Section Editor: Christopher McCudden Ph.D., DABCC, FADLM, FCACB
September 15, 2026
MCV stands for mean corpuscular volume. It measures the average size of your red blood cells, the cells that carry oxygen throughout your body. Doctors don’t order MCV on its own. It is one of the results that appears automatically with a complete blood count, often shortened to CBC.
This article explains what MCV measures and what a high or low result can mean. It also explains why doctors find red blood cell size so useful when working out the cause of anemia.
The reference range that applies to your result is the one printed on your laboratory report, not the typical ranges shown here. Reference ranges vary between laboratories based on the equipment used, the population tested, and individual factors such as age, sex, and pregnancy status. Always compare your result to the reference range printed on your own report, and discuss any abnormal result with your doctor.
Your bone marrow, the soft tissue inside your bones, makes red blood cells. When the marrow has everything it needs, it produces cells of a fairly uniform size. When something is missing or interfering, the cells it makes come out too small or too large.
The laboratory analyzer measures many thousands of your red blood cells and reports the average size. That average is your MCV. Because different causes of anemia change cell size in different directions, MCV is often the first clue to why your blood count is low.
Your report may show MCV in femtolitres, written fL, printed next to a reference range. A typical adult range is about 80 to 100 fL, and exact ranges vary by laboratory
Anemia means there are not enough healthy red blood cells to carry oxygen well. Anemia is not a diagnosis on its own. It is a finding that needs an explanation, and MCV is one of the fastest ways to narrow that explanation down.
Doctors group anemia into three types by cell size. Small cells are called microcytic, normal-sized cells normocytic, and large cells macrocytic. Each group points toward a different set of causes, so knowing the MCV turns a long list of possibilities into a short one. That is why MCV is reported even when nobody asks about it specifically.
MCV is measured on a small sample of blood, usually taken from a vein in your arm. No fasting is needed. It is calculated automatically as part of a complete blood count, so you do not need to request it separately.
If your MCV is abnormal, your doctor may ask the laboratory to examine a blood smear. This is a drop of your blood spread on a glass slide and looked at under a microscope. It shows the shape and appearance of individual cells rather than an average.
MCV is read alongside your hemoglobin, your hematocrit, and the other red cell measurements.
An MCV slightly outside the range with a normal hemoglobin is a common and often unimportant finding. The combination of MCV and hemoglobin gives it meaning.
Common reasons MCV can be low
Common reasons MCV can be high
MCV can be normal even when the cells are not. If you have both iron deficiency, which makes cells small, and B12 deficiency, which makes them large, the average can land in the normal range while neither problem is normal. This is one reason the RDW result, which measures how much cell size varies, is read alongside MCV.
A mildly abnormal MCV with a normal hemoglobin is often repeated, particularly if you feel well. Many people run slightly outside the printed range without any problem, and your own previous results are the most useful comparison.
If your hemoglobin is low as well, your doctor uses the MCV to decide which tests to order next. A low MCV usually prompts iron studies. A high MCV usually prompts vitamin B12 and folate testing, along with questions about alcohol and a review of your medicines. Treatment addresses the cause rather than the MCV itself, and the cell size returns toward normal as the underlying problem is corrected. This takes weeks to months, because red blood cells live for around four months and the population has to turn over.
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