Purpose: To evaluate the impact of continuous manufacturing process improvements on glistening formation in AcrySof hydrophobic acrylic intraocular lenses (IOLs) by comparing lenses manufactured in 2003 with lenses manufactured in 2012. Methods: Glistenings were experimentally created as aqueous-filled microvacuoles utilizing an accelerated laboratory method by immersing the lens in water at 45°C for 24 hours and then reduc-ing the temperature to 37°C for 2.5 hours. To determine the impact of continuous improvements on glistening formation, AcrySof IOLs (Alcon Laboratories, Inc) Model SB30 AL manufactured in 2003 were compared with AcrySof IOLs Model SN60 WF manufactured in 2012. Results: Glistenings were present in all lenses after the acc...
The aim of this study was to evaluate the possible implementation of hydrophilic polymers as recover...
Journal ArticlePURPOSE: To compare patient satisfaction with vision 12 months after implantation of ...
PURPOSE: To compare hydrophilic and hydrophobic acrylic materials designed for intraocular lenses in...
George HH Beiko,1,2 Andrzej Grzybowski3,41Department of Surgery, McMaster University, Hamilton, ON, ...
PURPOSE: To analyze the effect of hydrophobic and hydrophilic acrylic intraocular lens (IOL) materia...
Journal ArticlePURPOSE: To evaluate the effect of 7 viscoelastic materials on the physical propertie...
PURPOSE To report the long-term visual outcomes and biocompatibility of a single-piece hydrophili...
The opacifications of intraocular lenses (IOLs) can significantly impact patients visual quality. De...
urpose: To evaluate the formation of glistenings in foldable intraocular lenses (IOLs) of various ma...
Andrew Maxwell,1 Rajaraman Suryakumar2 1California Eye Institute, Fresno, CA, USA; 2Alcon Laborator...
PURPOSE: To study the glistening formation in various hydrophobic-acrylic intraocular lens (IOL) mod...
Purpose:To present the results of a study investigating the 3-year effectiveness and safety of the C...
Background: In ophthalmology, the surface properties of implants such as intraocular lenses (IOLs) p...
Journal ArticlePURPOSE: To compare the 3-year performance of the 3-piece AcrySof (Alcon) and the SI-...
Posterior Capsular Opacification (PCO) is the capsule fibrosis developed on implanted IntraOcular Le...
The aim of this study was to evaluate the possible implementation of hydrophilic polymers as recover...
Journal ArticlePURPOSE: To compare patient satisfaction with vision 12 months after implantation of ...
PURPOSE: To compare hydrophilic and hydrophobic acrylic materials designed for intraocular lenses in...
George HH Beiko,1,2 Andrzej Grzybowski3,41Department of Surgery, McMaster University, Hamilton, ON, ...
PURPOSE: To analyze the effect of hydrophobic and hydrophilic acrylic intraocular lens (IOL) materia...
Journal ArticlePURPOSE: To evaluate the effect of 7 viscoelastic materials on the physical propertie...
PURPOSE To report the long-term visual outcomes and biocompatibility of a single-piece hydrophili...
The opacifications of intraocular lenses (IOLs) can significantly impact patients visual quality. De...
urpose: To evaluate the formation of glistenings in foldable intraocular lenses (IOLs) of various ma...
Andrew Maxwell,1 Rajaraman Suryakumar2 1California Eye Institute, Fresno, CA, USA; 2Alcon Laborator...
PURPOSE: To study the glistening formation in various hydrophobic-acrylic intraocular lens (IOL) mod...
Purpose:To present the results of a study investigating the 3-year effectiveness and safety of the C...
Background: In ophthalmology, the surface properties of implants such as intraocular lenses (IOLs) p...
Journal ArticlePURPOSE: To compare the 3-year performance of the 3-piece AcrySof (Alcon) and the SI-...
Posterior Capsular Opacification (PCO) is the capsule fibrosis developed on implanted IntraOcular Le...
The aim of this study was to evaluate the possible implementation of hydrophilic polymers as recover...
Journal ArticlePURPOSE: To compare patient satisfaction with vision 12 months after implantation of ...
PURPOSE: To compare hydrophilic and hydrophobic acrylic materials designed for intraocular lenses in...