Measurement of Metabolism

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4340-ExMet-Measure-05.pptx

Measurement of Exercise Metabolism

Pages 120-122, 123-124, & 125-130.

Objectives

For both VO2 and RER know the following: What is it? How is it measured? Under what conditions is it measured? What can be learned from measuring it?

For both the oxygen deficit and EPOC understand what they are and what each one represents?

Energy Systems

The treadmill said I burned 436 calories. How does it know?

How many of those calories were fat calories?

Measurement of Anaerobic “Energy”: Lactate Threshold

Anaerobic

threshold

Slow glycolysis

Fast glycolysis

Measurement of

Oxidative (Aerobic) Energy

Direct

Calorimetry

40% of energy from ATP is transferred into ATP, the rest is lost as heat

40% of energy from ATP is transferred into ATP, the rest is lost as heat

Indirect Calorimetry

79% N

~17% O2

~4% CO2

79% N

20.97% O2

0.03% CO2

Ventilation

(Liters of air

per minute)

VO2

at rest 3.5 ml/kg/min

VO2max

college aged men 45-50

college aged women 35-40

elite men 80

elite women 70

79% N

0.03% CO2 20.97% O2

VO2

VCO2

79% N

~4% CO2 ~17% O2

Indirect Calorimetry

Measurements made:

O2 content of expired air

CO2 content of expired air

Ventilation

Results:

VO2 - volume of O2 consumed

VCO2 - volume of CO2 produced

Note: does not measure anaerobic energy

Respiratory Exchange Ratio

Respiratory exchange ratio (RER)

RER = VCO2 / VO2

Example 1: Fat (palmitic acid) = C16H32O2

C16H32O2 + 23O2 ↔ 16CO2 + 16H2O + ATP

RER = VCO2/VO2 = 16CO2 / 23O2 = 0.70

Example 2: Glucose = C6H12O6

C6H12O6 + 6O2 ↔ 6CO2 + 6H2O + ATP

RER = VCO2/VO2= 6CO2 / 6O2 = 1.00

Respiratory Exchange Ratio

(RER)

Does not account for the small amount of energy coming from protein or anaerobic energy production

Exercise Metabolism

As exercise intensity increases, so does VO2, and RER

Together, exercise VO2 and RER estimate caloric expenditure

Caloric Expenditure

Assume VO2 = 2.0 liters per minute and an RER of 0.80

Caloric expenditure

= 2.0 liters/min x 4.8 kcals/liter

= 9.60 kcal/min (288 kcal over 30 minutes)

Assume VO2 = 2.0 liters per minute and an RER of 0.95

Caloric expenditure

= 2.0 liters/min x 4.99 kcals/liter

= 9.98 kcal/min (299.3 kcal over 30 minutes)

Carbohydrate: more energy per liter of oxygen

VO2

VO2 is the abbreviation for oxygen uptake or oxygen consumption.

VO2 is the amount of oxygen used by the body for aerobic energy (or ATP) production.

In other words, aerobic metabolism

Basal and Resting Metabolic Rate

How is RMR measured?

What factors influence RMR?

Age, body temperature, stress, hormones, etc.

Exercise Metabolism

Anaerobic

metabolism

Maximal aerobic + Anaerobic

Aerobic + Anaerobic

Aerobic + Anaerobic

Mostly aerobic

Mostly aerobic

slow component of VO2 occurs at intensities above the LT. Takes longer to reach steady state due to the reliance on more type II fibers which are less oxygen efficient.

Maximal Exercise

Metabolic Rate

VO2max

versus

Peak VO2

18-22 year olds: 38-42 for women, 44-50 for men. 77 highest for women, 94 highest for men. Both x-c skiers.

Maximal Exercise

Metabolic Rate

VO2max (maximal O2 uptake)

Untrained young men: 44 to 50 ml/kg/min

Untrained young women: 38 to 42 ml/kg/min

Sex difference due to women’s lower FFM and hemoglobin

Point at which O2 consumption doesn’t increase with further increase in intensity

Best single measurement of aerobic fitness

Not best predictor of endurance performance

Plateaus after 8 to 12 weeks of training

Performance continues to improve

More training allows athlete to compete at higher percentage of VO2max

Maximal Exercise

Metabolic Rate

VO2max normalized for body weight

ml O2 / kg / min (Milliliters per kilogram of body weight per minute)

More accurate comparison for different body sizes

VO2max expressed in L / min (Liters per minute)

Easy standard units

Suitable for non–weight-bearing activities

VO2

VO2 measured at rest = resting metabolic rate (RMR)

Exercise VO2 = submaximal VO2

Highest obtainable VO2 = VO2max or VO2peak

Does regular exercise training increase resting metabolic rate?

How many calories do I burn during recovery from exercising?

Oxygen Deficit and E.P.O.C.

“Aerobic”

supply of

energy

O2 need to preform the activity

Postexercise Oxygen Consumption

Oxygen deficit

Steady-state: all energy needed is provided by aerobic metabolism

Oxygen debt: oxygen taken in above resting values after exercise (EPOC)

Maximizing Recovery

Active recovery

Passive recovery

E.P.O.C.

Low intensity

Moderate intensity

Repeated

high intensity

About 10% of the calories burned during exercise are burned during recovery. May be greater with HIIT.

High Intensity Interval Exercise

Improved insulin sensitivity

Inhibition of glycolysis towards the end of HIIE

Greater increase in catecholamine release

Greater increase in GH

Greater decrease in appetite

Increase insulin sensitivity.

Possible fat metabolism mechanisms:

Inhibition of glycolysis causing an increase in fat oxidation towards the end of HIIE

Greater increase in catecholamine release

Greater increase in GH

Greater decrease in appetite

Ec0n0my of Effort

Training improves economy of effort

Successful Aerobic Athletes

High percentage of type I fibers

High VO2max

High lactate threshold

High economy of effort

Modifiable

Less Modifiable

What accounts for the differences between activities?

Also, need to account for duration of exercise.

Running at 10 mph = 18.2 kcal/min (for 30 minutes = 546 total calories)

Running at 7.5 mph = 14.0 kcal/min (for 60 minutes = 840 total calories)

But can you go more than half as long?

Treadmill exercise burns more calories at a similar level of perceived exertion (discomfort level) than other common types of exercise.

The End