Supraoptic Nucleus

Glia-Derived d-Serine Controls NMDA Receptor Activity and Synaptic Memory

Long Term Potentiation / Lactation / Synaptic Plasticity / Patch-clamp and imaging techniques / Signal Transduction / Biological Sciences / Glutamate / Female / Animals / Cell / Astrocyte / Supraoptic Nucleus / Synaptic Transmission / Neurons / Astrocytes / Rats / SYNAPSES / Wistar Rats / Nervous System / Biological Sciences / Glutamate / Female / Animals / Cell / Astrocyte / Supraoptic Nucleus / Synaptic Transmission / Neurons / Astrocytes / Rats / SYNAPSES / Wistar Rats / Nervous System

Glia-Derived d-Serine Controls NMDA Receptor Activity and Synaptic Memory

Long Term Potentiation / Lactation / Synaptic Plasticity / Patch-clamp and imaging techniques / Signal Transduction / Biological Sciences / Glutamate / Female / Animals / Cell / Astrocyte / Supraoptic Nucleus / Synaptic Transmission / Neurons / Astrocytes / Rats / SYNAPSES / Wistar Rats / Nervous System / Biological Sciences / Glutamate / Female / Animals / Cell / Astrocyte / Supraoptic Nucleus / Synaptic Transmission / Neurons / Astrocytes / Rats / SYNAPSES / Wistar Rats / Nervous System

Glia-Derived d-Serine Controls NMDA Receptor Activity and Synaptic Memory

Long Term Potentiation / Lactation / Synaptic Plasticity / Patch-clamp and imaging techniques / Signal Transduction / Biological Sciences / Glutamate / Female / Animals / Cell / Astrocyte / Supraoptic Nucleus / Synaptic Transmission / Neurons / Astrocytes / Rats / SYNAPSES / Wistar Rats / Nervous System / Biological Sciences / Glutamate / Female / Animals / Cell / Astrocyte / Supraoptic Nucleus / Synaptic Transmission / Neurons / Astrocytes / Rats / SYNAPSES / Wistar Rats / Nervous System
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