Related Experiment Video
Updated: May 22, 2026

New Methods to Study Gustatory Coding
Published on: June 29, 2017
Effects of selective adaptation on coding sugar and salt tastes in mixtures
Marion E Frank1, Holly F Goyert, Bradley K Formaker
1Department of Oral Health and Diagnostic Sciences, Division of Periodontology, Center for Chemosensory Sciences, School of Dental Medicine, University of Connecticut Health Center, Farmington, CT 06030-1715, USA. mfrank@neuron.uchc.edu
Abstract:
Little is known about coding of taste mixtures in complex dynamic stimulus environments. A protocol developed for odor stimuli was used to test whether rapid selective adaptation extracted sugar and salt component tastes from mixtures as it did component odors. Seventeen human subjects identified taste components of "salt + sugar" mixtures. In 4 sessions, 16 adapt-test stimulus pairs were presented as atomized, 150-μL "taste puffs" to the tongue tip to simulate odor sniffs. Stimuli were NaCl, sucrose, "NaCl + sucrose," and water. The sugar was 98% identified but the suppressed salt 65% identified in unadapted mixtures of 2 concentrations of NaCl, 0.1 or 0.05 M, and sucrose at 3 times those concentrations, 0.3 or 0.15 M. Rapid selective adaptation decreased identification of sugar and salt preadapted ambient components to 35%, well below the 74% self-adapted level, despite variation in stimulus concentration and adapting time (<5 or >10 s). The 96% identification of sugar and salt extra mixture components was as certain as identification of single compounds. The results revealed that salt-sugar mixture suppression, dependent on relative mixture-component concentration, was mutual. Furthermore, like odors, stronger and recent tastes are emphasized in dynamic experimental conditions replicating natural situations.
Related Concept Videos
Gustation
The Physiology of Taste
Taste Buds and Receptors
Conditioned Taste Aversion
A notable characteristic of conditioned taste aversion is that it often requires only a single exposure...
Responses to Salt Stress
Factors Influencing Microbial Growth: Osmolarity

