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A Multisensory Network for Olfactory Processing

Overview
Journal Curr Biol
Publisher Cell Press
Specialty Biology
Date 2015 Oct 7
PMID 26441351
Citations 36
Authors
Affiliations
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Abstract

Primary gustatory cortex (GC) is connected (both mono- and polysynaptically) to primary olfactory (piriform) cortex (PC)-connections that might be hypothesized to underlie the construction of a "flavor" percept when both gustatory and olfactory stimuli are present. Here we use multisite electrophysiology and optical inhibition of GC neurons (GCx, produced via infection with ArchT) to demonstrate that, indeed, during gustatory stimulation, taste-selective information is transmitted from GC to PC. We go on to show that these connections impact olfactory processing even in the absence of gustatory stimulation: GCx alters PC responses to olfactory stimuli presented alone, enhancing some and eliminating others, despite leaving the path from nasal epithelium to PC intact. Finally, we show the functional importance of this latter phenomenon, demonstrating that GCx renders rats unable to properly recognize odor stimuli. This sequence of findings suggests that sensory processing may be more intrinsically integrative than previously thought.

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References
1.
Haberly L . Parallel-distributed processing in olfactory cortex: new insights from morphological and physiological analysis of neuronal circuitry. Chem Senses. 2001; 26(5):551-76. DOI: 10.1093/chemse/26.5.551. View

2.
Han X, Chow B, Zhou H, Klapoetke N, Chuong A, Rajimehr R . A high-light sensitivity optical neural silencer: development and application to optogenetic control of non-human primate cortex. Front Syst Neurosci. 2011; 5:18. PMC: 3082132. DOI: 10.3389/fnsys.2011.00018. View

3.
Wallace M, Ramachandran R, Stein B . A revised view of sensory cortical parcellation. Proc Natl Acad Sci U S A. 2004; 101(7):2167-72. PMC: 357070. DOI: 10.1073/pnas.0305697101. View

4.
Maier J, Wachowiak M, Katz D . Chemosensory convergence on primary olfactory cortex. J Neurosci. 2012; 32(48):17037-47. PMC: 3525522. DOI: 10.1523/JNEUROSCI.3540-12.2012. View

5.
Schroeder C, Foxe J . The timing and laminar profile of converging inputs to multisensory areas of the macaque neocortex. Brain Res Cogn Brain Res. 2002; 14(1):187-98. DOI: 10.1016/s0926-6410(02)00073-3. View