journal article Aug 27, 2014

Bidirectional switch of the valence associated with a hippocampal contextual memory engram

View at Publisher Save 10.1038/nature13725
Topics

No keywords indexed for this article. Browse by subject →

References
28
[1]
Pavlov, I. P. Conditioned Reflexes: An Investigation of the Physiological Activity of the Cerebral Cortex (Oxford Univ. Press, 1927)
[2]
Wolpe, J. Psychotherapy by Reciprocal Inhibition (Stanford Univ. Press, 1958)
[3]
Optogenetic stimulation of a hippocampal engram activates fear memory recall

Xingguo Liu, Steve Ramirez, Petti T. Pang et al.

Nature 2012 10.1038/nature11028
[4]
Creating a False Memory in the Hippocampus

Steve Ramirez, Xingguo Liu, Pei-Ann Lin et al.

Science 2013 10.1126/science.1239073
[5]
Muramoto, K., Ono, T., Nishijo, H. & Fukuda, M. Rat amygdaloid neuron responses during auditory discrimination. Neuroscience 52, 621–636 (1993) 10.1016/0306-4522(93)90411-8
[6]
Schoenbaum, G., Chiba, A. A. & Gallagher, M. Neural encoding in orbitofrontal cortex and basolateral amygdala during olfactory discrimination learning. J. Neurosci. 19, 1876–1884 (1999) 10.1523/jneurosci.19-05-01876.1999
[7]
The primate amygdala represents the positive and negative value of visual stimuli during learning

Joseph J. Paton, Marina A. Belova, Sara E. Morrison et al.

Nature 2006 10.1038/nature04490
[8]
Shabel, S. J. & Janak, P. H. Substantial similarity in amygdala neuronal activity during conditioned appetitive and aversive emotional arousal. Proc. Natl Acad. Sci. USA 106, 15031–15036 (2009) 10.1073/pnas.0905580106
[9]
Amano, T., Duvarci, S., Popa, D. & Paré, D. The fear circuit revisited: contributions of the basal amygdala nuclei to conditioned fear. J. Neurosci. 31, 15481–15489 (2011) 10.1523/jneurosci.3410-11.2011
[10]
Sangha, S., Chadick, J. Z. & Janak, P. H. Safety encoding in the basal amygdala. J. Neurosci. 33, 3744–3751 (2013) 10.1523/jneurosci.3302-12.2013
[11]
Teyler, T. J. & DiScenna, P. The hippocampal memory indexing theory. Behav. Neurosci. 100, 147–154 (1986) 10.1037/0735-7044.100.2.147
[12]
Rudy, J. W. & O’Reilly, R. C. Contextual fear conditioning, conjunctive representations, pattern completion, and the hippocampus. Behav. Neurosci. 113, 867–880 (1999) 10.1037/0735-7044.113.5.867
[13]
Localization of a Stable Neural Correlate of Associative Memory

Leon G. Reijmers, Brian L. Perkins, Naoki Matsuo et al.

Science 2007 10.1126/science.1143839
[14]
Schiltz, C. A., Bremer, Q. Z., Landry, C. F. & Kelley, A. E. Food-associated cues alter forebrain functional connectivity as assessed with immediate early gene and proenkephalin expression. BMC Biol. 5, 16 (2007) 10.1186/1741-7007-5-16
[15]
Identification of a Functional Connectome for Long-Term Fear Memory in Mice

Anne L. Wheeler, Cátia M. Teixeira, Afra H. Wang et al.

PLOS Computational Biology 2013 10.1371/journal.pcbi.1002853
[16]
Kim, J., Kwon, J. T., Kim, H. S., Josselyn, S. A. & Han, J. H. Memory recall and modifications by activating neurons with elevated CREB. Nature Neurosci. 17, 65–72 (2014) 10.1038/nn.3592
[17]
Huff, M. L., Miller, R. L., Deisseroth, K., Moorman, D. E. & LaLumiere, R. T. Posttraining optogenetic manipulations of basolateral amygdala activity modulate consolidation of inhibitory avoidance memory in rats. Proc. Natl Acad. Sci. USA 110, 3597–3602 (2013) 10.1073/pnas.1219593110
[18]
Malkesman, O. et al. The female urine sniffing test: a novel approach for assessing reward-seeking behavior in rodents. Biol. Psychiatry 67, 864–871 (2010) 10.1016/j.biopsych.2009.10.018
[19]
Kiyokawa, Y., Hiroshima, S., Takeuchi, Y. & Mori, Y. Social buffering reduces male rats’ behavioral and corticosterone responses to a conditioned stimulus. Horm. Behav. 65, 114–118 (2014) 10.1016/j.yhbeh.2013.12.005
[20]
Maren, S. & Fanselow, M. S. Synaptic plasticity in the basolateral amygdala induced by hippocampal formation stimulation in vivo. J. Neurosci. 15, 7548–7564 (1995) 10.1523/jneurosci.15-11-07548.1995
[21]
Maren, S. & Hobin, J. A. Hippocampal regulation of context-dependent neuronal activity in the lateral amygdala. Learn. Mem. 14, 318–324 (2007) 10.1101/lm.477007
[22]
Herry, C. et al. Switching on and off fear by distinct neuronal circuits. Nature 454, 600–606 (2008) 10.1038/nature07166
[23]
Stuber, G. D. et al. Excitatory transmission from the amygdala to nucleus accumbens facilitates reward seeking. Nature 475, 377–380 (2011) 10.1038/nature10194
[24]
Neuronal Competition and Selection During Memory Formation

Jin-Hee Han, Steven A. Kushner, Adelaide P. Yiu et al.

Science 2007 10.1126/science.1139438
[25]
Choi, G. B. et al. Driving opposing behaviors with ensembles of piriform neurons. Cell 146, 1004–1015 (2011) 10.1016/j.cell.2011.07.041
[26]
Franklin, K. B. J. & Paxinos, G. The Mouse Brain in Stereotaxic Coordinates (Academic Press, 2008)
[27]
Calcagnetti, D. J. & Schechter, M. D. Nicotine place preference using the biased method of conditioning. Prog. Neuropsychopharmacol. Biol. Psychiatry 18, 925–933 (1994) 10.1016/0278-5846(94)90108-2
[28]
Blumstein, D. T. & Daniel, J. C. Quantifying Behavior the JWatcher Way (Sinauer Associates, 2007)
Cited By
437
Memory formation in the absence of experience

Gisella Vetere, Lina M. Tran · 2019

Nature Neuroscience
Metrics
437
Citations
28
References
Details
Published
Aug 27, 2014
Vol/Issue
513(7518)
Pages
426-430
License
View
Cite This Article
Roger L. Redondo, Joshua Kim, Autumn L. Arons, et al. (2014). Bidirectional switch of the valence associated with a hippocampal contextual memory engram. Nature, 513(7518), 426-430. https://doi.org/10.1038/nature13725
Related

You May Also Like

Deep learning

Yann LeCun, Yoshua Bengio · 2015

78,982 citations

Highly accurate protein structure prediction with AlphaFold

John Jumper, Richard Evans · 2021

42,787 citations

Helical microtubules of graphitic carbon

Sumio Iijima · 1991

38,201 citations

Collective dynamics of ‘small-world’ networks

Duncan J. Watts, Steven H. Strogatz · 1998

33,426 citations