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Reference ranges (reference intervals) for blood tests are sets of values used by a health professional to interpret a set of medical test results from blood samples. Reference ranges for blood tests are studied within the field of clinical chemistry (also known as "clinical biochemistry", "chemical pathology" or "pure blood chemistry"), the ...
There is no level of BNP that perfectly separates patients with and without heart failure. [10] In screening for congenital heart disease in pediatric patients, an NT-proBNP cut-off value of 91 pg/mL could differentiate an acyanotic heart disease (ACNHD) patient from a healthy patient with a sensitivity of 84% and specificity of 42%. [11]
The BNP test is also used for the risk stratification of patients with acute coronary syndromes. [42] [43] When interpreting an elevated BNP level, values may be elevated due to factors other than heart failure. Lower levels are often seen in obese patients. [44] Higher levels are seen in those with renal disease, in the absence of heart failure.
The standard definition of a reference range for a particular measurement is defined as the interval between which 95% of values of a reference population fall into, in such a way that 2.5% of the time a value will be less than the lower limit of this interval, and 2.5% of the time it will be larger than the upper limit of this interval, whatever the distribution of these values.
The version with seven tests is often referred to by medical professionals in the United States as the "CHEM-7", or "SMA-7" (Sequential Multiple Analysis-7). [1] The seven parts of a CHEM-7 are tests for: Four electrolytes: sodium (Na +) [2] potassium (K +) [3] chloride (Cl −) [4] bicarbonate (HCO 3 −) or CO 2 [5] blood urea (BU), blood ...
The reference range for total protein is typically 60-80g/L. (It is also sometimes reported as "6.0-8.0g/dl"), [2] but this may vary depending on the method of analysis. Concentrations below the reference range usually reflect low albumin concentration, for instance in liver disease or acute infection.
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B-type natriuretic peptide (BNP) and its pro hormone NT-proBNP are especially useful in diagnosing heart failure, as their levels in the blood increase along with the severity of the condition. [3] Rapid testing of BNP and NT-proBNP can also help distinguish between shortness of breath due to heart and lung-related causes.