Dentate gyrus mossy cells control spontaneous convulsive seizures and spatial memory
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Title
Dentate gyrus mossy cells control spontaneous convulsive seizures and spatial memory
Authors
Keywords
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Journal
SCIENCE
Volume 359, Issue 6377, Pages 787-790
Publisher
American Association for the Advancement of Science (AAAS)
Online
2018-02-21
DOI
10.1126/science.aan4074
References
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- Crucial Roles of the Endocannabinoid 2-Arachidonoylglycerol in the Suppression of Epileptic Seizures
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- Young adult born neurons enhance hippocampal dependent performance via influences on bilateral networks
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- Differential Recruitment of Dentate Gyrus Interneuron Types by Commissural Versus Perforant Pathways
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- In vivoevaluation of the dentate gate theory in epilepsy
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- The neuron-specific chromatin regulatory subunit BAF53b is necessary for synaptic plasticity and memory
- (2013) Annie Vogel-Ciernia et al. NATURE NEUROSCIENCE
- Closed-loop optogenetic intervention in mice
- (2013) Caren Armstrong et al. Nature Protocols
- Differential Control of Learning and Anxiety along the Dorsoventral Axis of the Dentate Gyrus
- (2013) Mazen A. Kheirbek et al. NEURON
- On-demand optogenetic control of spontaneous seizures in temporal lobe epilepsy
- (2013) Esther Krook-Magnuson et al. Nature Communications
- Mnemonic representations of transient stimuli and temporal sequences in the rodent hippocampus in vitro
- (2012) Robert A Hyde et al. NATURE NEUROSCIENCE
- Hilar Mossy Cell Degeneration Causes Transient Dentate Granule Cell Hyperexcitability and Impaired Pattern Separation
- (2012) Seiichiro Jinde et al. NEURON
- Stereologic estimation of hippocampal GluR2/3- and calretinin-immunoreactive hilar neurons (presumptive mossy cells) in two mouse models of temporal lobe epilepsy
- (2011) Florian Volz et al. EPILEPSIA
- Molecular and Cellular Approaches for Diversifying and Extending Optogenetics
- (2010) Viviana Gradinaru et al. CELL
- Recurrent seizures induce a reversible impairment in a spatial hidden goal task
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