10 Conference.
[22] Ryohei Kanzaki,et al. Development and application of CMS-based database modules for neuroinformatics , 2007, Neurocomputing.
[23] T. L. Payne,et al. Mechanisms in Insect Olfaction , 1986 .
[24] J. Hildebrand,et al. Olfactory control of behavior in moths: central processing of odor information and the functional significance of olfactory glomeruli , 2004, Journal of Comparative Physiology A.
[25] Ryohei Kanzaki,et al. Synthesis of the pheromone-oriented behaviour of silkworm moths by a mobile robot with moth antennae as pheromone sensors1This paper was presented at the Fifth World Congress on Biosensors, Berlin, Germany, 3–5 June 1998.1 , 1999 .
[26] Ulla Ruotsalainen,et al. Neuroscience data and tool sharing , 2003, Neuroinformatics.
[27] K.M. Passino,et al. Honey Bee Social Foraging Algorithms for Resource Allocation, Part II: Application , 2007, 2007 American Control Conference.
[28] R. Menzel,et al. Three‐dimensional average‐shape atlas of the honeybee brain and its applications , 2005, The Journal of comparative neurology.