The Physiology Of Developing Fish Viviparity And Posthatching Juveniles
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Author | : |
Publisher | : Academic Press |
Total Pages | : 457 |
Release | : 1988-04-15 |
Genre | : Science |
ISBN | : 0080585345 |
FROM THE PREFACE: Dramatic changes occur in the physiology of most animals during their development. Among the vertebrates, birds are entirely oviparous, live for variable periods in a cleidoic egg, and show fundamental alterations in excretion, nutrition, and respiration at the time of hatching. In contrast, the eutherian mammals are all viviparous, depend on the maternal circulation and a specialized placenta to provide food, exchange gases, and discharge wastes. The physiology of both mother and fetus is highly specialized during gestation and changes fundamentally at the time of birth. Fishes exemplify both the oviparous and the viviparous modes of development, with some examples that are intermediate between the two.In these two volumes, selected reviews of many, but not all, aspects of development are presented. The chapters in Part A relate to the physiology of eggs and larvae; those in Part B concern viviparity and the physiology of posthatching juvenile fishes.
Author | : |
Publisher | : Academic Press |
Total Pages | : 336 |
Release | : 2000-10-31 |
Genre | : Science |
ISBN | : 0080918735 |
With the advent of zebrafish as a model system, the development and growth of muscle in fish has become an ever more important process. This volume, in the continuing Fish Physiology series, focuses attention on muscle from the genetics of muscle development to application of muscle growth patterns to aquacultural production.
Author | : Derek Burton |
Publisher | : Oxford University Press |
Total Pages | : 457 |
Release | : 2018 |
Genre | : Science |
ISBN | : 0198785550 |
Essential Fish Biology provides an introductory overview of the functional biology of fish and how this may be affected by the widely contrasting habitat conditions within the aquatic environment. It describes the recent advances in comparative animal physiology which have greatly influenced our understanding of fish function as well as generating questions that have yet to be resolved. Fish taxa represent the largest number of vertebrates,with over 25,000 extant species. However, much of our knowledge, apart from taxonomy and habitat descriptions, has been based on relatively few of them, usually those which live in fresh water and/or are ofcommercial interest. Unfortunately there has also been a tendency to base our interpretation of fish physiology on that of mammalian systems, as well as to rely on a few type species of fish. This accessible textbook will redress the balance by using examples of fish from a wide range of species and habitats, emphasizing diversity as well as recognizing shared attributes with other vertebrates.
Author | : Anthony Peter Farrell |
Publisher | : Gulf Professional Publishing |
Total Pages | : 418 |
Release | : 2005 |
Genre | : Adaptation (Physiology) |
ISBN | : 9780123504463 |
Devoted to fishes of high latitudes (Arctic and Antarctic). This book includes themes such as: the uniqueness of the physiology of fishes that live in cold polar environments, an analysis of physiological patterns exemplified by fishes that live poles apart, and how fishes differ from fishes living in more temperate and tropical habitats.
Author | : Stephen D. McCormick |
Publisher | : Academic Press |
Total Pages | : 582 |
Release | : 2013-01-11 |
Genre | : Technology & Engineering |
ISBN | : 0123972329 |
The need for ion and water homeostasis is common to all life. For fish, ion and water homeostasis is an especially important challenge because they live in direct contact with water and because of the large variation in the salt content of natural waters (varying by over 5 orders of magnitude). Most fish are stenohaline and are unable to move between freshwater and seawater. Remarkably, some fishes are capable of life in both freshwater and seawater. These euryhaline fishes constitute an estimated 3 to 5% of all fish species. Euryhaline fishes represent some of the most iconic and interesting of all fish species, from salmon and sturgeon that make epic migrations to intertidal mudskippers that contend with daily salinity changes. With the advent of global climate change and increasing sea levels, understanding the environmental physiology of euryhaline species is critical for environmental management and any mitigative measures. This volume will provide the first integrative review of euryhalinity in fish. There is no other book that focuses on fish that have the capacity to move between freshwater and seawater. The different challenges of salt and water balance in different habitats have led to different physiological controls and regulation, which heretofore has not been reviewed in a single volume. - Collects and synthesizes the literature covering the state of knowledge of the physiology of euryhaline fish - Provides the foundational information needed for researchers from a variety of fields, including fish physiology, conservation and evolutionary biology, genomics, ecology, ecotoxicology, and comparative physiology - All authors are the leading researchers and emerging leaders in their fields
Author | : |
Publisher | : Academic Press |
Total Pages | : 569 |
Release | : 1988-05-01 |
Genre | : Science |
ISBN | : 0080585337 |
Author | : Robert E. Shadwick |
Publisher | : Elsevier |
Total Pages | : 556 |
Release | : 2006-02-02 |
Genre | : Technology & Engineering |
ISBN | : 0080477763 |
The first in two decades to exclusively integrate physiological and biomechanical studies of fish locomotion, feeding and breathing, making this book both comprehensive and unique. Fish Physiology: Fish Biomechanics reviews and integrates recent developments in research on fish biomechanics, with particular emphasis on experimental results derived from the application of innovative new technologies to this area of research, such as high-speed video, sonomicrometry and digital imaging of flow fields. The collective chapters, written by leaders in the field, provide a multidisciplinary view and synthesis of the latest information on feeding mechanics, breathing mechanics, sensory systems, stability and maueverability, skeletal systems, muscle structure and performance, and hydrodynamics of steady and burst swimming, including riverine passage of migratory species. - Book presents concepts in biomechanics, a rapidly expanding area of research - First volume in over twenty years on this subject - Multi-author volume with contributions by leaders in the field - Clear explanations of basic biomechanical principles used in fish research - Well illustrated with summary figures and explanatory color diagrams
Author | : Toshiaki J. Hara |
Publisher | : Elsevier |
Total Pages | : 536 |
Release | : 2006-10-17 |
Genre | : Technology & Engineering |
ISBN | : 0080469612 |
Fish sensory systems have been extensively studied not only because of a wide general interest in the behavioral and sensory physiology of this group, but also because fishes are well suited as biological models for studies of sensory systems. Fish Physiology: Sensory Systems Neuroscience describes how fish are able to perceive their physical and biological surroundings, and highlights some of the exciting developments in molecular biology of fish sensory systems. Volume 25 in the Fish Physiology series offers the only updated thorough examination of fish sensory systems at the molecular, cellular and systems levels. - Offers a comprehensive account of the present state of science in this rapidly expanding and developing field - New physiological techniques presented to enable examining responses at the cellular and system levels - Discusses fish sensory systems and how they have adapted to the physiological challenges presented by an aquatic environment
Author | : Keith B. Tierney |
Publisher | : Academic Press |
Total Pages | : 570 |
Release | : 2013-12-04 |
Genre | : Technology & Engineering |
ISBN | : 0123982553 |
Fish Physiology: Organic Chemical Toxicology of Fishes discusses the different types of organic chemical contaminants and their respective toxic effects in fish. The book also covers the detection of dissolved organic compounds and methods to assess organic toxicity. Substances addressed in this book include organometallics, hydrocarbons, endocrine disrupting compounds (EDCs), insecticides, herbicides, and pharmaceuticals. Fish are exposed to an ever-increasing array of organic chemicals that find their way into rivers and oceans. Some of these compounds are no longer being produced but nonetheless persist within the environment (persistent organic pollutants, or POPs). The exposure of fish to toxic organic compounds has potential impact on human, fish, and ecosystem health. Yet the regulations that govern environmental water quality vary worldwide, and compliance is never complete. This book provides a crucial resource on these issues for researchers in zoology, fish physiology, and related fields; applied researchers in environmental monitoring, conservation biology, and toxicology; and university-level students and instructors in these areas. - Organized by type of toxic organic chemicals - Includes metals, POPs, EDCs, herbicides, insecticides, and pharmaceuticals - Measures toxicity in a variety of ways aside from lethality - Probes the toxic effects of compound mixtures as well as single pollutants
Author | : Robert E. Shadwick |
Publisher | : Academic Press |
Total Pages | : 581 |
Release | : 2015-11-16 |
Genre | : Science |
ISBN | : 0128014377 |
Fish Physiology: Physiology of Elasmobranch Fishes, Volume 34B is a useful reference for fish physiologists, biologists, ecologists, and conservation biologists. Following an increase in research on elasmobranchs due to the plight of sharks in today's oceans, this volume compares elasmobranchs to other groups of fish, highlights areas of interest for future research, and offers perspective on future problems. Covering measurements and lab-and-field based studies of large pelagic sharks, this volume is a natural addition to the renowned Fish Physiology series. - Provides needed comprehensive content on the physiology of elasmobranchs - Offers a systems approach between structure and interaction with the environment and internal physiology - Contains contributions by leading experts in their respective fields, under the guidance of internationally recognized and highly respected editors - Highlights areas of interest for future research, including perspective on future problems