Archives of Ophthalmology · 1972 · 28 citations · 6 references
Krypton LaserOcular DiseaseEngineeringOphthalmologyExperimental OphthalmologyLaser PhysicsLaser ApplicationsOcular TissueGas LasersClinical PhotocoagulationLaser SafetyChorioretinal AbnormalitiesBiophotonicsOcular PathologyVascular RetinopathiesRadiation OncologyHigh-power LasersLaser Damage
The first clinical application of the krypton laser has been reported. Ten patients with vascular retinopathies were photocoagulated with the monochromatic yellow krypton laser emission at λ568.2 nm λ5,682 Angstroms) and coagulations ranging between 150μ to 250μ in diameter were produced after one-fourth to onehalf second exposures with power levels of 100 to 250 milliwatts. The krypton laser can effectively treat ophthalmic vascular and chorioretinal abnormalities with certain advantages over other lasers, but, presently, its relatively weak output power limits its effectiveness in many cases.
6
The relative absorption of thermal energy in retina and choroid.
Walter J. Geeraets, Ray Williams, Guy Chan et al. · PubMed · 1962 · 125 citations
Thermal Energy, Engineering, Retina +10
Atlas of Fluorescence Fundus Angiography
S Shikano, Koïchi Shimizu · Optometry and Vision Science · 1969 · 41 citations