Neuroscience
Synapse
100%
Olfactory Bulb
94%
Aspartic Acid
93%
Eicosanoid Receptor
92%
Granule Cell
90%
Glutamic Acid
87%
NMDA Receptor
65%
Agonist
60%
Glutamate Receptor
59%
Excitatory Postsynaptic Potential
55%
Dentate Gyrus
47%
Gamma-Aminobutyric Acid
40%
Synaptic Transmission
39%
Binding Site
29%
N-Methyl-D-Aspartic Acid
28%
Dendrite
27%
Action Potential
27%
AMPA Receptor
25%
In Vitro
24%
Metabotropic Receptor
22%
Voltage Clamp
21%
Hippocampus
19%
Axon
19%
Potassium Current
18%
Ifenprodil
18%
Membrane Potential
18%
Metabotropic Glutamate Receptor
18%
GABAA Receptor
18%
Channel Gating
17%
Reversal Potential
17%
Dendritic Spine
16%
L-AP4
16%
In Vivo
15%
Behavior (Neuroscience)
15%
Purkinje Cell
15%
2 Amino 4 Phosphonobutyric Acid
15%
Quisqualic Acid
15%
AMPA
15%
Gap Junction
15%
Excitability
14%
C-Terminus
14%
AP5
14%
Central Nervous System
14%
Receptor down Regulation
14%
Kainic Acid
13%
Neurotransmitter
13%
Neurogenesis
13%
Evoked Potential
12%
Calcium Current
12%
Olfactory Receptor Neuron
12%
Keyphrases
N-methyl-D-aspartate Receptor (NMDAR)
67%
Spontaneous Excitatory Postsynaptic Current (sEPSC)
35%
Olfactory Bulb
33%
Glutamate
31%
Cultured Hippocampal Neurons
28%
Metabotropic Glutamate Receptor
27%
Spinal Motor Neurons
26%
Receptor-mediated
21%
Granule Cell
20%
Mitral Cells
19%
N-methyl-D-aspartate
17%
NR2A
16%
Mg2+
15%
Binding Site
15%
Newborn Neurons
15%
Glutamate Receptors
15%
Zinc
14%
Amino
14%
Kainate
13%
Hippocampal Neurons
13%
Mouse Spinal Cord
13%
Conductance
12%
Knockdown
12%
Dentate Gyrus
12%
Voltage Clamp
12%
Tufted Cell
11%
Desensitization
11%
Acid Response
11%
AMPA Receptor (AMPAR)
11%
MGluR7
11%
Synaptic
10%
Metabotropic Glutamate Receptor 7
10%
Dendrite Inhibition
10%
MiR-132
10%
Activation Kinetics
10%
Quisqualate
10%
C-terminus
9%
Glycine
9%
NR2 Subunit
9%
Hippocampus
9%
Reversal Potential
9%
NR2B
9%
Glomerulus
8%
Membrane Potential
8%
Synapse
8%
Run-down
8%
Depolarization
8%
Transmitter
7%
Mitral
7%
Competitive Antagonist
7%