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Sagot :
The Change is called ATP. For muscle to contract, ATP must be present in muscle fibers. ATP is offered from the subsequent sources:
inside the muscle fiber. ATP available in muscle fibers can sustain muscular contraction for several seconds. phosphocreatine. creatine phosphoric acid, a high-energy molecule stored in muscle cells, transfers its high-energy phosphate group to ADP to create ATP. creatine phosphoric acid in muscle cells can generate enough ATP to sustain shortening for about 15 seconds. Glucose stored in cells. Intracellular glucose is stored in carbohydrate glycogen. Through the organic process of glycogenolysis, glycogen is weakened to release glucose. metastasis then produces ATP from glucose. Glucose and fatty acids extracted from the bloodstream. When energy demand is high, glucose from glycogen stores within the liver and fatty acids from adipocytes and fat stores in the liver are released into the bloodstream. Glucose and fatty acids are haunted by muscle cells from the bloodstream. metastasis produces ATP from these high-energy molecules. internal respiration is that the process by which ATP is extracted from high-energy molecules. Several important metabolic pathways are involved, a number of which require the presence of oxygen. the most methods are summarized as follows.
Glycolysis breaks down glucose into pyruvate and produces two molecules of ATP within the absence of oxygen. the assembly of ATP without oxygen is termed anaerobic respiration, and glycolysis is named an anaerobic process because oxygen isn't employed in the varied metabolic steps of this pathway. During anaerobic respiration, pyruvate is converted to lactate. carboxylic acid is converted (via liver enzymes) to pyruvate, and within the presence of oxygen pyruvate can enter the mitochondria
Know more about Mitochondria;
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