Brainstem sensing of multiple body signals during food consumption.
Dense calcium imaging reveals that specific neuron clusters in the mouse LPBN encode distinct interoceptive signals during food intake, with activity patterns mirroring gastrointestinal movement.
- Why it matters: Understanding how the brainstem integrates diverse body signals is crucial for comprehending feeding behavior and interoception, yet this neural organization remains poorly characterized.
- What they did: Researchers developed methods to image hundreds of LPBN neurons in mice, capturing activity during food consumption and identifying neuron subsets linked to oral, gastric, and visceral signals over multiple days.
- The result: Findings demonstrate that the LPBN contains spatially organized neuron groups encoding different interoceptive cues, some modulated by cortical input, providing a platform to explore how these signals influence behavior.