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  2. Hyperkalemia - Wikipedia

    en.wikipedia.org/wiki/Hyperkalemia

    The serum potassium concentration at which electrocardiographic changes develop is somewhat variable. Although the factors influencing the effect of serum potassium levels on cardiac electrophysiology are not entirely understood, the concentrations of other electrolytes, as well as levels of catecholamines, play a major role.

  3. Potassium in biology - Wikipedia

    en.wikipedia.org/wiki/Potassium_in_biology

    The sodium–potassium pump a critical enzyme for regulating sodium and potassium levels in cells. Potassium is the main intracellular ion for all types of cells, while having a major role in maintenance of fluid and electrolyte balance. [1] [2] Potassium is necessary for the function of all living cells and is thus present in all plant and ...

  4. Hypokalemia - Wikipedia

    en.wikipedia.org/wiki/Hypokalemia

    Normal potassium levels in humans are between 3.5 and 5.0 mmol/L (3.5 and 5.0 mEq/L) with levels below 3.5 mmol/L defined as hypokalemia. [1] [2] It is classified as severe when levels are less than 2.5 mmol/L. [1] Low levels may also be suspected based on an electrocardiogram (ECG). [1]

  5. Hypokalemic periodic paralysis - Wikipedia

    en.wikipedia.org/wiki/Hypokalemic_periodic_paralysis

    As a result, the muscle cannot contract efficiently (paralysis). The condition is hypokalemic (manifests when potassium is low; not "causing hypokalemia") because a low extracellular potassium ion concentration will cause the muscle to repolarise to the resting potential more quickly, so even if calcium conductance does occur it cannot be ...

  6. Homeostasis - Wikipedia

    en.wikipedia.org/wiki/Homeostasis

    The best-known homeostatic mechanisms in humans and other mammals are regulators that keep the composition of the extracellular fluid (or the "internal environment") constant, especially with regard to the temperature, pH, osmolality, and the concentrations of sodium, potassium, glucose, carbon dioxide, and oxygen.

  7. Exertional rhabdomyolysis - Wikipedia

    en.wikipedia.org/wiki/Exertional_rhabdomyolysis

    Intracellular potassium ion has deleterious effects on the heart's ability to generate action potentials leading to cardiac arrhythmias. [11] Consequently, this can affect peripheral and central perfusion which in turn can affect all major organ systems in the body.

  8. Muscular system - Wikipedia

    en.wikipedia.org/wiki/Muscular_system

    Three distinct types of muscle (L to R): Smooth (non-striated) muscle in internal organs, cardiac or heart muscle, and skeletal muscle. There are three distinct types of muscle: skeletal muscle, cardiac or heart muscle, and smooth (non-striated) muscle. Muscles provide strength, balance, posture, movement, and heat for the body to keep warm. [3]

  9. Potassium-aggravated myotonia - Wikipedia

    en.wikipedia.org/wiki/Potassium-aggravated_myotonia

    Potassium-aggravated myotonia ranges in severity from mild episodes of muscle stiffness to severe, disabling disease with frequent attacks. Potassium-aggravated myotonia may, in some cases, also cause paradoxical myotonia, in which myotonia becomes more severe at the time of movement instead of after movement has ceased.