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SLCO5A1 and synaptic assembly genes contribute to impulsivity in juvenile myoclonic epilepsy
Delnaz Roshandel
,
Guido Rubboli
,
Rikke S Møller
, Deb K Pal
*
, Lisa J Strug
*
, BIOJUME Consortium
*
Corresponding author for this work
Filadelfia
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Explore the research areas of 'SLCO5A1 and synaptic assembly genes contribute to impulsivity in juvenile myoclonic epilepsy'.
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Keyphrases
Impulsivity
100%
Juvenile Myoclonic Epilepsy
100%
Synaptic Assembly
100%
Attention Deficit Hyperactivity Disorder
33%
Path Analysis
33%
Fold Enrichment
33%
Bipolar Disorder
16%
Etiology
16%
Loss Function
16%
Functional Characterization
16%
Cerebral Cortex
16%
Polypeptide
16%
Polygenic Risk Score
16%
Common SNP
16%
Genome-wide Association
16%
SiRNA Knockdown
16%
Colocalization
16%
Seizure-like Activity
16%
Spontaneous Excitatory Postsynaptic Current (sEPSC)
16%
Drosophilidae
16%
Expression Quantitative Trait Loci (eQTL)
16%
Membrane Assembly
16%
Drosophila Model
16%
Synapse Assembly
16%
NLGN1
16%
Organic Anion Transporter
16%
Risk Pathway
16%
PTPRD
16%
Neuroscience
Impulsivity
100%
Juvenile Myoclonic Epilepsy
100%
Attention Deficit Hyperactivity Disorder
33%
Polygenic Risk Score
33%
Behavior (Neuroscience)
16%
Bipolar Disorder
16%
Synapse
16%
Cerebral Cortex
16%
Polypeptide
16%
Organic Anion Transporter
16%
Presynaptic Membrane
16%
Expression Quantitative Trait Loci
16%
Biochemistry, Genetics and Molecular Biology
Gene Organization
33%
Presynaptic Membrane
16%
NLGN1
16%
Protein Tyrosine Phosphatase Receptor Delta
16%
Fruit Fly Model
16%
RNA Interference
16%