Sports Nutrition Energy Balance (P4, M3, D1).

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Presentation transcript:

Sports Nutrition Energy Balance (P4, M3, D1)

Energy balance You achieve ‘energy balance’ when the amount of energy you take in as food and drink (energy intake) equals the amount of energy you expend (energy expenditure): you will neither be losing nor gaining weight

Basal/resting metabolic rate Resting metabolic rate (RMR) can account for 60–75 percent of total energy output and represents the largest component of total daily energy expenditure RMR is closely related to lean body mass and so is influenced by body composition: muscle tissue is much more active metabolically than fat tissue Gains in muscle mass will result in increases in RMR. RMR is also influenced by your age, gender and genetic background

Work yours out... For men: (13.75 x w) + (5 x h) - (6.76 x a) + 66 For women: (9.56 x w) + (1.85 x h) - (4.68 x a) + 655 w = weight in kg h = height in cm a = age Now select an athlete and work out their BMR. Find out their height, weight and age

Applying the Harris-Benedict equation Little to no exercise - Daily kilocalories needed = BMR x 1.2 Light exercise (1–3 days per week) - Daily kilocalories needed = BMR x 1.375 Moderate exercise (3–5 days per week) - Daily kilocalories needed = BMR x 1.55 Heavy exercise (6–7 days per week) - Daily kilocalories needed = BMR x 1.725 Very heavy exercise (twice per day, extra heavy workouts) - Daily kilocalories needed = BMR x 1.9

Physical Activity Physical activity (PA) represents the most variable component of your total energy expenditure. This is the additional energy expended above RMR, and will contribute more to total daily energy expenditure in active individuals. Exactly how much it contributes varies depending on: • how active your general lifestyle is • how often, how energetically and for how long you exercise • what type of activity it is. Explain how these points are important with regard to the energy you intake and expend for P4, M3, D1

Continued.. The relative value of fuels for activity differs. Fat and carbohydrate are the main energy fuels for your exercising muscles Exercising muscles prefer glucose as a fuel, particularly as the intensity of the activity being undertaken increases. Protein may be used during prolonged periods of exercise and towards the latter stages of endurance events like the marathon, particularly if fat and carbohydrate as sources of fuel within the working muscles have become limited When you exercise, your muscles use energy at a rate that is directly proportional to the intensity of your activity and its duration. If this energy is not replaced as it is used up, your muscles will be unable to maintain their rate of work and the intensity of the activity will need to be reduced or stopped

Calories expended in different activities At rest, we use energy at a rate of about 1–1.2 calories per minute, which is equivalent to about 1400 to 1700 calories per day, the basal metabolism for the average individual Any activity will increase the rate of energy expenditure Walking or jogging requires about 1 kcal per kg of body weight per km covered, but those with a larger body mass burn more energy at the same speed Distance covered, not speed, will have a greater influence on total energy expenditure

57kg 70kg 84kg Calories burned in 30-minute activities Gym Activities 125-pound person 155-pound person 185-pound person Weight Lifting: general 90 112 133 Weight Lifting: vigorous 180 223 266 Circuit Training: general 240 298 355 Rowing, Stationary: vigorous 255 316 377 Bicycling, Stationary: vigorous 315 391 466 Golf: carrying clubs 165 205 244 Swimming: general Soccer: general 210 260 311 Football: touch, flag, general 57kg 70kg 84kg

57kg 70kg 84kg Calories burned in 30-minute activities Gym Activities 125-pound person 155-pound person 185-pound person Weight Lifting: general 90 112 133 Weight Lifting: vigorous 180 223 266 Circuit Training: general 240 298 355 Rowing, Stationary: vigorous 255 316 377 Bicycling, Stationary: vigorous 315 391 466 Golf: carrying clubs 165 205 244 Swimming: general Soccer: general 210 260 311 Football: touch, flag, general 57kg 70kg 84kg

Age, Gender and Climate Research these 3 factors that can affect your energy balance for your sport How does being an old or young sports performer affect energy balance? How does being either a male or female affect energy balance? How does the climate you exercise in affect energy balance?