Keyphrases
Platelet-derived Growth Factor Receptor (PDGFR)
100%
Platelet-derived Growth factor-BB (PDGF-BB)
100%
Nucleus Tractus Solitarius
23%
Mutant Mice
23%
Basic Fibroblast Growth Factor (bFGF)
23%
Inhibitory Effect
15%
Neural Differentiation
7%
Synaptic Transmission
7%
Biotin
7%
Direct Injection
7%
Receptor Gene
7%
N-methyl-D-aspartate Receptor (NMDAR)
7%
Receptor Function
7%
Conditional Deletion
7%
Neuronal Differentiation
7%
Induced Current
7%
Receptor-mediated
7%
Cerebral Hemispheres
7%
Postnatal Stage
7%
Cerebral Injury
7%
Receptor Expression
7%
Apoptosis
7%
Inhibitory Action
7%
Second-order Neuron
7%
End-labelling
7%
Neural Stem Cells
7%
Slice Patch Clamp
7%
Lesion Formation
7%
Postsynaptic Mechanisms
7%
Functional Significance
7%
Neuronal Cell Death
7%
Signal Convergence
7%
Excitatory Input
7%
Novel mutant
7%
AMPA Receptor (AMPAR)
7%
Primary Afferent
7%
Mammalian CNS
7%
AMPA Receptor Function
7%
CNS Neurons
7%
Phosphorylation
7%
Patch-clamp Technique
7%
Biochemistry, Genetics and Molecular Biology
Platelet-Derived Growth Factor Receptor
100%
Platelet-Derived Growth Factor
77%
Platelet Derived Growth Factor Receptor Beta
55%
Mouse Mutant
33%
Amino Methyl Phosphonic Acid
22%
AMPA Receptor
22%
N-Methyl-D-Aspartic Acid
22%
Stem Cell
11%
Biotin
11%
Cell Death
11%
TUNEL Assay
11%
Cell Damage
11%
Synaptic Transmission
11%
Platelet Derived Growth Factor B
11%
Programmed Cell Death
11%
Postsynaptic Mechanism
11%
Receptor Gene
11%
NMDA Receptor
11%
Promoter Region
11%
Nerve Cell Differentiation
11%
Patch Clamp
11%
Neuroscience
Platelet-Derived Growth Factor Receptor
100%
Platelet Derived Growth Factor BB
55%
AMPA Receptor
22%
N-Methyl-D-Aspartic Acid
22%
AMPA
22%
Platelet-Derived Growth Factor
22%
Neuronal Cell Death
11%
TUNEL Assay
11%
Patch Clamp
11%
Neural Stem Cell
11%
NMDA Receptor
11%
Biotin
11%
Cell Damage
11%
Synaptic Transmission
11%
Postsynaptic Mechanism
11%
Platelet Derived Growth Factor B
11%
Programmed Cell Death
11%
Nerve Cell Differentiation
11%
Receptor Gene
11%
Receptor Expression
11%
Promoter Region
11%