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Featured ArticleBrief Communications

Arc Visualization of Odor Objects Reveals Experience-Dependent Ensemble Sharpening, Separation, and Merging in Anterior Piriform Cortex in Adult Rat

Amin MD. Shakhawat, Carolyn W. Harley and Qi Yuan
Journal of Neuroscience 30 July 2014, 34 (31) 10206-10210; https://doi.org/10.1523/JNEUROSCI.1942-14.2014
Amin MD. Shakhawat
1Biomedical Sciences, Faculty of Medicine and
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Carolyn W. Harley
2Department of Psychology, Faculty of Science, Memorial University of Newfoundland, St. John's, Newfoundland, Canada, A1B 3V6
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Qi Yuan
1Biomedical Sciences, Faculty of Medicine and
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    Figure 1.

    Contrast enhancement after odor associative learning. a1, Schematic of brain extraction protocol in naive rats (top) and example images for Arc+ cells (bottom). Blue indicates nuclei staining by DAPI. Red indicates Arc staining. White arrows indicate Arc staining in nuclei. Yellow arrows indicate Arc cytoplasm staining. Scale bar, 10 μm. a2, Overlap ratios (OLRs) of the cell ensembles of the two odor episodes. Cyto, cytoplasmic; PP, peppermint; VA, vanillin. b1, Schematic of odor associative training and brain extraction protocol. b2, Go–no-go behavioral paradigm (left) and percentage correct responses in the associative (Asso) group and the random group (right). b3, OLRs of the cell ensembles representing two peppermint episodes. b4, Percentage Arc+ cells over the number of total cells measured by DAPI staining. b5, OLRs of the cell ensembles representing two different odor episodes (peppermint and vanillin). *p < 0.05, **p < 0.01.

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    Figure 2.

    Odor mixture associative learning merges neuronal ensembles of odor components. a, Schematic of odor mixture associative training and brain extraction protocol. b1, Go–no-go behavioral paradigm (left) and percentage correct responses in the associative (Asso) group and the random group (right). b2, Representative images of Arc+ cells in the aPC (left) and overlap ratios (OLRs) of the cell ensembles representing peppermint (PP) and vanillin (VA; right). Arrows indicate double-stained Arc+ cells. Scale bar, 20 μm. *p < 0.05, **p < 0.01.

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    Figure 3.

    Similar odor discrimination learning promotes pattern separation. a, Schematic of similar odor discrimination training and brain extraction protocol. b1, Go–no-go behavioral paradigm (left) and percentage correct responses in the associative (Asso) group and the random group (right). b2, Representative images of Arc+ cells in the aPC (left) and overlap ratios (OLRs) of the cell ensembles representing S+ (1-heptanol plus 1-octanol, 53%/47% mixture) and S− (1-heptanol plus 1-octanol, 55%/45% mixture; right). Arrows indicate double-stained Arc+ cells. hept+Octa, 1-heptanol plus 1-octanol; Scale bar, 20 μm. **p < 0.01.

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The Journal of Neuroscience: 34 (31)
Journal of Neuroscience
Vol. 34, Issue 31
30 Jul 2014
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Arc Visualization of Odor Objects Reveals Experience-Dependent Ensemble Sharpening, Separation, and Merging in Anterior Piriform Cortex in Adult Rat
Amin MD. Shakhawat, Carolyn W. Harley, Qi Yuan
Journal of Neuroscience 30 July 2014, 34 (31) 10206-10210; DOI: 10.1523/JNEUROSCI.1942-14.2014

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Arc Visualization of Odor Objects Reveals Experience-Dependent Ensemble Sharpening, Separation, and Merging in Anterior Piriform Cortex in Adult Rat
Amin MD. Shakhawat, Carolyn W. Harley, Qi Yuan
Journal of Neuroscience 30 July 2014, 34 (31) 10206-10210; DOI: 10.1523/JNEUROSCI.1942-14.2014
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Keywords

  • Arc
  • catFISH
  • olfactory coding
  • olfactory learning
  • pattern separation
  • piriform

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