HOMA-IR Calculator
Insulin resistance score from fasting glucose and fasting insulin using the Matthews 1985 HOMA-IR formula. Includes HOMA-Beta and QUICKI.
HOMA-IR Formula Examples
HOMA-IR = fasting insulin × fasting glucose / 405 with glucose in mg/dL, or divided by 22.5 with glucose in mmol/L.
| Fasting glucose | Fasting insulin | HOMA-IR | Formula basis |
|---|---|---|---|
| 80 mg/dL | 4 µU/mL | 0.79 | 4 × 80 / 405 |
| 90 mg/dL | 5 µU/mL | 1.11 | 5 × 90 / 405 |
| 100 mg/dL | 10 µU/mL | 2.47 | 10 × 100 / 405 |
| 110 mg/dL | 15 µU/mL | 4.07 | 15 × 110 / 405 |
| 120 mg/dL | 20 µU/mL | 5.93 | 20 × 120 / 405 |
Frequently Asked Questions about the HOMA-IR Calculator
What does HOMA-IR actually measure?
HOMA-IR (Homeostatic Model Assessment of Insulin Resistance) is a surrogate index of how well your body responds to insulin, calculated from a single pair of fasting blood draws: (fasting insulin in uIU/mL x fasting glucose in mg/dL) / 405. Matthews and colleagues published the model in Diabetologia in 1985 to give researchers a cheap proxy for the hyperinsulinemic-euglycemic clamp, which is the gold standard but takes hours and requires an IV infusion. A higher HOMA-IR means your pancreas is secreting more insulin to keep glucose in range, which is the hallmark of insulin resistance. HOMA-Beta, calculated alongside, estimates how hard your beta cells are working; QUICKI is a log-transformed sensitivity index from the same two inputs.
How do I interpret the HOMA-IR cutoffs?
There is no universal clinical HOMA-IR cutoff. Values vary with the insulin assay, laboratory, age, puberty, population, body composition, and study definition. The calculator's under 1.0, 1.0 to 1.9, 2.0 to 2.9, and 3.0 or higher bands are internal descriptive labels, not diagnostic categories. Interpret a laboratory result with its method and a clinician rather than using the band to diagnose insulin resistance or diabetes.
Why does HOMA-IR require a fasting blood draw?
The Matthews 1985 model assumes you are in the basal state, meaning at least 8 to 12 hours without food or caloric drinks. After a meal, insulin rises sharply for several hours and glucose follows a curve back to baseline; plugging post-meal values into the HOMA-IR equation would massively overestimate insulin resistance. The model also assumes you have not exercised vigorously that morning, are not acutely ill, and are not on medications that acutely shift insulin (such as a recent steroid dose). For the cleanest reading, draw blood first thing in the morning after a normal overnight fast, before any breakfast, coffee, or workout.
How do I enter glucose if my lab reports mmol/L instead of mg/dL?
Toggle the units switch above the input from imperial (mg/dL, the US convention) to metric (mmol/L, used by the rest of the world). The calculator converts internally using the standard glucose molecular weight factor of 18.0156 mg/dL per mmol/L. The Matthews 1985 paper actually published the formula using mmol/L glucose with a denominator of 22.5 (22.5 x 18.0156 is about 405), so both unit systems give the same HOMA-IR; only the input scale changes. As reference points, fasting glucose of 100 mg/dL equals 5.55 mmol/L, and 126 mg/dL (the ADA diabetes diagnostic threshold) equals 7.0 mmol/L.
How does HOMA-IR compare with an OGTT or the glucose clamp?
HOMA-IR is inexpensive and uses one fasting blood draw, which makes it useful in population research. Its trade-off is limited individual precision and dependence on the insulin assay. A hyperinsulinemic-euglycemic clamp directly measures insulin sensitivity but needs an infusion and several hours. An oral glucose tolerance test measures glucose handling over time. A clinician can decide whether any of these tests is useful in context.
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