What the test is expected to resolve
Each result leaves some uncertainty behind. Average that remaining uncertainty over how often each result occurs, subtract it from the starting uncertainty, and you have the expected diagnostic information in bits. Dividing by the starting uncertainty gives the share resolved (in statistics, the uncertainty coefficient). With several result levels the same average runs over every level.
I = H(p) − Σ P(result)·H(p after that result) · share = I ÷ H(p)
What one result does
A result moves the probability of disease (the likelihood ratio, expressed as a signed weight of evidence in bits, log₂ LR). Uncertainty after a result can be larger or smaller than before: a weak positive can move a rare diagnosis toward 50:50 and widen it. The size of the probability update itself is never negative; weighting it by how often each result occurs gives the expected information back.
Where the map comes from
273 pooled estimates from 210 diagnostic reviews (Cochrane, PubMed Central, OSF and Zenodo sources), each fitted with the same bivariate random-effects model with a continuity correction, equally weighted. Starting probabilities are analytical conditions, not prevalence estimates. The map describes published diagnostic evidence, not all of medicine.
Information is not clinical value. Choosing an action also needs the consequences of a missed or false-alarm result and the patient's preferences, which this page does not model.