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  2. Plasma osmolality - Wikipedia

    en.wikipedia.org/wiki/Plasma_Osmolality

    Whereas osmolality (with an "l") is defined as the number of osmoles (Osm) of solute per kilogram of solvent (osmol/kg or Osm/kg), osmolarity (with an "r") is defined as the number of osmoles of solute per liter (L) of solution (osmol/L or Osm/L). As such, larger numbers indicate a greater concentration of solutes in the plasma.

  3. Balanced salt solution - Wikipedia

    en.wikipedia.org/wiki/Balanced_salt_solution

    The pH is approximately 7.5. The osmolality is approximately 300 mOsm/Kg. [3] ... Composition per 1 mL (once preparation complete): sodium chloride 7.14 mg (122.17 ...

  4. Osmotic concentration - Wikipedia

    en.wikipedia.org/wiki/Osmotic_concentration

    In simpler terms, osmolality is an expression of solute osmotic concentration per mass of solvent, whereas osmolarity is per volume of solution (thus the conversion by multiplying with the mass density of solvent in solution (kg solvent/litre solution). =

  5. Stool osmotic gap - Wikipedia

    en.wikipedia.org/wiki/Stool_osmotic_gap

    [2] 290 mOsm/kg is the presumed stool osmolality, and the measured concentration of sodium and potassium cations is doubled to account for the corresponding anions which must be present. [citation needed] A normal gap is between 50 and 100 mOsm/kg, [3] corresponding to the concentration of other solutes such as magnesium salts and sugars ...

  6. Osmotic coefficient - Wikipedia

    en.wikipedia.org/wiki/Osmotic_coefficient

    For liquid solutions, the osmotic coefficient is often used to calculate the salt activity coefficient from the solvent activity, or vice versa. For example, freezing point depression measurements, or measurements of deviations from ideality for other colligative properties, allows calculation of the salt activity coefficient through the osmotic coefficient.

  7. Osmol gap - Wikipedia

    en.wikipedia.org/wiki/Osmol_gap

    The osmol gap is typically calculated with the following formula (all values in mmol/L): = = ([+] + [] + []) In non-SI laboratory units: Calculated osmolality = 2 x [Na mmol/L] + [glucose mg/dL] / 18 + [BUN mg/dL] / 2.8 + [ethanol/3.7] [3] (note: the values 18 and 2.8 convert mg/dL into mmol/L; the molecular weight of ethanol is 46, but empiric data shows that it does not act as an ideal ...

  8. Iohexol - Wikipedia

    en.wikipedia.org/wiki/Iohexol

    The osmolality of iohexol ranges from 322 mOsm/kg—approximately 1.1 times that of blood plasma—to 844 mOsm/kg, almost three times that of blood. [11] Despite this difference, iohexol is still considered a low-osmolality contrast agent; the osmolality of older agents, such as diatrizoate, may be more than twice as high.

  9. Vitreous body - Wikipedia

    en.wikipedia.org/wiki/Vitreous_body

    300: μg/mL [14] No Albumin: 293 ± 18: μg/cm 3 ... mg/dL water [12] No Creatinine: 0.3–3.0: ... Osmolality: 289.5: mOsm/kg [11] Yes

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