Neuroscience
Parkinson's Disease
100%
Striatum
40%
Receptor
40%
Cholinergic
36%
Calcium Channel
34%
Medium Spiny Neuron
34%
Dopaminergic Neuron
31%
Interneuron
31%
Dopaminergic
25%
Potassium Current
22%
Synapse
22%
Messenger RNA
20%
Substantia Nigra Pars Compacta
19%
Oxidative Stress
17%
Behavior (Neuroscience)
17%
Huntington's Disease
16%
Excitability
16%
Globus pallidus
15%
Basal Ganglia
15%
Dopamine Receptor D2
13%
Potassium Channel
13%
Dopamine Receptor D1
12%
Substantia nigra
11%
Voltage Clamp
10%
L-DOPA
10%
Synuclein
10%
Dopamine Receptor
10%
Vertebral Column
10%
Cav1.3
10%
Calcium Current
9%
Synaptic Plasticity
9%
Dyskinesia
9%
Subthalamic Nucleus
9%
Sodium Channel
9%
Reverse Transcription Polymerase Chain Reaction
8%
Receptor Modulation
8%
Muscarinic Acetylcholine Receptor
8%
Agonist
8%
Dendrite
8%
G Protein
7%
Midbrain
7%
Gamma-Aminobutyric Acid
7%
Dendritic Excitability
7%
Stereotypic Movement Disorder
7%
Cyclic Adenosine Monophosphate
7%
Action Potential
7%
Glutamic Acid
6%
In Vivo
6%
Brain Slice
6%
Synaptic Transmission
6%
Keyphrases
Parkinson's Disease
91%
Striatal
52%
Medium Spiny Neurons
31%
Dopaminergic Neurons
29%
Dopamine
29%
Spiny Projection Neurons
27%
Parkinson's Disease Model
24%
Striatum
24%
Substantia Nigra Pars Compacta
20%
Ca2+
18%
Cholinergic Interneurons
16%
Mouse Model
16%
Cav1.3
16%
Huntington's Disease
16%
Striatal Medium Spiny Neurons
15%
Voltage Dependence
15%
Pacemaking
15%
Potassium Current
14%
L-type Ca2+ Channel
14%
Mitochondrial Oxidative Stress
14%
Basal Ganglia
13%
Pyramidal Neurons
13%
Indirect Pathway
13%
Corticostriatal
13%
D2 Dopamine Receptor
13%
Alpha-synuclein (α-syn)
12%
Striatal Cholinergic Interneurons
12%
Excitability
11%
Striatal Neurons
11%
Protein Kinase
11%
Substantia Nigra
11%
L-type
11%
Globus Pallidus
11%
Dopamine Neurons
11%
Spontaneous Excitatory Postsynaptic Current (sEPSC)
11%
D1 Dopamine Receptor
11%
L-type Calcium Channel
11%
Synaptic Integration
10%
Ca2+ Channels
10%
Synaptic Plasticity
10%
Muscarinic Receptors
9%
Isradipine
9%
Synapse
9%
Subthalamic nucleus
9%
D2 Receptor
9%
Receptor Modulation
9%
Depolarization
9%
Direct Pathway
9%
Dopaminergic Modulation
9%
Neostriatum
9%