Perception and neural representation of intermittent odor stimuli in mice

L Luis E. Boero H Hao Wu J Joseph D. Zak P Paul Masset F Farhad Pashakhanloo (Center for Brain Science) S Siddharth Jayakumar B Bahareh Tolooshams D Demba Ba V Venkatesh N. Murthy (Center for Brain Science)

Abstract

Abstract Odor cues in nature are sparse and fluctuating due to turbulent transport. To investigate how animals perceive these intermittent cues, we developed a behavioral task in which mice made binary decisions based on the total number of discrete odor pulses presented stochastically over several seconds. Mice quickly learned this task, placing higher perceptual weight to stimuli arriving during inhalation than exhalation, a phase dependency that strongly correlated with the magnitude of responses in olfactory sensory neurons. Neurons in the anterior piriform cortex responded to odor pulses with varying degrees of dependence on respiration phase. Single cortical neurons responded stochastically and transiently to odor pulses, leading to a representation that carries signatures of sensory evidence, but not its accumulation. Our study reveals that mice can integrate intermittent odor signals across dozens of breaths and that respiratory modulation imposes limits on sensory information acquisition that cortical circuits cannot overcome to improve behavior.

Article Details

Volume / Issue Vol. 17, Issue 1
Published April 29, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (9)

L

Luis E. Boero

H

Hao Wu

J

Joseph D. Zak

P

Paul Masset

F

Farhad Pashakhanloo

Center for Brain Science

S

Siddharth Jayakumar

B

Bahareh Tolooshams

D

Demba Ba

V

Venkatesh N. Murthy

Center for Brain Science