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Mechanisms and Mitochondrial Redox Signaling in Photobiomodulation
Michael R. Hamblin
Massachusetts General Hospital
Harvard University
Harvard-MIT Division of Health Sciences and Technology
Research output
:
Contribution to journal
›
Review article
›
peer-review
727
Citations (Scopus)
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Keyphrases
Beneficial Effects
16%
Cytochrome c Oxidase
33%
Damaged Tissue
16%
Edema
16%
Electron Transport
16%
Gated Ion Channels
16%
Healthy Cells
16%
Inflammation
16%
Light Absorption
16%
Low Power Density
16%
Mammalian Cells
16%
Mitochondria
16%
Mitochondrial Membrane Potential
16%
Mitochondrial Redox Signaling
100%
Near-infrared Light
16%
Nitric Oxide
16%
Opposite Effects
16%
Pain Reduction
16%
Photobiomodulation
100%
Photobiomodulation Therapy
16%
Preconditioning Regimen
16%
Redox Signaling
16%
Stem Cells
16%
Stressed Cells
16%
Tendon
16%
Immunology and Microbiology
Cytochrome
100%
Electron Transport
50%
Inflammation
50%
Infrared Radiation
50%
Ion Channel
50%
Light Absorption
50%
Mitochondrial Membrane Potential
50%
Mitochondrion
50%
Muscle
50%
Stem Cell
50%
Medicine and Dentistry
Cytochrome C Oxidase
66%
Edema
33%
Electron Transport
33%
Inflammation
33%
Ion Channel
33%
Mammalian Cell
33%
Mitochondrial Membrane Potential
33%
Mitochondrion
33%
Nitric Oxide
33%
Redox Signalling
100%
Stem Cell
33%
Wound
33%
Agricultural and Biological Sciences
Cytochrome C Oxidase
100%
Electron Transport
50%
Ion Channel
50%
Mitochondrion
50%
Outer Mitochondrial Membrane
50%
Progenitor Cell
50%
Biochemistry, Genetics and Molecular Biology
Cytochrome C Oxidase
28%
Electron Transport
14%
Infrared Radiation
14%
Ion Channel
14%
Light Absorption
14%
Mitochondrial Membrane Potential
14%
Mitochondrion
14%
Nitric Oxide
14%
Photobiomodulation
100%
Stem Cell
14%