- 830 nm light-emitting diode (led) phototherapy significantly reduced return-to-play in injured university athletes_a pilot study
- A Controlled Trial to Determine the Efficacy of Red and Near-Infrared Light Treatment in Patient Satisfaction, Reduction of Fine Lines, Wrinkles, Skin Roughness, and Intradermal Collagen Density Increase
- Accelerating skin regeneration and wound healing by controlled ROS from photodynamic treatment
- Anti-inflammatory activities of light emitting diode irradiation on collagen-induced arthritis in mice_570 and 940nm
- Anti-Inflammatory effects of low-level laser therapy (660 nm) in the early phase in carrageenan-induced pleurisy in rat
- Effects of 660- and 980-nm low-level laser therapy on neuropathic pain relief following chronic constriction injury in rat sciatic nerve
- Light-emitting diode therapy (LEDT) before matches prevents increase in creatine kinase with a light dose response in volleyball players
- Low-intensity LASER and LED (photobiomodulation therapy) for pain control of the most common musculoskeletal conditions
- Low-Level Laser Therapy for Fibromyalgia_A Systematic Review and Meta-Analysis
- Low-Level Light Therapy for Androgenetic Alopecia_A 24-Week, Randomized, Double-Blind, Sham Device–Controlled Multicenter Trial
- Mechanisms and applications of the anti-inflammatory effects of photobiomodulation
- Near infrared light protects cardiomyocytes from hypoxia and reoxygenation injury by a nitric oxide dependent mechanism
- Photobiomodulation in human muscle tissue_an advantage in sport performance
- Phototherapy With LED Light Modulates Healing
- Red (660 nm) and infrared (830 nm) low-level laser therapy in skeletal muscle fatigue in humans_what is better