The Oxford handbook of invertebrate neurobiology / edited by John H. Byrne.
Material type:
Continuing resourceSeries: Publisher: New York : Oxford University Press, 2017-2019Description: 1 online resourceContent type: - text
- computer
- online resource
- 9780190456764 (online resource) :
- Invertebrate neurobiology
- 573.812 23
Includes bibliographical references and index.
Recent Trends in Invertebrate Neuroscience / Alan Gelperin -- Neurotransmitters and Neuropeptides of Invertebrates / Lynne A. Fieber -- Auditory Systems of Drosophila and Other Invertebrates / Yun Doo Chung, Jeongmi Lee -- Motion Vision in Arthropods / Alex S. Mauss, Alexander Borst -- Chemosensory Transduction in Arthropods / Monika Stengl -- Magnetoreception of Invertebrates / Martin Vacha -- Rhythmic Pattern Generation in Invertebrates / Astrid A. Prinz -- The Feeding Network of Aplysia: Features That are Distinctive and Shared With Other Molluscs / Elizabeth C. Cropper, Jian Jing, Klaudiusz R. Weiss -- The Divergent Evolution of Arthropod Brains: Ground Pattern Organization and Stability Through Geological Time / Nicholas J. Strausfeld -- Control of Locomotion in Hexapods / Roy E. Ritzmann, Sasha N. Zill -- Neural Control of Swimming in Nudipleura Molluscs / Paul S. Katz, Akira Sakurai -- Control of Locomotion in Annelids / William Kristan -- Control of Locomotion in Crustacean / Daniel Cattaert, Donald Hine Edwards -- Evolution and Design of Invertebrate Circadian Clocks / Vu H. Lam, Joanna C. Chiu -- Neurobiology of Reproduction in Molluscs: Mechanisms and Evolution / Carlo Di Cristo, Joris M. Koene -- Search Strategies for Intentionality in the Honeybee Brain / Randolf Menzel -- Identifying Critical Genes, Neurotransmitters, and Circuits for Social Behavior in Invertebrates / Sarah Certel -- The Vertical Lobe of Cephalopods: A Brain Structure Ideal for Exploring the Mechanisms of Complex Forms of Learning and Memory / Ana Turchetti-Maia, Tal Shomrat, Binyamin Hochner -- Development of the Nervous System of Invertebrates / Volker Hartenstein -- Rapid Neural Polyphenism in Cephalopods: Current Understanding and Future Challenges / Roger T. Hanlon, Chuan-Chin Chiao -- Nonassociative Learning in Invertebrates / Alex J. Yu, Catharine H. Rankin -- Associative Learning in Invertebrates / Romuald Nargeot, Alexis Bédécarrats -- Mechanisms of Axonal Degeneration and Regeneration: Lessons Learned From Invertebrates / Jiaxing Li, Catherine A. Collins -- Motor Control in Soft-Bodied Animals: The Octopus / Guy Levy, Nir Nesher, Letizia Zullo, Binyamin Hochner -- Genetic Analysis of Behavior in Drosophila / Björn Brembs -- Invertebrate Genomics Provide Insights Into the Origin of Synaptic Transmission / Thomas W. Abrams, Wayne Sossin -- Genetics of Behavior in C. elegans / Denise S. Walker, Yee Lian Chew, William R. Schafer -- Cnidarian Neurobiology / Richard Satterlie -- Flatworm Neurobiology in the Postgenomic Era / Paul McVeigh, Aaron G. Maule -- Morphology of Invertebrate Neurons and Synapses / Ian A. Meinertzhagen.
The Oxford Handbook of Invertebrate Neurobiology reviews neurobiological phenomena, including motor pattern generation, mechanisms of synaptic transmission, and learning and memory, as well as circadian rhythms, development, regeneration, and reproduction. Species-specific behaviors are covered in chapters on the control of swimming in annelids, crustacea, and mollusks; locomotion in hexapods; and camouflage in cephalopods. A unique feature of the handbook is the coverage of social behavior and intentionality in invertebrates. These developments are contextualized in a chapter summarizing past contributions of invertebrate research as well as areas for future studies that will continue to advance the field.
Description based on online resource; title from home page (viewed on June 10, 2019).
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