Physiological tests for elite athletes Australian Commission ; Christopher J. Gore, editor.
Detalles de publicación: Champaign, IL Human Kinetics 2000.Descripción: xiv, 464 p. ill. 28 cmISBN:- 0736003266
- 21 612.044 P5787
- RC1225.P486 2000
| Imagen de cubierta | Tipo de ítem | Biblioteca actual | Biblioteca de origen | Colección | Ubicación en estantería | Signatura topográfica | Materiales especificados | Info Vol | URL | Copia número | Estado | Notas | Fecha de vencimiento | Código de barras | Reserva de ítems | Prioridad de la cola de reserva de ejemplar | Reservas para cursos | |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Libro | Biblioteca Encarnación Valdés Colección General bev | 612.044 P5787 (Navegar estantería(Abre debajo)) | Disponible | 80000002088261 |
Descripciones mejoradas de Syndetics:
The quality assurance procedures and accreditation used in sport science laboratories in Australia are respected worldwide. Now you can put these protocols to use in your research or training program with this authoritative guide from the Australian Sports Commission. Physiological Tests for Elite Athletes is your best source for standardized test protocols for athletes in 17 internationally recognized sports.
Using the protocols in this breakthrough book, researchers in any country can standardize procedures and share data. And athletes and coaches can compare data from different labs for analyzing results and planning training regimens. While learning about controlled test procedures, students of exercise physiology can compare their test scores with those of top-level athletes.
The normative data for these tests have been collected from athletes competing at national and international levels. Thoroughly practical, the book provides principles and examples of test protocols, data analysis, and data interpretation.
Physiological Tests for Elite Athletes presents guidelines for pretest preparation of labs and athletes, with five reproducible forms. The book takes readers through discussions of general assessment procedures, including
-blood lactate testing,
-anthropometric testing,
-blood sampling and handling,
-flexibility assessment,
-VO2max assessment, and
-various methods of strength and power testing.
The book also provides sport-specific information in the assessment of athletic performance. All 17 sport-specific chapters include step-by-step protocols particularly suited to testing athletes engaged in that sport. Extensive tables offer normative data for various national and international sports, including
-basketball,
-tennis,
-cycling,
-triathlon,
-soccer,
-rugby, and
-cricket.
In addition, the book's treatment of the difficult area of strength assessment is the most extensive available to date.
In all, Physiological Tests for Elite Athletes provides a complete international review of athlete testing. It's the most comprehensive applied testing manual available for exercise scientists and students of exercise physiology.
Includes bibliographical references and index.
Tabla de contenidos provista por Syndetics
- Foreword
- Contributors
- Preface
- Introduction
- Part I Laboratory and Athlete Preparation
- Chapter 1 Quality Assurance in Exercise Physiology Laboratories
- Assessing Quality Assurance
- Australian Certification Model
- Implementing Quality Assurance
- The Laboratory Manual
- Chapter 2 Pretest Preparation
- Pretest Preparation Checklist
- Medical Examination Form
- Health Questionnaire
- Consent Form
- Explanation of Physiological Assessment Procedures
- Part II General Assessment Procedures
- Chapter 3 Estimating Peak Power and Anaerobic Capacity of Athletes
- Preliminary Issues
- Laboratory Environment and Subject Preparation
- Equipment
- Test Procedures
- Expected Test Scores
- Testing Peak Power and Anaerobic Capacity: Metabolic Processes
- Chapter 4 Blood Lactate Thresholds
- Reasons for Blood Lactate Testing
- Blood Lactate Response to Exercise: Concepts and Controversies
- Practical Applications of the Blood Lactate Response to Exercise Data
- Summary
- Chapter 5 Anthropometric Assessment Protocols
- Preliminary Matters
- Stature
- Body Mass
- Landmarks
- Skinfolds
- Girths
- Limb Breadths (Widths)
- Technical Error of Measurement
- Measurement Tolerance
- Chapter 6 Blood Sampling and Handling Techniques
- The Practitioner
- General Safe Practice
- Informed Consent
- Protocols
- Transportation of Blood Samples
- Management of Accidents and Injuries
- Chapter 7 Measuring Flexibility for Performance and Injury Prevention
- Definitions of Flexibility
- Active and Passive Flexibility Constraints
- Flexibility and Performance
- Flexibility and Injury Prevention
- Flexibility Measures: Musculotendinous Components
- Chapter 8 Determining Maximal Oxygen Consumption (V\od\O2max) or Maximal Aerobic Power
- Theoretical Rationale
- Test Equipment: Ergometers
- Test Systems
- Volumetric and Gas Analysis Equipment
- General Procedures
- Calculations
- Chapter 9 Testing Protocols for Team Sport Players
- Environment and Subject Preparation
- Equipment
- Protocols
- Part III Strength and Power Assessment
- Chapter 10 Introduction to Assessing Strength and Power
- Definitions, Types, and Purposes of Assessment
- A Process
- Conclusion
- Chapter 11 Limitations to Isometric Testing in Athletic Assessment
- Relationship to Performance
- Comparison to Other Testing Modalities
- Underlying Mechanisms for Poor Isometric Validity
- Conclusions
- Chapter 12 Isokinetic Dynamometry Strength Assessment
- The Purposes of Strength Assessment
- Strength-Testing Methods for the Elite Athlete
- Using Isokinetic Dynamometry
- Equipment
- Calibration and Reliability
- Pretest Procedures
- Test Protocols
- Data Collection
- Reporting Results
- An Example of Isokinetic Dynamometry Strength Assessment
- Important Issues for the Future
- Summary
- Chapter 13 Protocols for the Assessment of Isoinertial Strength
- Maximal Isoinertial Strength Assessment
- Isoinertial Speed Strength Assessment
- Traditional Tests for Isoinertial Strength Qualities
- Recent Tests for Isoinertial Strength Qualities
- Reliability of Isoinertial Strength Measures
- Correlation with Athletic Performance
- Description of Protocols in General Use
- Part IV Protocols for the Physiological Assessment of Players of Specific Sports
- Chapter 14 Protocols for the Physiological Assessment of Basketball Players
- Laboratory and Field Environment and Subject Preparation
- Equipment Checklist
- Protocols
- Test Administration
- Intensive Training Centre Squads
- Data Collection Forms
- Chapter 15 Protocols for the Physiological Assessment of Cricket Players
- Test Environment and Subject Preparation
- Equipment Checklist
- Protocols
- Chapter 16 Protocols for the Physiological Assessment of Cross-Country Skiers and Biathletes
- Laboratory Testing of Cross-Country Skiers and Biathletes
- Laboratory Environment and Subject Preparation
- Equipment Checklist
- Protocols
- Chapter 17 Protocols for the Physiological Assessment of High-Performance Track, Road, and Mountain Cyclists
- Cycle Ergometers
- Laboratory Environment and Subject Preparation
- Equipment Checklist
- Protocols
- Chapter 18 Protocols for the Physiological Assessment of Golfers
- Laboratory Environment and Subject Preparation
- Equipment Checklist
- Protocols
- Chapter 19 Protocols for the Physiological Assessment of Male and Female Field Hockey Players
- Pretest Protocols and Subject Preparation
- Equipment Checklist
- Protocols
- Data Collection Forms
- Chapter 20 Protocols for the Physiological Assessment of Netball Players
- Athlete Preparation and Test Conditions
- Equipment Checklist
- Order of Tests
- Protocols
- Chapter 21 Protocols for the Physiological Assessment of Rowers
- Purposes of Testing Rowers
- Laboratory Environment and Subject Preparation
- Equipment Checklist
- Protocols
- Chapter 22 Protocols for the Physiological Assessment of Rugby Union Players
- Laboratory Environment and Subject Preparation
- Equipment Checklist
- Protocols
- Chapter 23 Protocols for the Physiological Assessment of High-Performance Runners
- Laboratory Environment and Athlete Preparation
- Equipment Checklist
- Protocols
- Chapter 24 Protocols for the Physiological Assessment of Sailors
- Subject Preparation
- Equipment Checklist
- Order and Administration of Tests Across Classes
- Protocols
- Chapter 25 Protocols for the Physiological Assessment of Male and Female Soccer Players
- Test Environment and Subject Preparation
- Equipment Checklist
- Protocols
- Chapter 26 Protocols for the Physiological Assessment of Softball Players
- Equipment Checklist
- General Administration of Tests
- Protocols
- Chapter 27 Protocols for the Physiological Assessment of Swimmers
- Physiological Factors in Swimming Performance
- Testing Environment and Subject Preparation
- Equipment Checklist
- Administration of Tests
- Protocols
- Chapter 28 Protocols for the Physiological Assessment of High-Performance Tennis Players
- Developing a Testing Protocol for Tennis
- Equipment Checklist
- Protocols
- Chapter 29 Protocols for the Physiological Assessment of High-Performance Triathletes
- Triathlon Training Zones
- Laboratory Environment and Athlete Preparation
- Equipment Checklist
- Protocols
- Chapter 30 Protocols for the Physiological Assessment of Elite Water Polo Players
- Pool Tests
- Laboratory Tests
- Musculoskeletal/Physiotherapy Screening
- References
- Appendix
Notas de autor provistas por Syndetics
"Christopher J. Gore, PhD, is a laboratory standards coordinator for the Australian Institute of Sport, where he has worked since 1992. He assists in developing standardized tests for most of Australia's Olympic sports. He is responsible for quality control among 27 sports institutes and university laboratories that test state, national, and Olympic-level athletes in Australia.
Gore has devised two calibration machines for assessing the accuracy and precision of VO2 systems for quantifying the accuracy of oxygen and carbon dioxide analyzers as well as flow devices. He also has collaborated in developing a device for dynamic calibration of skinfold calipers. Gore conducts research on the effects of altitude training on athlete performance and has helped the Australian Institute of Sport develop an ""Altitude House"" that simulates moderate altitudes.
Gore holds a doctorate in exercise physiology from Flinders University of South Australia. He has authored more than 30 papers published in peer-reviewed journals and is the recipient of a Young Investigator Award from Sports Medicine Australia. The author is a member of Sports Medicine Australia and the American College of Sports Medicine.
His favorite leisure time activities include cycling, swimming, flying stunt kites, and gardening.
"