Why the study?
Unraveling synaptic interactions between excitatory and inhibitory interneurons in rhythmic neural circuits is critical for deciphering circuit interactions and functional architecture.
Population
Rhythmically active interneurons within key microcircuits of the mature rat brainstem respiratory CPG
Design
Preclinical analytic and experimental study
Authors
Loading...
Offers high-resolution synaptic analysis in respiratory circuits; leaves open translation to clinical models.
Presents a novel analytic technique to infer synaptic conductance profiles in rhythmically active neural circuits, demonstrated in rat brainstem respiratory CPGs.
Molkov et al. (2025) studied this question.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: