The calculation places responses to S+ in the numerator and the combined responses to S+ and S− in the denominator: S+ divided by S+ plus S−. This denominator represents responding across both comparison stimuli, so the result reflects allocation toward the reinforced or target stimulus rather than the S+ response count alone. Consistent response categories support meaningful comparisons.
A value approaching one indicates that responding is concentrated on S+, showing stronger stimulus control. In contrast, a lower value indicates that responses are distributed more broadly across S+ and S−, suggesting weaker discrimination or more generalized responding. The ratio therefore provides a compact way to describe how selectively an individual or animal responds during behavioral testing.
S+ and S− provide the comparison required to determine whether responding is selective. Responses to S+ alone cannot show how behavior differs from responding to the nonreinforced stimulus. Including both categories allows the calculation to represent the relative preference for the target stimulus and to distinguish stronger discrimination from broader, less selective responding.
Training conditions can be evaluated by calculating the ratio under each condition and comparing the resulting values. An increase toward one indicates stronger selective responding to S+, whereas a decrease suggests weaker stimulus control or more generalized responding. This comparison helps researchers examine changes in behavior associated with different training arrangements or experimental interventions.
First, record the number of responses directed toward S+ and the number directed toward S−. Next, add the two response counts to obtain the total for both stimuli. Finally, divide the S+ response count by that combined total. The resulting value can then be used to evaluate selectivity and compare behavioral performance across experimental conditions.
This measure is useful when researchers need to quantify behavioral discrimination rather than describe it only in qualitative terms. It can be applied while examining learning, stimulus control, memory, or behavioral changes following experimental interventions. Comparing ratios across conditions shows whether responding becomes more selective for the target stimulus or remains broadly distributed.
In learning and memory studies, the ratio provides an outcome for tracking how selectively an individual or animal responds to the relevant stimulus. Higher values indicate stronger control by S+, while lower values indicate weaker discrimination or generalized responding. Researchers can compare these outcomes across training conditions or interventions to assess changes in behavioral performance.