Temporal characteristics of gustatory responses in rat parabrachial neurons vary by stimulus and chemosensitive neuron type.

PLoS One

Division of Oral Biology, College of Dentistry, the Ohio State University, Columbus, Ohio, United States of America.

Published: May 2014

AI Article Synopsis

  • The study investigates how the timing of neural responses influences taste processing, specifically in parabrachial neurons reacting to different taste stimuli like sweet, salty, sour, and bitter.
  • Results showed that taste timing varies by stimulus, initially producing similar responses for salty and sour, but diverging for bitter after 500 ms, with all tastes becoming distinct after 1 second.
  • Enhanced information from timing was largely attributed to changes in response rate, particularly in the first 2 seconds, with specific neuron types showing different impacts on taste discrimination and certain neurons significantly benefiting from bursts of activity, especially those responding to bitter.

Article Abstract

It has been demonstrated that temporal features of spike trains can increase the amount of information available for gustatory processing. However, the nature of these temporal characteristics and their relationship to different taste qualities and neuron types are not well-defined. The present study analyzed the time course of taste responses from parabrachial (PBN) neurons elicited by multiple applications of "sweet" (sucrose), "salty" (NaCl), "sour" (citric acid), and "bitter" (quinine and cycloheximide) stimuli in an acute preparation. Time course varied significantly by taste stimulus and best-stimulus classification. Across neurons, the ensemble code for the three electrolytes was similar initially but quinine diverged from NaCl and acid during the second 500 ms of stimulation and all four qualities became distinct just after 1s. This temporal evolution was reflected in significantly broader tuning during the initial response. Metric space analyses of quality discrimination by individual neurons showed that increases in information (H) afforded by temporal factors was usually explained by differences in rate envelope, which had a greater impact during the initial 2s (22.5% increase in H) compared to the later response (9.5%). Moreover, timing had a differential impact according to cell type, with between-quality discrimination in neurons activated maximally by NaCl or citric acid most affected. Timing was also found to dramatically improve within-quality discrimination (80% increase in H) in neurons that responded optimally to bitter stimuli (B-best). Spikes from B-best neurons were also more likely to occur in bursts. These findings suggest that among PBN taste neurons, time-dependent increases in mutual information can arise from stimulus- and neuron-specific differences in response envelope during the initial dynamic period. A stable rate code predominates in later epochs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3790754PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0076828PLOS

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