International audienceIn the mammalian brain, synaptic transmission usually depends on presynaptic action potentials (APs) in an all-or-none (or digital) manner. Recent studies suggest, however, that subthreshold depolarization in the presynaptic cell facilitates spike-evoked transmission, thus creating an analogue modulation of a digital process (or analogue–digital (AD) modulation). At most synapses, this process is slow and not ideally suited for the fast dynamics of neural networks. We show here that transmission at CA3–CA3 and L5–L5 synapses can be enhanced by brief presynaptic hyperpolarization such as an inhibitory postsynaptic potential (IPSP). Using dual soma–axon patch recordings and live imaging, we find that this hyperpolarizati...
International audienceSensory processing requires mechanisms of fast coincidence detection to discri...
Sensory processing requires mechanisms of fast coincidence detection to discriminate synchronous fro...
Sensory processing requires mechanisms of fast coincidence detection to discriminate synchronous fro...
International audienceIn the mammalian brain, synaptic transmission usually depends on presynaptic a...
International audienceIn the mammalian brain, synaptic transmission usually depends on presynaptic a...
International audienceIn the mammalian brain, synaptic transmission usually depends on presynaptic a...
In the mammalian brain, synaptic transmission usually depends on presynaptic action potentials (APs)...
Abstract In the mammalian brain, synaptic transmission usually depends on presynaptic action potenti...
In the mammalian brain, synaptic transmission usually depends on presynaptic action potentials (APs)...
International audienceSynaptic transmission usually depends on action potentials (APs) in an all-or-...
International audienceSynaptic transmission usually depends on action potentials (APs) in an all-or-...
Abstract Synaptic transmission usually depends on action potentials (APs) in an all‐or‐none (digital...
International audienceSensory processing requires mechanisms of fast coincidence detection to discri...
International audienceSensory processing requires mechanisms of fast coincidence detection to discri...
International audienceSensory processing requires mechanisms of fast coincidence detection to discri...
International audienceSensory processing requires mechanisms of fast coincidence detection to discri...
Sensory processing requires mechanisms of fast coincidence detection to discriminate synchronous fro...
Sensory processing requires mechanisms of fast coincidence detection to discriminate synchronous fro...
International audienceIn the mammalian brain, synaptic transmission usually depends on presynaptic a...
International audienceIn the mammalian brain, synaptic transmission usually depends on presynaptic a...
International audienceIn the mammalian brain, synaptic transmission usually depends on presynaptic a...
In the mammalian brain, synaptic transmission usually depends on presynaptic action potentials (APs)...
Abstract In the mammalian brain, synaptic transmission usually depends on presynaptic action potenti...
In the mammalian brain, synaptic transmission usually depends on presynaptic action potentials (APs)...
International audienceSynaptic transmission usually depends on action potentials (APs) in an all-or-...
International audienceSynaptic transmission usually depends on action potentials (APs) in an all-or-...
Abstract Synaptic transmission usually depends on action potentials (APs) in an all‐or‐none (digital...
International audienceSensory processing requires mechanisms of fast coincidence detection to discri...
International audienceSensory processing requires mechanisms of fast coincidence detection to discri...
International audienceSensory processing requires mechanisms of fast coincidence detection to discri...
International audienceSensory processing requires mechanisms of fast coincidence detection to discri...
Sensory processing requires mechanisms of fast coincidence detection to discriminate synchronous fro...
Sensory processing requires mechanisms of fast coincidence detection to discriminate synchronous fro...