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  2. Hematocrit - Wikipedia

    en.wikipedia.org/wiki/Hematocrit

    The hematocrit (/ h ɪ ˈ m æ t ə k r ɪ t /) (Ht or HCT), also known by several other names, is the volume percentage (vol%) of red blood cells (RBCs) in blood, [1] [2] measured as part of a blood test. [3] The measurement depends on the number and size of red blood cells. [3] It is normally 40.7–50.3% for males and 36.1–44.3% for ...

  3. Red blood cell indices - Wikipedia

    en.wikipedia.org/wiki/Red_blood_cell_indices

    Mean corpuscular volume (MCV) is the average volume of a red blood cell and is calculated by dividing the hematocrit (Hct) by the concentration of red blood cell count. [citation needed] = [] Normal range: 80–100 fL (femtoliter)

  4. Reticulocyte production index - Wikipedia

    en.wikipedia.org/wiki/Reticulocyte_production_index

    This calculation is to correct for the severity of the anemia. A value of 45% (or 0,45 L/L) is usually used as a normal hematocrit for males. [4] 2.The next step is to correct for the longer life span of prematurely released reticulocytes in the blood—a phenomenon of increased red blood cell production. This relies on a table:

  5. Anemia in pregnancy - Wikipedia

    en.wikipedia.org/wiki/Anemia_in_pregnancy

    - Second trimester hemoglobin < 10.5 g/dL - Third trimester hemoglobin < 11 g/dL - Postpartum hemoglobin < 10 g/dL Listed below are normal ranges for important lab values in the diagnosis of anemia. Keep in mind that these ranges might change based on each patient's stage in pregnancy: [7] - Hemoglobin: Men (13.6-16.9), women (11.9-14.8)

  6. Hyperchloremic acidosis - Wikipedia

    en.wikipedia.org/wiki/Hyperchloremic_acidosis

    Hyperchloremic acidosis is a form of metabolic acidosis associated with a normal anion gap, a decrease in plasma bicarbonate concentration, and an increase in plasma chloride concentration [1] (see anion gap for a fuller explanation).

  7. Volume of distribution - Wikipedia

    en.wikipedia.org/wiki/Volume_of_distribution

    In pharmacology, the volume of distribution (V D, also known as apparent volume of distribution, literally, volume of dilution [1]) is the theoretical volume that would be necessary to contain the total amount of an administered drug at the same concentration that it is observed in the blood plasma. [2]