Keyphrases
Network Approach
100%
Approaches to Studying
100%
Co-expression Network
100%
Botulinum Neurotoxin A
100%
Atrophy
33%
Chemodenervation
33%
Metabolic
16%
Clinical Application
16%
Skeletal muscle
16%
Extracellular Matrix
16%
Metabolism
16%
Expression Pattern
16%
Putative Biomarkers
16%
Functional Response
16%
Botulinum Neurotoxin (BoNT)
16%
Paralysis
16%
Co-expression
16%
Mechanistic Role
16%
Functional Analysis
16%
Neurotoxin
16%
Early-late
16%
Protein Content
16%
Network Theory
16%
Expressed Genes
16%
Titin
16%
Expression Data
16%
Cellular Recovery
16%
Muscle Response
16%
Temporal Aspects
16%
Fast Fiber
16%
Phenotypic Correlation
16%
Extracellular Fibers
16%
Weighted Correlation Network Analysis (WGCNA)
16%
Myosin Protein
16%
Doublecortin-like Kinase 1 (DCLK1)
16%
Co-expressed Modules
16%
Medicine and Dentistry
Clostridium Botulinum Type A
100%
Extracellular Matrix
33%
Biological Marker
16%
Paralysis
16%
Heuristics
16%
Neurotoxin
16%
Botulinum Toxin A
16%
Titin
16%
Gene Co-Expression Network
16%
Temporal Analysis
16%
Skeletal Muscle
16%
Biochemistry, Genetics and Molecular Biology
Clostridium Botulinum Type A
100%
Isoform
16%
Metabolic Pathway
16%
Neurotoxin
16%
Skeletal Muscle
16%
Protein Content
16%
Heuristics
16%
Titin
16%
Myosin
16%
Botulinum Toxin A
16%
Neuroscience
Clostridium Botulinum Type A
100%
Extracellular Matrix
33%
Skeletal Muscle
16%
Titin
16%
Metabolic Pathway
16%
Neurotoxin
16%
Myosin
16%
Botulinum Toxin A
16%
Pharmacology, Toxicology and Pharmaceutical Science
Clostridium Botulinum Type A
100%
Biological Marker
16%
Paralysis
16%
Botulinum Toxin A
16%
Neurotoxin
16%
Connectin
16%