Odor representations in the rat olfactory bulb change smoothly with morphing stimuli
- PMID: 18304486
- PMCID: PMC2258318
- DOI: 10.1016/j.neuron.2008.01.008
Odor representations in the rat olfactory bulb change smoothly with morphing stimuli
Abstract
Many species of mammals are very good at categorizing odors. One model for how this is achieved involves the formation of "attractor" states in the olfactory processing pathway, which converge to stable representations for the odor. We analyzed the responses of rat olfactory bulb mitral/tufted (M/T) cells using stimuli "morphing" from one odor to another through intermediate mixtures. We then developed a phenomenological model for the representation of odors and mixtures by M/T cells and show that >80% of odorant responses to different concentrations and mixtures can be expressed in terms of smoothly summing responses to air and the two pure odorants. Furthermore, the model successfully predicts M/T cell responses to odor mixtures when respiration dependence is eliminated. Thus, odor mixtures are represented in the bulb through summation of components, rather than distinct attractor states. We suggest that our olfactory coding model captures many aspects of single and mixed odor representation in M/T cells.
Figures
References
-
- Amit D. Cambridge Univ. Press; New York: 1989. Modelling Brain Function: The World of Attractor Neural Networks.
-
- Bhalla U.S., Bower J.M. Multiday recordings from olfactory bulb neurons in awake freely moving rats: spatially and temporally organized variability in odorant response properties. J. Comput. Neurosci. 1997;4:221–256. - PubMed
-
- Broome B.M., Jayaraman V., Laurent G. Encoding and decoding of overlapping odor sequences. Neuron. 2006;51:467–482. - PubMed
-
- Chalansonnet M., Chaput M.A. Olfactory bulb output cell temporal response patterns to increasing odor concentrations in freely breathing rats. Chem. Senses. 1998;23:1–9. - PubMed
Publication types
MeSH terms
Substances
Grants and funding
LinkOut - more resources
Full Text Sources
