Understanding the Three Energy Systems Used During Exercise (2024)

CAMP HUMPHREYS, South Korea - In recognition of National Nutrition Month, Jessica Pastino, a registered dietitian at Brian D. Allgood Army Community Hospital here, takes the opportunity to share the knowledge of performance nutrition to help you bring maximum results to your fitness goals.

Have you ever experienced tiredness in your muscles while working out and you couldn’t continue exercising after a certain point? Have you wondered what can make you lift heavier weights or run longer than you can today? If you have, understanding the mechanism of the body's energy system can help you find answers to these questions.

Three metabolic pathways generate the energy required to perform an exercise: the phosphagen pathway, the glycolytic pathway, and the oxidative pathway, together known as the energy systems. Although your body is always using all three simultaneously, depending on the intensity and duration of the exercise, your body will choose from which pathway it will use the largest percentage of its energy.

As you may know, all energy used by our bodies is generated from the breakdown of food and drink. The three macronutrients are protein, carbohydrate, and fat. Those are metabolized to create adenosine triphosphate, which is the source of fuel for all body processes, including muscle contraction.

Unfortunately, the supply of readily available ATP is very limited. It means our bodies constantly have to produce the substance; otherwise, muscle contraction would stop. This re-synthesis of ATP is done by the three energy systems.

The first 10 to 20 seconds of high-intensity physical activity is fueled by the “ATP-CP,” also known as the phosphagen energy system. Once the available ATP is used up, which occurs in a few seconds, a molecule called phosphocreatine is used to re-form ATP in the muscle. This energy system operates very quickly and can bring the highest output of the three systems. However, it is limited by the availability of creatine phosphate, which is usually consumed within 15 seconds.

Your body can eventually refill these stores when you rest. This is why this system is most active for athletes who engage in short bouts of very intense, explosive movement, such as a the 50-meter dash or powerlifting. This is also the reason we can sprint at full speed for only a few seconds or lift maximum loads only 1-2 times before requiring rest or a decrease in exercise intensity using another metabolic pathway.

The second pathway, the glycolytic pathway, is the primary energy system used for exercise lasting from 15 seconds to three minutes. People running an 800-meter event, for example, use this pathway the most. This energy system uses the glucose stored in the muscle, broken down primarily from carbohydrates, to form ATP. The benefit of this pathway is that it kicks in quickly, but it doesn’t make very much energy; it can only supply a maximum of about three minutes of energy. This pathway is responsible for the buildup of lactic acid in our muscles, which contributes to fatigue.

For exercise lasting longer than three minutes, the oxidative pathway is used. Unlike the others, this energy system requires oxygen. The increase in respiratory rate meets the oxygen demand during physical activity. The oxidative system is slow, but is also the most efficient. Using fat as its primary energy substrate, it produces enough ATP to sustain longer duration activities, but only at submaximal exercise output. It means fat is the predominant fuel source used during low to moderate-intensity activity, like biking or jogging long distances.

Now you are more knowledgeable on how your body relies on each of these systems working together to meet the energy demands needed for activities of daily living and exercise.

The system your body will use primarily depends on the type of activities you mostly engage in. The more you train in that particular type of exercise, the better your body adapts to being able to efficiently use that energy system.

For example, individuals who have trained in powerlifting can store more phosphocreatine and ATP than a marathon runner or sedentary individual. On the other hand, endurance-trained individuals have better ventilation ability, maximizing oxygen availability for the oxidative pathway. At the end of the day, consistency is key. If you want to excel at a particular type of exercise, just keep doing it and in time, your body will adapt.

Interested in learning more about how you can adjust your diet to best fuel your exercise? Book an appointment with your on-post dietitian and unlock the power of nutrition to achieve your performance goals.

Brian D. Allgood Army Community Hospital's nutrition clinic offers both face-to-face and virtual appointments with a dietitian, covering a variety of range of nutrition goals and needs. Make an appointment today by calling DSN: 315-737-1570.

Understanding the Three Energy Systems Used During Exercise (2024)

FAQs

What are the three energy systems used during exercise? ›

The body uses 3 different systems to supply cells with the necessary ATP to fuel energy needs. They are the creatine phosphate (ATP-PC), the anaerobic lactate (Glycolysis), and the aerobic systems.

What are the 3 main types of energy used by the body during exercise? ›

Three metabolic pathways generate the energy required to perform an exercise: the phosphagen pathway, the glycolytic pathway, and the oxidative pathway, together known as the energy systems.

Are there three primary energy systems utilized by exercising muscles? ›

To sustain muscle contraction, ATP needs to be regenerated at a rate complementary to ATP demand. Three energy systems function to replenish ATP in muscle: (1) Phosphagen, (2) Glycolytic, and (3) Mitochondrial Respiration.

What are the three categories of energy used by the body? ›

There are three major categories of energy expenditure: basal or resting metabolic rate, energy burned during physical activity, and energy burned to digest food.

What are the 3 energy systems of the body quizlet? ›

Q-Chat
  • Phosphagen system.
  • Glycolysis system (lactic acid)
  • Aerobic system.

What are the three body systems involved in physical activity? ›

When a person takes part in exercise the cardiovascular, respiratory, energy and muscular systems all work together to supply energy to the working muscles and remove waste products. When the muscles start to work, they need more oxygen so the respiratory system responds by getting more oxygen into the lungs.

What are the 3 types of energy and explain their use? ›

There are many types of energy, including kinetic energy, the energy produced by movement; mechanical energy, movement energy when something turns; light energy, the energy of light; sound energy, the energy of sound; chemical energy, energy stored in chemicals, like food or batteries; electrical energy, energy ...

What are the 3 types of exercise and explain each? ›

The three main types of physical activity are aerobic, muscle strengthening, and bone strengthening. Balance and flexibility activities are also beneficial. Aerobic activity is the type that benefits your heart and lungs the most.

What are 3 forms of active energy? ›

English
  • hydropower (energy from moving water)
  • geothermal energy (heat energy from the earth)
  • energy from the sun (solar)
  • wind power.
  • earth's biomass (such as wood)

What are the 3 primary systems that benefit from physical activity? ›

Regular physical activity is essential for maintaining a healthy body, and it positively impacts various systems in the body. The cardiovascular system, musculoskeletal system, and respiratory system are three key body systems that greatly benefit from regular physical activity.

What are the three primary forms of energy the body uses? ›

Our daily food choices resupply the potential energy, or fuel, that the body requires to continue to function normally. This energy takes three forms: carbohydrate, fat, and protein. (See table 2.1, Estimated Energy Stores in Humans.)

What are the three types of energy sources that the body uses? ›

Humans obtain energy from three classes of fuel molecules: carbohydrates, lipids, and proteins.

What are the three energy systems during exercise? ›

There are three major energy systems the body utilizes: Aerobic system. Anaerobic (lactate) system. Phosphagen system (immediate use)

What are the 3 basic energy systems group of answer choices? ›

Three basic energy systems exist in human muscle cells to replenish ATP: The phosphagen system (ATP-CP) Glycolysis. The oxidative system.

What are the 3 main energy sources called? ›

Primary energy sources take many forms, including nuclear energy, fossil energy -- like oil, coal and natural gas -- and renewable sources like wind, solar, geothermal and hydropower.

What are the 3 parts of the energy system? ›

The 3 energy systems, namely the aerobic oxidative system, anaerobic system, and phosphagen energy system, work together to provide energy for the body's functions. The aerobic oxidative system is an efficient system for the generation of ATP, but is not quick and requires the presence of oxygen.

What are the energy sources for exercise? ›

Thus, the major sources of energy during exercise are carbohydrates and fats. Sources of carbohydrates for the muscle include blood glucose, muscle glycogen, and liver glycogen. Glucose and glycogen are converted to glucose-6-phosphate before they can be used to generate energy.

What is the ATP PCr system during exercise? ›

An anaerobic energy system in which the generation of ATP is coupled with the exergonic (energy-releasing) breakdown of phosphocreatine stored in muscle cells. The breakdown frees inorganic phosphate, which then combines with ADP to form ATP. The ATP-PCr system is the quickest source of ATP for muscle actions.

What is the anaerobic alactic ATP CP energy system? ›

The anaerobic alactic (without oxygen, without lactic acid) or ATP-CP system is fueled by stored ATP and another high energy substance, creatine phosphate (CP). Because these fuel stores are relatively small, the immediate system only supplies energy for up to about 10 seconds of high intensity activity.

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