Keyphrases
Acid Method
14%
Cell Development
7%
Cell Differentiation
14%
Cell Potential
7%
Cell Precursors
7%
Cell Therapy
7%
Cell-based
7%
Clinical Application
7%
Developmental Mechanisms
7%
Exogenous Factors
7%
Exogenous Gene
7%
Extrinsic Cues
7%
Forced Expression
7%
Genetic Approach
7%
Glaucoma
7%
Glaucomatous
14%
Glaucomatous Optic Neuropathy
100%
In Vivo Differentiation
7%
Induced Pluripotent Stem Cells (iPSCs)
100%
Insertional mutagenesis
7%
Limbal
21%
Molecular Mechanism
7%
Neural Lineage
7%
Nucleic Acids
28%
Optic Neuropathy
14%
Pluripotency Genes
7%
Pluripotent State
7%
Renewable Sources
7%
Retinal Degeneration
7%
Retinal Ganglion Cell Degeneration
7%
Retinal Ganglion Cells
100%
Retinal Progenitors
50%
Screening Drugs
7%
Signaling Pathway
7%
Somatic Cells
7%
Specific Intent
28%
Stem Cell Therapy
7%
Stem Cell-derived
42%
Target Specificity
21%
Therapy Approaches
7%
Transplantation
7%
Vision Loss
7%
Neuroscience
Cell Maturation
6%
Cell Signaling
6%
Cell Therapy
20%
Cellular Differentiation
13%
Gene Expression Regulation
6%
Glaucoma
6%
In Vivo
6%
Nerve Cell Degeneration
6%
Nerve Cell Membrane Potential
6%
Nucleic Acid
26%
Optic Neuropathy
100%
Reprogramming
20%
Retinal Degeneration
6%
Retinal Ganglion Cell
100%
Somatic Cell
6%
Stem Cell
100%
Medicine and Dentistry
Cell Differentiation
12%
Cell Maturation
6%
Cell Therapy
6%
Drug Screening
12%
Ex Vivo
12%
Ganglion
80%
Gene Expression Regulation
6%
Genetic Screening
6%
Glaucoma
6%
Glaucomatous Optic Neuropathy
80%
Induced Pluripotent Stem Cell
80%
Nerve Cell Degeneration
6%
Nerve Cell Membrane Potential
7%
Nucleic Acid
24%
Optic Neuropathy
12%
Precursor
6%
Retina Degeneration
6%
Signal Transduction
6%
Somatic Cell
6%
Stem Cell Therapy
12%
Visual Impairment
6%