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Fish Physiology, Volume 35: Biology of Stress in Fish

Series: Fish Physiology Volume: 35

By: Carl B Schreck(Editor), Lluis Tort(Editor), Anthony P Farrell(Editor), Colin J Brauner(Editor)

Academic Press

Hardback | Oct 2016 | #238332 | ISBN-13: 9780128027288
Availability: Usually dispatched within 1-2 weeks Details
NHBS Price: £82.99 $116/€94 approx

About this book

Biology of Stress in Fish provides a general understanding on the topic of stress biology, including most of the recent advances in the field. Biology of Stress in Fish starts with a general discussion of stress, providing answers to issues such as its definition, the nature of the physiological stress response, and the factors that affect the stress response.

It also considers the biotic and abiotic factors that cause variation in the stress response, how the stress response is generated and controlled, its effect on physiological and organismic function and performance, and applied assessment of stress, animal welfare, and stress as related to model species.


Contents

Preface

1. The Concept of Stress in Fish
2. Variation in the Neuroendocrine Stress Response
3. The Endocrinology of the Stress Response in Fish: An Adaptation-Physiological View
4. The Molecular Stress Response
5. Stress and Growth
6. Homeostatic Responses to Osmotic Stress
7. The Stress and Stress Mitigation Effects of Exercise: Cardiovascular, Metabolic, and Skeletal Muscle Adjustments
8. Reproduction and Development
9. Cognition, Learning, and Behavior
10. Stress and Disease Resistance: Immune System and Immunoendocrine Interactions
11. Stress Indicators in Fish
12. Stress Management and Welfare
13. Stress in Fish as Model Organisms

Index


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Biography

Tony Farrell is a graduate of Bath University, where he was fortunate to study with Peter Lutz. His fortunes grew further when he moved in 1974 to Canada and the Zoology Department at the University of British Columbia to complete his Ph.D. degree under the superb tutelage of Dave Randall. In 2004, Tony returned to UBC when he accepted an endowed research chair in Sustainable Aquaculture. In between these positions at UBC, Tony was employed at the University of Southern California (PDF), the University of New Brunswick (sessional lecturer), Mount Allison University (first real job) and Simon Fraser University (moving through the ranks to a full professor). In addition to highly controlled laboratory experiments on fish cardiorespiratory physiology, Tony is committed to working on animals in their own environment. Therefore, his research on fish physiology has taken him on an Alpha Helix expedition to the Amazon, the University of Gothenburg and the Kristineberg Marine Research Station in Sweden, the Portobello Marine Biological Station in New Zealand, the University of Christchurch and Massey University in New Zealand, the Bamfield Marine Science Station and the Huntsman Marine Station in Canada, the University of Aarhus in Denmark, the University of Adelaide Charles and Darwin University in Australia, and to the Danish Arctic Marine Station on Disco Island in Greenland. These travels have allowed him to work and with many superb collaborators word-wide, as well as study the physiology of over 70 different species of fish. Tony has received a number of awards for his scientific contributions: an honorary degree from the University of Gothenburg in Sweden; Awards of Excellence from the American Fisheries Society for Fish Physiology, Conservation and Management; the Fry Medal from the Canadian Society of Zoologists; and the Beverton Medal from the Fisheries Society of the British Isles. The primary goal of his research program is to investigate environmental adaptations (both mechanistic and evolutionary) in relation to gas-exchange, acid-base balance and ion regulation in fish, integrating responses from the molecular, cellular and organismal level. The ultimate goal is to understand how evolutionary pressures have shaped physiological systems among vertebrates and to determine the degree to which physiological systems can adapt/acclimate to natural and anthropogenic environmental changes. This information is crucial for basic biology and understanding the diversity of biological systems, but much of his research conducted to date can also be applied to issues of aquaculture, toxicology and water quality criteria development, as well as fisheries management.

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