Neuroscience
In Vitro
100%
Hippocampus
74%
Substantia Nigra Pars Compacta
67%
Substantia nigra
50%
Dendrite
44%
Serotonin
32%
Action Potential
31%
Nifedipine
29%
2-Deoxy-D-Glucose
27%
Excitability
26%
Receptor
25%
Midbrain
23%
Potassium Current
21%
Calcium Conductance
19%
Anticonvulsant
19%
Tempol
18%
Axon
18%
Dopaminergic Neuron
17%
Tetrodotoxin
17%
Reactive Oxygen Species
17%
NMDA Receptor
16%
Potassium Channel
15%
Hemiplegia
14%
Cognitive Disorders
14%
Ictogenesis
14%
Pyramidal Cell
14%
Conotoxin
14%
GABA Receptor
14%
Metabotropic Glutamate Receptor 1
14%
AMPA Receptor
14%
Adenosine Triphosphatase (Potassium Sodium)
14%
Hyperactivity
14%
Muscarinic Acetylcholine Receptor
14%
Glycine Receptor
14%
Nerve Cell Membrane
14%
Oxidative Stress
14%
Carbonic Anhydrase
14%
Aspartic Acid
14%
Axonal Excitability
14%
Carisoprodol
14%
Dopaminergic
14%
GABAA Receptor
14%
Furosemide
14%
Voltage Clamp
14%
Ventral Tegmental Area
14%
Soma
14%
Acetylcholinesterase
14%
Ictal
14%
Cholinergic
14%
Acetazolamide
14%
Medicine and Dentistry
In Vitro
29%
Hippocampus
29%
Sodium Ion
14%
4 Aminobutyric Acid B Receptor
14%
Adenosine Triphosphatase (Potassium Sodium)
14%
GABAA Receptor
14%
Potassium Current
14%
Oxidative Phosphorylation
14%
Ictal
14%
Cognitive Defect
14%
Potassium Ion
14%
Dystonia
11%
Alternating Hemiplegia of Childhood
11%
Epileptic Seizure
11%
Gamma-Aminobutyric Acid
11%
Potassium Channel
11%
Hyperactivity
7%
Receptor
7%
Excitability
7%
Glucose Metabolism
7%
Adenosine Triphosphatase
7%
Ketogenic Diet
7%
Parkinsonism
7%
Guanine Nucleotide Binding Protein
7%
Deep Brain Stimulation
7%
Keyphrases
Carbonic Anhydrase Activity
14%
Spinal Motoneurons
14%
Intrinsic Response
14%
Synaptic Regulation
14%
Fiber Volley
14%
High-frequency Firing
14%
Conotoxin
14%
Axon
14%
Hyperexcitable Network
14%
Acetazolamide
14%
Excitability
14%
Schaffer Collateral
11%
Ca2+ Spike
11%
High-frequency Stimulation
11%
Interspike Interval
7%
Seizure Susceptibility
7%
Stratum Radiatum
7%