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To acquaint the audience with the possibility of determining the bioenergetic demand of physical activity as a starting tool
for evaluating the relationship between the intervention and its effect.
Last update: Hráský Pavel, PhDr., Ph.D. (19.01.2025)
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Outputs from the subject for listeners The output of the semester-long course is to acquaint students with the theoretical foundations, which are based on the research supports of current issues and practical applications, during which the students will test their transferability into practice. Theoretically, students will include work with theoretical supports and understand the laws and connections of the effect of load on the state and change in the individual functional systems of the organism. Practical applications-exercises-students will learn to set up, perform and specify protocols used in exercise physiology to describe the effect on individual functional systems of the body. They will also learn the procedures that lead to the initiation of relevant tests to objectify the impact of the load on the organism. Based on the type of test protocol, they will be able to assess bioenergetics as a response to load and its transfer into practice. Last update: Hráský Pavel, PhDr., Ph.D. (19.01.2025)
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1. Evaluation of the load protocol 2. Knowledge test 3. Interpretation of a specific test into a real sports environment Last update: Hráský Pavel, PhDr., Ph.D. (19.01.2025)
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ASTRAND, P. O., RODAHL, K. (1996). Textbook of Work Physiology. New York: McGraw Hill. Last update: Hráský Pavel, PhDr., Ph.D. (19.01.2025)
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80% participation, written report with course topic Last update: Hráský Pavel, PhDr., Ph.D. (19.01.2025)
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Lectures 1. Introduction 2. Movement - characteristics and "kinds" 3. Difficulty of movement activities 4. Energy during physical activity, the relationship between energy and intensity 5. Dependence on age, training and previous movement experience 6. Cultivation of the "technique" of physical activity as a basis for reducing energy consumption 7. Coefficient of energy intensity of physical activity Seminars: 8. Energy demand of walking and running 9. Energy balance of movement activity, adaptation and energy demand 10. Mechanical efficiency of movement activities 11. Determining the energy demand of physical activities as a basis for managing physical training 12. Evaluation in the laboratory 13. Evaluation in the field 14. Use in the design of movement intervention and construction of movement trainin
Last update: Hráský Pavel, PhDr., Ph.D. (19.01.2025)
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