Literature DB >> 27391936

Changes in pupil size following panretinal retinal photocoagulation: conventional laser vs pattern scan laser (PASCAL).

I Yilmaz1, I Perente1, B Saracoglu1, A T Yazici1, M Taskapili1.   

Abstract

PurposeTo evaluate and compare the possible changes in pupil size subsequent to panretinal laser photocoagulation (PRP) via conventional laser and pattern scan laser (PASCAL).Patients and methodsForty eyes of 40 patients with diabetic retinopathy were included. 20 eyes had a PRP via conventional laser and formed Group 1. 20 eyes had a PRP via PASCAL laser and formed Group 2. The participants underwent standard ophthalmologic examination at baseline. Automated infrared pupillometry were performed at baseline and month 1.ResultsThe mean pupillary measurements (mm) for Group 1 (in the order photopic, mesopic, and scotopic conditions) were 2.88±0.34, 3.38±0.40, and 3.95±0.38, and changed to 3.64±0.42, 4.18±0.42, and 4.58±0.48, respectively. There was significant increase in pupil size at month 1 (P<0.001, P<0.001, and P<0.00, respectively). For Group 2, they were 2.90±0.38, 3.43±0.36, and 3.90±0.40, and changed to 3.18±0.42, 3.74±0.36, and 4.10±0.38, respectively. There was significant increase in pupil size at month 1 (P=0.018, P=0.014, and P=0.014, respectively). The pupil size increased significantly in both groups in all illumination conditions.ConclusıonWe have demonstrated via automated infrared pupillary measurements that PRP may significantly increase pupil size whether it is performed with conventional laser or PASCAL laser.

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Year:  2016        PMID: 27391936      PMCID: PMC5129857          DOI: 10.1038/eye.2016.135

Source DB:  PubMed          Journal:  Eye (Lond)        ISSN: 0950-222X            Impact factor:   3.775


  19 in total

Review 1.  Visual side effects of successful scatter laser photocoagulation surgery for proliferative diabetic retinopathy: a literature review.

Authors:  Donald S Fong; Aniz Girach; April Boney
Journal:  Retina       Date:  2007-09       Impact factor: 4.256

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3.  Indications for photocoagulation treatment of diabetic retinopathy: Diabetic Retinopathy Study Report no. 14. The Diabetic Retinopathy Study Research Group.

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Journal:  Diabetologia       Date:  1984-02       Impact factor: 10.122

5.  Effects on choroidal nerves after panretinal xenon arc and argon laser photocoagulation.

Authors:  S N Schiødte
Journal:  Acta Ophthalmol (Copenh)       Date:  1984-04

6.  Pascal laser versus conventional laser for treatment of diabetic retinopathy.

Authors:  Abdelrahman G Salman
Journal:  Saudi J Ophthalmol       Date:  2011-01-28

7.  Oral versus topical diclofenac for pain prevention during panretinal photocoagulation.

Authors:  Peter A Zakrzewski; Heather L O'Donnell; Wai-Ching Lam
Journal:  Ophthalmology       Date:  2009-04-19       Impact factor: 12.079

8.  Pupillary abnormalities induced by argon laser photocoagulation.

Authors:  L A Lobes; P Bourgon
Journal:  Ophthalmology       Date:  1985-02       Impact factor: 12.079

9.  Dilated pupils and loss of accommodation following diode panretinal photocoagulation with sub-tenon local anaesthetic in four cases.

Authors:  J I Patel; L Jenkins; L Benjamin; S Webber
Journal:  Eye (Lond)       Date:  2002-09       Impact factor: 3.775

10.  Tonic pupil following pars plana vitrectomy and endolaser.

Authors:  Benyamin Ebrahim; Larry Frohman; Marco Zarbin; Neelakshi Bhagat
Journal:  Case Rep Med       Date:  2009-07-08
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  9 in total

1.  Can photoreceptor loss also account for changes in pupil size following panretinal photocoagulation?

Authors:  R P Najjar; D Milea
Journal:  Eye (Lond)       Date:  2016-09-30       Impact factor: 3.775

2.  Reply to 'Can photoreceptor loss also account for changes in pupil size following panretinal photocoagulation?'

Authors:  I Yilmaz; A Ozkaya
Journal:  Eye (Lond)       Date:  2016-10-07       Impact factor: 3.775

3.  Static and Dynamic Pupillary Responses in Patients with Different Stages of Diabetic Retinopathy.

Authors:  Hasan Kızıltoprak; Kemal Tekin; Mehmet Ali Sekeroglu; Esat Yetkin; Sibel Doguizi; Pelin Yilmazbas
Journal:  Neuroophthalmology       Date:  2019-11-25

4.  Efficacy and safety of qiming granule combined with laser in the treatment of diabetic retinopathy: A protocol of randomized controlled trial.

Authors:  Chuiren Zhou; Bi Long; Wei Huang; Ling Jiang
Journal:  Medicine (Baltimore)       Date:  2021-03-26       Impact factor: 1.817

5.  Fortified Barrier Laser On The Vitreous Base In Vitrectomy For Rhegmatogenous Retinal Detachment.

Authors:  Sun Ho Park; Sang Cheol Yang; Jae Jung Lee; Hanjo Kwon; Sung Who Park; Ji Eun Lee
Journal:  Clin Ophthalmol       Date:  2019-10-31

Review 6.  Comparison of Pain Scores Among Patients Undergoing Conventional and Novel Panretinal Photocoagulation for Diabetic Retinopathy: A Systematic Review.

Authors:  Corrina P Azarcon; Jose Carlo M Artiaga
Journal:  Clin Ophthalmol       Date:  2021-03-02

7.  360-Degree laser retinopexy in primary vitrectomy for rhegmatogenous retinal detachment: factors associated with its use and impact on surgical outcomes.

Authors:  Matthew C Peters; Alexander Murray-Douglass; Joseph Park; Sean S H Cheng; Anil K Sharma; Abhishek Sharma; Kevin W Vandeleur; Lawrence R Lee; Thomas P Moloney
Journal:  Int J Retina Vitreous       Date:  2022-04-06

8.  Protective Role of 360° Laser Retinopexy in Patients with Rhegmatogenous Retinal Detachment: a Systematic Review and Meta-analysis.

Authors:  Christa Soekamto; Edward R Chu; Daniel A Johnson; Jeong-Hyeon Sohn; Sepehr Bahadorani
Journal:  Korean J Ophthalmol       Date:  2021-06-04

Review 9.  Different lasers and techniques for proliferative diabetic retinopathy.

Authors:  Tanya Moutray; Jennifer R Evans; Noemi Lois; David J Armstrong; Tunde Peto; Augusto Azuara-Blanco
Journal:  Cochrane Database Syst Rev       Date:  2018-03-15
  9 in total

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