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Data
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NMDAR & GABAB/KIR Give Bistable Dendrites: Working Memory & Sequence Readout (Sanders et al., 2013)
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" ...Here, we show that the voltage dependence of the inwardly rectifying potassium (KIR) conductance activated by GABA(B) receptors adds substantial robustness to network simulations of bistability and the persistent firing that it underlies. The hyperpolarized state is robust because, at hyperpolarized potentials, the GABA(B)/KIR conductance is high and the NMDA conductance is low; the depolarized state is robust because, at depolarized potentials, the NMDA conductance is high and the GABA(B)/KIR conductance is low. Our results suggest that this complementary voltage dependence of GABA(B)/KIR and NMDA conductances makes them a "perfect couple" for producing voltage bistability."
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Sanders H, Berends M, Major G, Goldman MS, Lisman JE (2013) Show
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Sanders H, Kolterman BE, Shusterman R, Rinberg D, Koulakov A, Lisman J (2014) Show
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Sanders, Honi [honi at brandeis.edu] Show
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honi@brandeis.edu
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Dendritic Bistability
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Sanders, Honi <honi@brandeis.edu>
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23303922, 25278870
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