Purpose: To study the alterations on the lenticules extracted after femtosecond (Femto) small incision lenticule extraction (SMILE) versus the corneal free cap removed using a microkeratome. Methods: The visuMax (500 kHz; laser energy: 180 nJ) was used for small-incision lenticule extraction. Free caps from human cadaveric corneas were excised by microkeratome. The collected lenticules were examined with the light and transmission electron microscope (TEM) for histological analysis, DNA fragmentation was assessed by agarose gel electrophoresis, DNA damage was evaluated using comet assay, and corneal proteins secondary structure was assessed by Fourier transform infrared spectroscopy (FTIR). Results: Light microscopic examination showed the ...
Refractive surgical treatment of hyperopia still remains a challenge for refractive surgeons. A new ...
PURPOSE: To develop ex vivo organ culture models of human corneal scarring suitable for pharmacologi...
To investigate the effects of lenticule creation and subsequent corneal lenticule extraction on corn...
Purpose: To determine the surface characteristics of porcine corneal lenticules after Femtosecond Le...
AIM: To observe the changes of corneal endothelial cell density and morphology after femtosecond las...
PURPOSE: To determine the effect of lowering femtosecond laser energy on the surface quality of the ...
Purpose: To evaluate the efficiency of femtosecond laser (FSL) incision of rehydrated human donor co...
Anastasios John Kanellopoulos1,2 1Department of Ophthalmology, Laservision Clinical and Research In...
PURPOSE: To investigate the feasibility of intrastromal lenticule insertion to restore corneal shape...
Purpose: To evaluate the use of a femtosecond laser combined with a microkeratome in the preparation...
PURPOSE: To investigate the morphology of corneal caps in femtosecond laser small incision lenticule...
Purpose: To investigate clinical outcomes of small incision lenticule extraction (SMILE) including v...
To use a well-established organ culture model to investigate the effects of corneal stromal stem cel...
Purpose: To evaluate the feasibility of excimer laser reshaping of biological lenticules available a...
Purpose: To investigate the morphology of corneal caps in femtosecond laser small incision lenticule...
Refractive surgical treatment of hyperopia still remains a challenge for refractive surgeons. A new ...
PURPOSE: To develop ex vivo organ culture models of human corneal scarring suitable for pharmacologi...
To investigate the effects of lenticule creation and subsequent corneal lenticule extraction on corn...
Purpose: To determine the surface characteristics of porcine corneal lenticules after Femtosecond Le...
AIM: To observe the changes of corneal endothelial cell density and morphology after femtosecond las...
PURPOSE: To determine the effect of lowering femtosecond laser energy on the surface quality of the ...
Purpose: To evaluate the efficiency of femtosecond laser (FSL) incision of rehydrated human donor co...
Anastasios John Kanellopoulos1,2 1Department of Ophthalmology, Laservision Clinical and Research In...
PURPOSE: To investigate the feasibility of intrastromal lenticule insertion to restore corneal shape...
Purpose: To evaluate the use of a femtosecond laser combined with a microkeratome in the preparation...
PURPOSE: To investigate the morphology of corneal caps in femtosecond laser small incision lenticule...
Purpose: To investigate clinical outcomes of small incision lenticule extraction (SMILE) including v...
To use a well-established organ culture model to investigate the effects of corneal stromal stem cel...
Purpose: To evaluate the feasibility of excimer laser reshaping of biological lenticules available a...
Purpose: To investigate the morphology of corneal caps in femtosecond laser small incision lenticule...
Refractive surgical treatment of hyperopia still remains a challenge for refractive surgeons. A new ...
PURPOSE: To develop ex vivo organ culture models of human corneal scarring suitable for pharmacologi...
To investigate the effects of lenticule creation and subsequent corneal lenticule extraction on corn...