Comparative Psychology of Invertebrates


Book Description

First Published in 1997. The papers in this volume on invertebrate behaviour, predominantly ant behaviour, are presented as a tribute to T. C. Schneirla and to his theoretical and experimental contributions to our understanding of the development and evolution of behaviour. His emphasis on development also brought to the fore new questions, many of which are addressed in this volume. Advances in technical instrumentation for research will be useful in reformulating these old questions in new and significantly constructive programs for responsible research. The theoretical contributions of Schneirla will continue to prove an important facilitation of those new research techniques.




Comparative Psychology of Invertebrates


Book Description

First Published in 1997. The papers in this volume on invertebrate behaviour, predominantly ant behaviour, are presented as a tribute to T. C. Schneirla and to his theoretical and experimental contributions to our understanding of the development and evolution of behaviour. His emphasis on development also brought to the fore new questions, many of which are addressed in this volume. Advances in technical instrumentation for research will be useful in reformulating these old questions in new and significantly constructive programs for responsible research. The theoretical contributions of Schneirla will continue to prove an important facilitation of those new research techniques.













The Oxford Handbook of Comparative Evolutionary Psychology


Book Description

This volume brings together leading experts in comparative and evolutionary psychology. Top scholars summarize the histories and possible futures of their disciplines, and the contribution of each to illuminating the evolutionary forces that give rise to unique abilities in distantly and closely related species.




Invertebrate Learning


Book Description

Since the publication of the second volume of Comparative Psychology by Warden, Warner, and Jenkins (1940), there has not been a comprehensive review of invertebrate learning capacities. Some high-quality reviews have appeared in various journals, texts, and symposia, but they have been, of necessity, incomplete and selective either in terms of the phyla covered or the phenomena which were reviewed. Although this lack has served as a stimulus for the present series, the primary justification is to be found in the resurgence of theoretical and empirical interests in learning capacities and mechanisms in simpler systems of widely different phylogenetic origin. Intensive research on the physiological basis of learning and memory clearly entails exploration of the correlations between levels of nervous system organization and be havioral plasticity. Furthermore, the presence of structural-functional differ entiation in ganglionated systems, the existence of giant, easily identifiable cells, and the reduced complexity of structure and behavior repertoires are among the advantages of the "simple systems" strategy which have caused many neuroscientists to abandon their cats, rats, and monkeys in favor of mollusks, leeches, planaria, crayfish, protozoa, and other invertebrate preparations. Behavioral research continues to reveal remarkable capacities in these simple organisms and encourages us to believe that the confluence of the invertebrate learning data with the more voluminous vertebrate litera ture will contribute substantially to the enrichment of all of the neurobe havioral sciences.




A Primer of Invertebrate Learning


Book Description

This work provides a methodological introduction to the study of invertebrate learning. It aims to give readers an understanding of the principles of sound experimental design and of some fundamental issues in the analysis of behaviour. It includes questions and lists of resources and materials.




Invertebrate Learning


Book Description

"Invertebrate Learning: A Laboratory Manual and Source Book" is designed primarily for use in the laboratory portion of a course on animal behavior. It is useful for instructors in colleges, universities, and high schools who wish to supplement or create course work in animal behavior but cannot do so because of budget and space limitations. Instructors of high school biology and students interested in science fairs and independent projects will also find this manual useful as a source and idea book. It is assumed that students using this manual are already familiar with the basic principles of the psychology of animal learning and behaviour. Some familiarity with invertebrate zoology and physiology, although not essential, will add to the enjoyment and understanding of the exercises. (PsycINFO Database Record (c) 2004 APA, all rights reserved).




Invertebrate Learning and Memory


Book Description

Understanding how memories are induced and maintained is one of the major outstanding questions in modern neuroscience. This is difficult to address in the mammalian brain due to its enormous complexity, and invertebrates offer major advantages for learning and memory studies because of their relative simplicity. Many important discoveries made in invertebrates have been found to be generally applicable to higher organisms, and the overarching theme of the proposed will be to integrate information from different levels of neural organization to help generate a complete account of learning and memory. Edited by two leaders in the field, Invertebrate Learning and Memory will offer a current and comprehensive review, with chapters authored by experts in each topic. The volume will take a multidisciplinary approach, exploring behavioral, cellular, genetic, molecular, and computational investigations of memory. Coverage will include comparative cognition at the behavioral and mechanistic level, developments in concepts and methodologies that will underlie future advancements, and mechanistic examples from the most important vertebrate systems (nematodes, molluscs, and insects). Neuroscience researchers and graduate students with an interest in the neural control of cognitive behavior will benefit, as will as will those in the field of invertebrate learning. Presents an overview of invertebrate studies at the molecular / cellular / neural levels and correlates findings to mammalian behavioral investigations Linking multidisciplinary approaches allows for full understanding of how molecular changes in neurons and circuits underpin behavioral plasticity Edited work with chapters authored by leaders in the field around the globe – the broadest, most expert coverage available Comprehensive coverage synthesizes widely dispersed research, serving as one-stop shopping for comparative learning and memory researchers