Keyphrases
Ankyrin
17%
Axon Guidance
15%
Body Wall muscle
12%
Caenorhabditis Elegans
100%
Caenorhabditis Elegans Embryo
6%
Caenorhabditis Elegans Model
6%
Cell Adhesion Molecules
32%
Cell Targeting
6%
Cell-type-specific Gene Expression
6%
Congenital Hydrocephalus
7%
Crash
10%
Diagnostic Methods
6%
E Protein
6%
Epidermis
6%
Epithelial Polarity
6%
Family Members
9%
Fibroblast Growth Factor Receptor 1 (FGFR1)
6%
Genetic Diagnostics
6%
Genetic Etiology
6%
Gonadal Morphogenesis
6%
Hydrocephalus
7%
Ion Homeostasis
6%
L1 Cell Adhesion Molecule (L1CAM)
31%
LAD-1
8%
Locomotion
7%
Low-density Lipoprotein Receptor-related protein-1 (LRP1)
6%
Membrane Protein
6%
Mitogen-activated Protein Kinase
6%
Molecular Mechanism
6%
Muscle Cells
6%
Muscle Formation
6%
Muscle Function
6%
Muscular Function
6%
MyoD
22%
Myxoma Virus
6%
Nematodes
10%
Neuronal Function
7%
Neuronal Positioning
6%
Non-response
6%
Novel Therapeutic Targets
6%
Null mutation
7%
Protease Inhibitors
6%
SAX-7
26%
Scoping Review
6%
Spectrin
8%
Striated muscle
7%
Syntrophin
8%
Tissue Attachment
6%
Vertebrates
10%
Worm
6%
Biochemistry, Genetics and Molecular Biology
Ankyrin
19%
Axon Guidance
8%
Caenorhabditis Elegans
89%
Cell Adhesion Proteins
33%
Dystrophin
6%
Ephrin
5%
Epithelial Polarity
6%
Fibroblast Growth Factor Receptor
6%
Genetic Conservation
6%
Genetics
13%
Interferon
6%
Internalization
6%
L1 Family
21%
LDL Receptor
6%
Molting
6%
Morphogenesis
12%
Muscle Function
6%
MyoD
15%
Myogenesis
12%
Nematode
5%
Orthomyxoviridae
6%
Precursor
9%
Protease Inhibitor
6%
Spectrin
8%
Syntrophin
8%
Neuroscience
Ankyrin
6%
Autism
5%
Axon Guidance
14%
Caenorhabditis Elegans
68%
Cell Adhesion Proteins
35%
Dystrophin
6%
Ephrin
5%
Fibroblast Growth Factor Receptor
6%
Hydrocephalus
9%
Internalization
6%
Ion Homeostasis
6%
LDL Receptor
6%
Locomotion
7%
Mitogen-Activated Protein Kinase
6%
Morphogenesis
9%
Nervous System Disorder
7%
Nervous System Function
5%
Neurodegenerative Disorder
6%
Neurogenesis
5%
Phosphotyrosine
6%
Receptor
6%
Spectrin
6%
Synaptic Transmission
6%
Transient Receptor Potential Channel M
6%