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One or more keywords matched the following items that are connected to Nicholson, Daniel
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Concept Pyramidal Cells
Academic Article Evidence for Alzheimer's disease-linked synapse loss and compensation in mouse and human hippocampal CA1 pyramidal neurons.
Academic Article Aging-Related Hyperexcitability in CA3 Pyramidal Neurons Is Mediated by Enhanced A-Type K+ Channel Function and Expression.
Academic Article Synaptic strength and postsynaptically silent synapses through advanced aging in rat hippocampal CA1 pyramidal neurons.
Academic Article Differential expression of HCN subunits alters voltage-dependent gating of h-channels in CA1 pyramidal neurons from dorsal and ventral hippocampus.
Academic Article Balanced synaptic impact via distance-dependent synapse distribution and complementary expression of AMPARs and NMDARs in hippocampal dendrites.
Academic Article Axospinous synaptic subtype-specific differences in structure, size, ionotropic receptor expression, and connectivity in apical dendritic regions of rat hippocampal CA1 pyramidal neurons.
Academic Article Distance-dependent differences in synapse number and AMPA receptor expression in hippocampal CA1 pyramidal neurons.
Academic Article Synapse distribution suggests a two-stage model of dendritic integration in CA1 pyramidal neurons.
Academic Article The Dendrites of CA2 and CA1 Pyramidal Neurons Differentially Regulate Information Flow in the Cortico-Hippocampal Circuit.
Academic Article Store depletion-induced h-channel plasticity rescues a channelopathy linked to Alzheimer's disease.
Academic Article HCN channels in the hippocampus regulate active coping behavior.
Academic Article Cognitive aging is associated with redistribution of synaptic weights in the hippocampus.
Academic Article Variability in sub-threshold signaling linked to Alzheimer's disease emerges with age and amyloid plaque deposition in mouse ventral CA1 pyramidal neurons.
Academic Article Frequency-Dependent Synaptic Dynamics Differentially Tune CA1 and CA2 Pyramidal Neuron Responses to Cortical Input.
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