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The Insular Taste Cortex Contributes to Odor Quality Coding

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Specialty Neurology
Date 2010 Aug 12
PMID 20700500
Citations 40
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Abstract

Despite distinct peripheral and central pathways, stimulation of both the olfactory and the gustatory systems may give rise to the sensation of sweetness. Whether there is a common central mechanism producing sweet quality sensations or two discrete mechanisms associated independently with gustatory and olfactory stimuli is currently unknown. Here we used fMRI to determine whether odor sweetness is represented in the piriform olfactory cortex, which is thought to code odor quality, or in the insular taste cortex, which is thought to code taste quality. Fifteen participants sampled two concentrations of a pure sweet taste (sucrose), two sweet food odors (chocolate and strawberry), and two sweet floral odors (lilac and rose). Replicating prior work we found that olfactory stimulation activated the piriform, orbitofrontal and insular cortices. Of these regions, only the insula also responded to sweet taste. More importantly, the magnitude of the response to the food odors, but not to the non-food odors, in this region of insula was positively correlated with odor sweetness rating. These findings demonstrate that insular taste cortex contributes to odor quality coding by representing the taste-like aspects of food odors. Since the effect was specific to the food odors, and only food odors are experienced with taste, we suggest this common central mechanism develops as a function of experiencing flavors.

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References
1.
Veldhuizen M, Bender G, Constable R, Small D . Trying to detect taste in a tasteless solution: modulation of early gustatory cortex by attention to taste. Chem Senses. 2007; 32(6):569-81. DOI: 10.1093/chemse/bjm025. View

2.
Bartoshuk L, Duffy V, Green B, Hoffman H, Ko C, Lucchina L . Valid across-group comparisons with labeled scales: the gLMS versus magnitude matching. Physiol Behav. 2004; 82(1):109-14. DOI: 10.1016/j.physbeh.2004.02.033. View

3.
Gottfried J, Winston J, Dolan R . Dissociable codes of odor quality and odorant structure in human piriform cortex. Neuron. 2006; 49(3):467-79. DOI: 10.1016/j.neuron.2006.01.007. View

4.
Schoenfeld M, Neuer G, Tempelmann C, Schussler K, Noesselt T, Hopf J . Functional magnetic resonance tomography correlates of taste perception in the human primary taste cortex. Neuroscience. 2004; 127(2):347-53. DOI: 10.1016/j.neuroscience.2004.05.024. View

5.
Bartoshuk L, McBurney D, PFAFFMANN C . TASTE OF SODIUM CHLORIDE SOLUTIONS AFTER ADAPTATION TO SODIUM CHLORIDE: IMPLICATIONS FOR THE "WATER TASTE". Science. 1964; 143(3609):967-8. DOI: 10.1126/science.143.3609.967. View