337 results found
    1. Neuroscience

    Dendritic Na+ spikes enable cortical input to drive action potential output from hippocampal CA2 pyramidal neurons

    Qian Sun et al.
    In the hippocampus, dendritic Na + spikes are required for signals from the entorhinal cortex to drive action potentials in CA2-but not CA1 or CA3-pyramidal neurons.
    1. Neuroscience

    Dendritic sodium spikes are required for long-term potentiation at distal synapses on hippocampal pyramidal neurons

    Yujin Kim et al.
    At distal synapses onto hippocampal CA1 pyramidal neurons, synaptic plasticity is dependent on dendritically initiated sodium spikes, thus establishing a new role for voltage-gated sodium channels in the dendrites that may have important implications for how learning rules are implemented.
    1. Cell Biology
    2. Neuroscience

    Ablation of SNX6 leads to defects in synaptic function of CA1 pyramidal neurons and spatial memory

    Yang Niu et al.
    SNX6 regulates the distribution of a protein called Homer1b/c to distal dendrites, enabling the latter to stabilize the synapses and thereby support memory formation.
    1. Neuroscience

    Plasticity-dependent, full detonation at hippocampal mossy fiber–CA3 pyramidal neuron synapses

    Nicholas P Vyleta et al.
    Activity-dependent enhancement of transmitter release makes the hippocampal mossy fiber synapse a full detonator in rats.
    1. Neuroscience

    NPAS4 recruits CCK basket cell synapses and enhances cannabinoid-sensitive inhibition in the mouse hippocampus

    Andrea L Hartzell et al.
    Behaviorally-driven expression of the immediate early gene transcription factor NPAS4 changes local circuit connectivity and short-term plasticity by selectively recruiting CCK basket cell synapses to pyramidal neuron somas.
    1. Neuroscience

    Sex Difference: What does cannabis do to the brain before birth?

    Stefano Musardo, Camilla Bellone
    Being exposed to cannabinoids in the womb has different consequences for male and female rats. .
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    1. Neuroscience

    Navigation: Shedding light on stellate cells

    Andrew S Alexander, Michael E Hasselmo
    The relationship between grid cells and two types of neurons found in the medial entorhinal cortex has been clarified.
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    1. Computational and Systems Biology
    2. Neuroscience

    Deep Learning: Branching into brains

    Adam Shai, Matthew Evan Larkum
    What can artificial intelligence learn from neuroscience, and vice versa?.
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