Objective: Evaluation of the effectiveness of arcuate keratotomy performed with femtosecond laser for correction of postkeratoplasty astigmatism.
Methods: This retrospective clinical study included 11 eyes. All cases underwent arcuate keratotomy using femtosecond laser. Outcome measures included visual acuity and endothelial cell density as well as refractive, keratometric, and topographic astigmatism. The incision depth was also evaluated by OCT-3.
Results: With a mean follow-up of 7.4+/-6.7 months, uncorrected visual acuity was not modified and the mean best corrected visual acuity significantly improved from 1.68+/-1.59 lines (p=0.007). The mean preoperative refractive cylinder was 5.18+/-1.15D, decreasing to 3.41+/-1.93D (p=0.045) after laser-arcuate keratotomy. The reduction of preoperative keratometric (7.79+/-3.69D) and topographic (7.98+/-2.41D) astigmatism was higher, with a decrease to 4.81+/-2.52D (p=0.021) and 4.36+/-2.59D (p=0.005) postoperatively. Endothelial cell density was not modified after surgery. The difference between achieved and planned incision depth was -10.7+/-63.5mum. All cases were uncomplicated.
Discussion: Arcuate keratotomies performed with the femtosecond laser were effective in reducing postkeratoplasty astigmatism and has a number of advantages over conventional techniques. However, efficacy could be improved by a more accurate nomogram.
Conclusion: Arcuate keratotomy performed with femtosecond laser is a relatively easy, safe, and effective means of treating postkeratoplasty astigmatism. Given our small sample, much larger series are needed to provide more confident estimates of astigmatism reduction proportions and to adjust correction parameters.
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http://dx.doi.org/10.1016/j.jfo.2009.06.001 | DOI Listing |
Am J Ophthalmol Case Rep
March 2025
State Key Laboratory of Ophthalmology, Zhongshan Ophthalmic Center, Sun Yat-sen University, Guangdong Provincial Key Laboratory of Ophthalmology and Visual Science, Guangzhou, China.
Purpose: This study highlights the feasibility of femtosecond laser-assisted large-diameter lamellar corneal-limbal keratoplasty and its efficacy in the treatment of ocular surface failure caused by bilateral ocular chemical injury.
Observations: The series included 3 patients with ocular surface failure caused by bilateral ocular chemical burns. After dissection of the host cornea, a femtosecond laser-assisted large-diameter lamellar corneoscleral button, with varying thickness of 250-400 μm, was sutured to the recipient bed.
ACS Sens
January 2025
Department of Electrical and Computer Engineering, Missouri University of Science and Technology, Rolla, Missouri 65409, United States.
Wearable sensors are increasingly being used as biosensors for health monitoring. Current wearable devices are large, heavy, invasive, skin irritants, or not continuous. Miniaturization was chosen to address these issues, using a femtosecond laser-conversion technique to fabricate miniaturized laser-induced graphene (LIG) sensor arrays on and encapsulated within a polyimide substrate.
View Article and Find Full Text PDFNat Commun
January 2025
Dipartimento di Fisica, Sapienza Università di Roma, Piazzale Aldo Moro 5, I-00185, Roma, Italy.
The implementation of large-scale universal quantum computation represents a challenging and ambitious task on the road to quantum processing of information. In recent years, an intermediate approach has been pursued to demonstrate quantum computational advantage via non-universal computational models. A relevant example for photonic platforms has been provided by the Boson Sampling paradigm and its variants, which are known to be computationally hard while requiring at the same time only the manipulation of the generated photonic resources via linear optics and detection.
View Article and Find Full Text PDFACS Appl Bio Mater
January 2025
Department of Stomatology, Second Affiliated Hospital, Third Military Medical University, Chongqing 400037, P. R. China.
Micro- and nanomorphological modification and roughening of titanium implant surfaces can enhance osseointegration; however, the optimal morphology remains unclear. Laser processing of implant surfaces has demonstrated significant potential due to its precision, controllability, and environmental friendliness. Femtosecond lasers, through precise optimization of processing parameters, can modify the surface of any solid material to generate micro- and nanomorphologies of varying scales and roughness.
View Article and Find Full Text PDFEnter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!