anatomy and physiology + atp resynthesis

As the name suggests the ATP-PC system consists of adenosine triphosphate (ATP) and phosphocreatine (PC). This energy system provides immediate energy through the breakdown of these stored high energy phosphates. If this energy system is 'fully stocked' it will provide energy for maximal intensity, short duration
Every single thing you do depends on your bodies ability to produce ATP. Learn all about this fascinating molecule of energy by reading this page.
These small increases in energy requirement immediately disrupt the balance between ATP and ADP and Pi, which stimulate several systems to increase energy transfer from stored energy-containing compounds within the cell (phosphocreatine and other macronutrients) to resynthesize ATP and restore balance.
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There are two systems within Anaerobic metabolism, which are the ATP-PC system and the lactic acid system. ... of energy, the molecules of Carbon, Hydrogen, Oxygen and Nitrogen which make up our food are stored as a high energy molecule known as ATP or Adenosine Triphosphate. More Anatomy & Physiology
The process of breaking down and resynthesising ATP is efficient at producing energy as less energy is required to resynthesis the ATP than is made to break it down. Here is the Resynthesis ... The Anaerobic system can be divided into two further systems, ATP-PC and Lactic acid. All energy ... More Anatomy & Physiology
When you begin to exercise your body must immediately adjust to the change in activity level. Energy production must increase to meet demand with changes to the...
Glycolysis converts glucose to pyruvate, water and NADH, producing two molecules of ATP. Excess pyruvate is converted to lactic acid which causes muscle fatigue. Cellular respiration produces further molecules of ATP from pyruvate in the mitochondria. It is also required to resynthesize glycogen from lactic acid and
Cellular respiration oxidizes glucose molecules through glycolysis, the Krebs cycle, and oxidative phosphorylation to produce ATP. .... (also called the citric acid cycle or tricarboxylic acid cycle); converted into lactic acid or alcohol (in yeast) by fermentation; or used later for the synthesis of glucose through gluconeogenesis.
The food we eat, in the form of carbohydrates, fats and proteins, is used as fuel for reactions in the body that make us 'alive'. To utilize these fuels for muscle action, the body converts them to a common 'energy currency', called adenosine tri-phosphate (ATP). There are essentially two mechanisms for producing ATP, the

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