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  2. Blood urea nitrogen - Wikipedia

    en.wikipedia.org/wiki/Blood_urea_nitrogen

    BUN is an indication of kidney health. The normal range is 2.1–7.1 mmol/L or 6–20 mg/dL. [1]The main causes of an increase in BUN are: high-protein diet, decrease in glomerular filtration rate (GFR) (suggestive of kidney failure), decrease in blood volume (hypovolemia), congestive heart failure, gastrointestinal hemorrhage, [5] fever, rapid cell destruction from infections, athletic ...

  3. 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 ...

  4. Urea-to-creatinine ratio - Wikipedia

    en.wikipedia.org/wiki/Urea-to-creatinine_ratio

    For the adult male, the normal range is 0.6 to 1.2 mg/dl, or 53 to 106 μmol/L by the kinetic or enzymatic method, and 0.8 to 1.5 mg/dl, or 70 to 133 μmol/L by the older manual Jaffé reaction. For the adult female, with her generally lower muscle mass, the normal range is 0.5 to 1.1 mg/dl, or 44 to 97 μmol/L by the enzymatic method.

  5. Creatinine - Wikipedia

    en.wikipedia.org/wiki/Creatinine

    One mg/dL of creatinine equals 88.4 μmol/L. The typical human reference ranges for serum creatinine are 0.5 mg/dL to 1.0 mg/dL (about 45 μmol/L to 90 μmol/L) for women and 0.7 mg/dL to 1.2 mg/dL (60 μmol/L to 110 μmol/L) for men. The significance of a single creatinine value must be interpreted in light of the patient's muscle mass.

  6. Reference ranges for blood tests - Wikipedia

    en.wikipedia.org/wiki/Reference_ranges_for_blood...

    mg/dL Full blood glucose (fasting) 3.3 [5] 5.6 [5] mmol/L 60 [177] 100 [177] mg/dL Random glucose: 3.9 [178] 7.8 [178] mmol/L 70 [179] 140 [179] mg/dL Lactate (Venous) 4.5 [23] 19.8 [23] mg/dL: 0.5 [180] 2.2 [180] mmol/L: Lactate (Arterial) 4.5 [23] 14.4 [23] mg/dL: 0.5 [180] 1.6 [180] mmol/L: Pyruvate: 300 [23] 900 [23] μg/dL: 34 [181] 102 ...

  7. Plasma osmolality - Wikipedia

    en.wikipedia.org/wiki/Plasma_Osmolality

    Calculated osmolarity = 2 Na + Glucose + Urea (all in mmol/L) As Na+ is the major extracellular cation, the sum of osmolarity of all other anions can be assumed to be equal to natremia, hence [Na+]x2 ≈ [Na+] + [anions] To calculate plasma osmolality use the following equation (typical in the US): = 2[Na +

  8. Blood sugar level - Wikipedia

    en.wikipedia.org/wiki/Blood_sugar_level

    Unit conversion formula from mmol/L to mg/dL [5] m g / d L = m m o l / L × m o l e c u l a r w e i g h t ÷ 10 {\displaystyle mg/dL=mmol/L\times molecular\ weight\div 10} Since the molecular mass of glucose C 6 H 12 O 6 is 180.156 g/mol, the factor between the two units is about 18, so 1 mmol/L of glucose is equivalent to 18 mg/dL.

  9. CSF glucose - Wikipedia

    en.wikipedia.org/wiki/CSF_glucose

    Therefore, normal CSF glucose levels lie between 2.5 and 4.4 mmol/L (45–80 mg/dL). [5] Abnormalities in CSF glucose concentration. Low CSF glucose levels