Molecular Exercise Physiology : An Introduction / edited by Adam P. Sharples, James P. Morton, and Henning Wackerhage
Contributor(s): Sharples, Adam P., editor literario
| Morton, James, editor literario
| Wackerhage, Henning, editor literario
Material type:
E-bookPublisher: New York, NY : Routledge, 2022Edition: Second edition: May 2022.Description: 1 recurso en línea (358 páginas).ISBN: 9781315110752.Subject: Educación física
| Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
|---|---|---|---|---|---|---|---|---|
LIBRO-E NO PRÉSTAMO
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Madrid Digital Acceso Electrónico (UEM) | Actividad Física y Deporte | GV558 2022 EB (Browse shelf(Opens below)) | Acceso electrónico | eBook9781315110752 |
Incluye referencias bibliográficas e índices
Introduction to molecular exercise physiology -- Genetics, sport and exercise: background and methods -- Signal transduction and adaptation to exercise: background and methods -- Molecular adaptation to endurance exercise and skeletal muscle fibre plasticity -- Genetics and endurance sports -- Molecular adaptation to resistance exercise -- Genetics, muscle mass and strength -- Molecular sport nutrition -- Human evolution, type 2 diabetes mellitus and exercise -- Molecules, ageing and exercise -- Molecular neuroscience and exercise -- Molecular exercise immunology.
Fully revised and expanded, the second edition of Molecular Exercise Physiology offers a student-friendly introduction. It introduces a history documenting the emergence of molecular biology techniques to investigate exercise physiology, the methodology used, exercise genetics and epigenetics, and the molecular mechanisms that lead to adaptation after different types of exercise, and explicitly links to outcomes in sport performance, nutrition, physical activity, and clinical exercise. Structured around key topics in sport and exercise science and featuring contributions from pioneering scientists, such as Nobel Prize winners, this edition includes new chapters based on cutting-edge research in epigenetics and muscle memory, skeletal muscle stem cells, circadian rhythms, exercise at altitude and in hot and cold climates, circadian rhythms, and exercise in cancer. Every chapter includes learning objectives, structured guides to further reading, review questions, overviews of work by key researchers and box discussions from important pioneers in the field, making it a complete resource for any molecular exercise physiology course. The book includes cell and molecular biology laboratory methods for dissertation and research projects in molecular exercise physiology and muscle physiology. This book is essential reading for upper-level undergraduate or postgraduate course in cellular and molecular exercise physiology and muscle physiology. It is a valuable resource for any student with an advanced interest in exercise physiology in both sport performance and clinical settings
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