Results 121 to 130 of about 899 (174)
Machine learning-assisted prediction of trabeculectomy outcomes among patients of juvenile glaucoma by using 5-year follow-up data. [PDF]
Birla S +7 more
europepmc +1 more source
THC:YAG Laser Sclerostomy with Motomycin-C Application
Hung, Por-Tying;Wang, T. H.;Ho, T. C. +1 more
core
THC:YAG Laser Sclerostomy with Mitomycin-C Application
Hung, Por-Tying;Wang, T. H.;Ho, T. C. +1 more
core
High precision laser sclerostomy
Ultrafast lasers offer a possibility of removing soft ophthalmic tissue without introducing collateral damage at the ablation site or in the surrounding tissue. The potential for using ultrashort pico- and femtosecond pulse lasers for modification of ophthalmic tissue has been reported elsewhere and has resulted in the introduction of new, minimally ...
Jonathan D Shephard, Duncan Paul Hand
exaly +3 more sources
ABSTRACT We used a Q-switched Nd:YLF picosecond laser, operating at the 1053-nanometer wavelength with a spot separation of 10 urn and a crossing width of 1000 x 10 µm in a rectangular pattern, to create ab externo sclerostomies in 12 New Zealand white rabbits. The mean energy used was 30 J (range, 24 to 65 J).
S B, Park, J C, Kim, J V, Aquavella
openaire +3 more sources
Some of the next articles are maybe not open access.
Related searches:
Related searches:
Internal Sclerostomy with the Nd:YAG Contact Laser Versus Thermal Sclerostomy in Rabbits
Ophthalmology, 1988The authors undertook an investigation to evaluate the efficacy and complications of performing internal sclerostomy with the synthetic sapphire contact neodymium:YAG (Nd:YAG) laser compared with standard external thermal sclerostomy. Fifteen rabbits underwent internal laser sclerostomy in one eye; 12 additional rabbits underwent a standard external ...
Eve Higginbotham, E J Higginbotham
exaly +3 more sources
Experimental YAG Laser Sclerostomy
A Q-switched neodymium-YAG laser was used to produce a corneoscleral perforation in human cadaver eyes. A through-and-through incision could be created solely with the YAG-laser at peak pulse energies of 16 millijoules (mJ). The minimal total energy required for perforation was 3,312 mJ. However, "optimal" perforation, producing splitting along natural
W F, March +3 more
openaire +3 more sources

