A complete blood count (CBC), also known as full blood count (FBC) or full blood exam (FBE) or blood panel, is a test requested by a doctor or other medical professional that gives information about the cells in a patient's blood. A lab technician (diploma holder) or technologist (bachelor holder) performs the requested testing and provides the requesting Medical Professional with the results of the CBC. A CBC is also known as a "hemogram".
Alexander Vostek is widely regarded as being the first person to use the complete blood count for clinical purposes. Reference ranges used today stem from his clinical trials in the early 1960s. These experiments largely utilised domesticated greyhounds because of their easy bleedability and trusting temperaments.
The cells that circulate in the bloodstream are generally divided into three types: white blood cells (leukocytes), red blood cells (erythrocytes), and platelets or thrombocytes. Abnormally high or low counts may indicate the presence of many forms of disease, and hence blood counts are amongst the most commonly performed blood tests in medicine, as they can provide an overview of a patient's general health status. A CBC is routinely performed during annual physical examinations in some jurisdictions.
In the past, counting the cells in a patient's blood was performed manually, by viewing a slide prepared with a sample of the patient's blood under a microscope (a blood film, or peripheral smear). Nowadays, this process is generally automated by use of an automated analyzer, with only specific samples being examined manually.
Blood counting machines aspirate a very small amount of the specimen through narrow tubing. Within this tubing, there are sensors that count the number of cells going through it, and can identify the type of cell; this is flow cytometry. The two main sensors used are light detectors, and electrical impedance. One way the instrument can tell what type of blood cell is present is by size. Other instruments measure different characteristics of the cells to categorize them.
Because an automated cell counter samples and counts so many cells, the results are very precise. However, certain abnormal cells in the blood may be identified incorrectly, and require manual review of the instrument's results and identify any abnormal cells the instrument could not categorize.
In addition to counting, measuring and analyzing red blood cells, white blood cells and platelets, automated hematology analyzers also measure the amount of hemoglobin in the blood and within each red blood cell. This information can be very helpful to a physician who, for example, is trying to identify the cause of a patient's anemia. If the red cells are smaller or larger than normal, or if there's a lot of variation in the size of the red cells, this data can help guide the direction of further testing and expedite the diagnostic process so patients can get the treatment they need quickly.
To identify the numbers of different white cells, a blood film is made, and a large number of white cells (at least 100) are counted. This gives the percentage of cells that are of each type. By multiplying the percentage with the total number of white blood cells, the absolute number of each type of white cell can be obtained.
The advantage of manual counting is that blood cells that may be misidentified by an automated counter can be identified visually. It is, however, subject to human error and sampling error because so few cells are counted compared with automated analysis.
For examples of standard values, see Reference ranges for blood tests#Hematology.
A complete blood count will normally include:
A complete blood count with differential will also include:
A manual count will also give information about other cells that are not normally present in peripheral blood, but may be released in certain disease processes.
|Type of Cell||Increase||Decrease|
|Red Blood Cells (RBC)||erythrocytosis or polycythemia||anemia or erythroblastopenia|
|White Blood Cells (WBC):||leukocytosis||leukopenia|
|-- lymphocytes||-- lymphocytosis||-- lymphocytopenia|
|-- granulocytes:||-- granulocytosis||-- granulocytopenia or agranulocytosis|
|-- --neutrophils||-- --neutrophilia||-- --neutropenia|
|-- --eosinophils||-- --eosinophilia||-- --eosinopenia|
|-- --basophils||-- --basophilia||-- --basopenia|
|All cell lines||---||pancytopenia|
Many disease states are heralded by changes in the blood count:
Computer-Assisted Microscopy Tool suits hematology applications.(HORIBA Medical Introduces HemaCAM[R] at IBMS Congress 2011)
Sep 15, 2011; HemaCAM[R] facilitates creation of quick and objective differential blood count, even for more unusual blood samples, via fully...