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Intrinsic and circuit properties favor coincidence detection for decoding oscillatory input.
J Neurosci. 2004 Jun 30;24(26):6037-47. doi: 10.1523/JNEUROSCI.1084-04.2004.
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Oscillations and sparsening of odor representations in the mushroom body.
Science. 2002 Jul 19;297(5580):359-65. doi: 10.1126/science.1070502.
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From synchrony to sparseness.
Trends Neurosci. 2003 Feb;26(2):61-4. doi: 10.1016/s0166-2236(02)00016-4.
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Intensity versus identity coding in an olfactory system.
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Odorant-induced oscillations in the mushroom bodies of the locust.
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Synaptic learning rules and sparse coding in a model sensory system.
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Normalization for sparse encoding of odors by a wide-field interneuron.
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Oscillatory integration windows in neurons.
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Feed-Forward versus Feedback Inhibition in a Basic Olfactory Circuit.
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Sparsening and temporal sharpening of olfactory representations in the honeybee mushroom bodies.
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Reductionist modeling of calcium-dependent dynamics in recurrent neural networks.
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Sleep prevents catastrophic forgetting in spiking neural networks by forming a joint synaptic weight representation.
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Effect of Circuit Structure on Odor Representation in the Insect Olfactory System.
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Feedback inhibition and its control in an insect olfactory circuit.
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In-situ recording of ionic currents in projection neurons and Kenyon cells in the olfactory pathway of the honeybee.
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