Standard manual capsulorhexis / Ultrasound phacoemulsification compared to femtosecond laser-assisted capsulorhexis and lens fragmentation in clear cornea small incision cataract surgery.

PubWeight™: 0.75‹?›

🔗 View Article (PMID 27478858)

Published in Eye Vis (Lond) on July 29, 2016

Authors

Anastasios John Kanellopoulos1, George Asimellis2

Author Affiliations

1: Laservision.gr Clinical and Research Eye Institute, Athens, Greece ; Department of Ophthalmology, NYU Medical School, New York, NY USA.
2: Laservision.gr Clinical and Research Eye Institute, Athens, Greece.

Articles cited by this

The Lens Opacities Classification System III. The Longitudinal Study of Cataract Study Group. Arch Ophthalmol (1993) 9.69

Femtosecond laser-assisted cataract surgery versus standard phacoemulsification cataract surgery: outcomes and safety in more than 4000 cases at a single center. J Cataract Refract Surg (2014) 5.02

Acute endophthalmitis following cataract surgery: a systematic review of the literature. Arch Ophthalmol (2005) 2.92

Initial clinical evaluation of an intraocular femtosecond laser in cataract surgery. J Refract Surg (2009) 2.14

Sources of error in intraocular lens power calculation. J Cataract Refract Surg (2008) 2.05

Outsourced cataract surgery and postoperative endophthalmitis. Acta Ophthalmol (2013) 1.99

Femtosecond laser cataract surgery: technology and clinical practice. Clin Experiment Ophthalmol (2012) 1.70

Incidence of endophthalmitis after corneal transplant or cataract surgery in a medicare population. Ophthalmology (2013) 1.61

Benchmark standards for refractive outcomes after NHS cataract surgery. Eye (Lond) (2007) 1.49

Femtosecond laser-assisted cataract surgery with integrated optical coherence tomography. Sci Transl Med (2010) 1.47

Capsulotomy diameter mark. J Cataract Refract Surg (2003) 1.46

Posterior capsular opacification after cataract surgery. Eye (Lond) (1999) 1.31

Comparison of IOL power calculation and refractive outcome after laser refractive cataract surgery with a femtosecond laser versus conventional phacoemulsification. J Refract Surg (2012) 1.27

Efficacy of anterior capsulotomy creation in femtosecond laser-assisted cataract surgery. J Cataract Refract Surg (2014) 1.22

Central corneal volume and endothelial cell count following femtosecond laser-assisted refractive cataract surgery compared to conventional phacoemulsification. J Refract Surg (2012) 1.13

The early complications of cataract surgery: is routine review of patients 1 week after cataract extraction necessary? Ophthalmology (2001) 1.05

The effect of capsulorhexis size on development of posterior capsule opacification: small (4.5 to 5.0 mm) versus large (6.0 to 7.0 mm). Eur J Ophthalmol (2003) 1.03

The journey to femtosecond laser-assisted cataract surgery: new beginnings or a false dawn? Eye (Lond) (2013) 1.02

Corneal endothelial cell damage by free radicals associated with ultrasound oscillation. Arch Ophthalmol (2008) 1.01

Optical patient interface in femtosecond laser-assisted cataract surgery: contact corneal applanation versus liquid immersion. J Cataract Refract Surg (2013) 0.98

Initial evaluation of a femtosecond laser system in cataract surgery. J Cataract Refract Surg (2013) 0.96

Correlation of nuclear density using the Lens Opacity Classification System III versus Scheimpflug imaging with phacoemulsification parameters. J Cataract Refract Surg (2013) 0.94

Comparison of high-resolution Scheimpflug and high-frequency ultrasound biomicroscopy to anterior-segment OCT corneal thickness measurements. Clin Ophthalmol (2013) 0.94

Femtosecond-laser assisted cataract surgery: a review. Acta Ophthalmol (2014) 0.93

Femtosecond laser cataract incision morphology and corneal higher-order aberration analysis. J Refract Surg (2013) 0.92

Dodick photolysis for cataract surgery: early experience with the Q-switched neodymium: YAG laser in 100 consecutive patients. Ophthalmology (1999) 0.92

Optical radiation safety of medical light sources. Phys Med Biol (1997) 0.91

Femtosecond laser cataract surgery: updates on technologies and outcomes. J Refract Surg (2014) 0.91

Femtosecond cataract surgery: transitioning to laser cataract. Curr Opin Ophthalmol (2013) 0.90

Hyperopic shift in refraction associated with implantation of the single-piece Collamer intraocular lens. J Cataract Refract Surg (2006) 0.90

Scanning electron microscopy evaluation of capsulorhexis in femtosecond laser-assisted cataract surgery. J Cataract Refract Surg (2013) 0.89

Laser cataract surgery : A prospective clinical evaluation of 1000 consecutive laser cataract procedures using the Dodick photolysis Nd:YAG system. Ophthalmology (2001) 0.89

Femtosecond laser cataract surgery. Eye Vis (Lond) (2015) 0.86

Intraocular lens tilt and decentration: a concern for contemporary IOL designs. Nepal J Ophthalmol (2011) 0.85

The use of femtosecond lasers in cataract surgery: review of the published results with the LenSx system. J Refract Surg (2014) 0.85

Femtosecond laser-assisted compared with standard cataract surgery for removal of advanced cataracts. J Cataract Refract Surg (2015) 0.85

Advances in cataract surgery: preserving the corneal endothelium. Curr Opin Ophthalmol (2015) 0.84

Accuracy and precision of a new system for measuring toric intraocular lens axis rotation. J Cataract Refract Surg (2013) 0.84

Ocular higher-order wavefront aberration caused by major tilting of intraocular lens. Am J Ophthalmol (2005) 0.84

Evaluation of femtosecond laser clear corneal incision: an experimental study. J Refract Surg (2013) 0.82

All-laser bladeless cataract surgery, combining femtosecond and nanosecond lasers: a novel surgical technique. Clin Ophthalmol (2013) 0.81

Laser-assisted cataract surgery versus standard ultrasound phacoemulsification cataract surgery. Cochrane Database Syst Rev (2016) 0.78

[Femtosecond laser in cataract surgery. A critical appraisal]. Ophthalmologe (2014) 0.77

Endophthalmitis and clear corneal cataract incisions. Indian J Ophthalmol (2014) 0.76