Clinical Outcomes in Scleral Fixation Secondary Intraocular Lens with Yamane versus Suture Techniques: A Systematic Review and Meta-Analysis
Abstract
:1. Introduction
2. Materials and Methods
2.1. Design
2.2. Search Strategy
2.3. Article Selection
2.4. Quality Assessment
2.5. Data Extraction
2.6. Statistical Analysis
2.7. Publication Bias
3. Results
3.1. Study Characteristics
3.2. ROBINS-I, NIH Quality Assessment, and GRADE Assessment
3.3. Final Visual Outcomes of Yamane versus Sutured Scleral Fixation
3.4. Visual Outcomes of Yamane versus Sutured Scleral Fixation at 1 Month
3.5. Refractive Outcomes of Yamane versus Sutured Scleral Fixation
3.6. Surgical Duration of Yamane versus Sutured Scleral Fixation
3.7. Endothelial Cell Count
3.8. Complications of Yamane Technique
4. Discussion
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Czajka, M.P.; Frajdenberg, A.; Stopa, M.; Pabin, T.; Johansson, B.; Jakobsson, G. Sutureless intrascleral fixation using different three-piece posterior chamber intraocular lenses: A literature review of surgical techniques in cases of insufficient capsular support and a retrospective multicentre study. Acta Ophthalmol. 2020, 98, 224–236. [Google Scholar] [CrossRef]
- Riedl, J.C.; Rings, S.; Schuster, A.K.; Vossmerbaeumer, U. Intraocular lens dislocation: Manifestation, ocular and systemic risk factors. Int. Ophthalmol. 2023, 43, 1317–1324. [Google Scholar] [CrossRef]
- Ascaso, F.J.; Huerva, V.; Grzybowski, A. Epidemiology, Etiology, and Prevention of Late IOL-Capsular Bag Complex Dislocation: Review of the Literature. J. Ophthalmol. 2015, 2015, 805706. [Google Scholar] [CrossRef]
- Dabrowska-Kloda, K.; Kloda, T.; Boudiaf, S.; Jakobsson, G.; Stenevi, U. Incidence and risk factors of late in-the-bag intraocular lens dislocation: Evaluation of 140 eyes between 1992 and 2012. J. Cataract Refract. Surg. 2015, 41, 1376–1382. [Google Scholar] [CrossRef]
- Do, J.R.; Park, S.J.; Mukai, R.; Kim, H.K.; Shin, J.P.; Park, D.H. A 1-Year Prospective Comparative Study of Sutureless Flanged Intraocular Lens Fixation and Conventional Sutured Scleral Fixation in Intraocular Lens Dislocation. Ophthalmologica 2021, 244, 68–75. [Google Scholar] [CrossRef]
- Por, Y.M.; Lavin, M.J. Techniques of intraocular lens suspension in the absence of capsular/zonular support. Surv. Ophthalmol. 2005, 50, 429–462. [Google Scholar] [CrossRef]
- Chan, T.C.; Lam, J.K.; Jhanji, V.; Li, E.Y. Comparison of outcomes of primary anterior chamber versus secondary scleral-fixated intraocular lens implantation in complicated cataract surgeries. Am. J. Ophthalmol. 2015, 159, 221–226.e2. [Google Scholar] [CrossRef]
- Khan, M.A.; Gupta, O.P.; Pendi, K.; Chiang, A.; Vander, J.; Regillo, C.D.; Hsu, J. Pars Plana Vitrectomy with Anterior Chamber Versus Gore-Tex Sutured Posterior Chamber Intraocular Lens Placement: Long-Term Outcomes. Retina 2019, 39, 860–866. [Google Scholar] [CrossRef]
- Melamud, A.; Topilow, J.S.; Cai, L.; He, X. Pars Plana Vitrectomy Combined With Either Secondary Scleral-Fixated or Anterior Chamber Intraocular Lens Implantation. Am. J. Ophthalmol. 2016, 168, 177–182. [Google Scholar] [CrossRef] [PubMed]
- Soiberman, U.; Gehlbach, P.L.; Murakami, P.; Stark, W.J. Pars plana vitrectomy and iris suture fixation of posteriorly dislocated intraocular lenses. J. Cataract Refract. Surg. 2015, 41, 1454–1460. [Google Scholar] [CrossRef] [PubMed]
- Lau, T.H.A.; Garg, A.; Popovic, M.M.; Kertes, P.J.; Muni, R.H. Scleral-fixated and iris-fixated intraocular lens implantation or fixation:meta-analysis. J. Cataract Refract. Surg. 2022, 48, 1462–1468. [Google Scholar] [CrossRef]
- Alshehri, M.; Bin Helayel, H.; Vargas, J.M.; Almutlak, M.; Fairaq, R. Preferred surgical techniques for secondary intraocular lens implantation in adults with aphakia. Article. Int. Ophthalmol. 2023, 43, 3539–3547. [Google Scholar] [CrossRef]
- Hazar, L.; Kara, N.; Bozkurt, E.; Ozgurhan, E.B.; Demirok, A. Intraocular lens implantation procedures in aphakic eyes with insufficient capsular support associated with previous cataract surgery. J. Refract. Surg. 2013, 29, 685–691. [Google Scholar] [CrossRef]
- Price, M.O.; Price, F.W., Jr.; Werner, L.; Berlie, C.; Mamalis, N. Late dislocation of scleral-sutured posterior chamber intraocular lenses. J. Cataract Refract. Surg. 2005, 31, 1320–1326. [Google Scholar] [CrossRef]
- Gabor, S.G.; Pavlidis, M.M. Sutureless intrascleral posterior chamber intraocular lens fixation. J. Cataract Refract. Surg. 2007, 33, 1851–1854. [Google Scholar] [CrossRef]
- Maggi, R.; Maggi, C. Sutureless scleral fixation of intraocular lenses. J. Cataract Refract. Surg. 1997, 23, 1289–1294. [Google Scholar] [CrossRef]
- Yamane, S.; Sato, S.; Maruyama-Inoue, M.; Kadonosono, K. Flanged Intrascleral Intraocular Lens Fixation with Double-Needle Technique. Ophthalmology 2017, 124, 1136–1142. [Google Scholar] [CrossRef]
- Oh, S.Y.; Lee, S.J.; Park, J.M. Comparision of surgical outcomes of intraocular lens refixation and intraocular lens exchange with perfluorocarbon liquid and fibrin glue-assisted sutureless scleral fixation. Eye 2015, 29, 757–763. [Google Scholar] [CrossRef]
- Stem, M.S.; Todorich, B.; Woodward, M.A.; Hsu, J.; Wolfe, J.D. Scleral-Fixated Intraocular Lenses: Past and Present. J. Vitreoretin Dis. 2017, 1, 144–152. [Google Scholar] [CrossRef]
- Byun, Z.; Kim, D.I.; Kong, M. Long-Term Analysis of Intrascleral Fixation of Intraocular Lens: Trocar-Cannula-Based Sutureless Intrascleral Fixation Versus Sutured Scleral Fixation. Retina 2023, 43, 815–822. [Google Scholar] [CrossRef]
- Cui, Y.; Li, Q.; Shi, X.; Zhou, D. A comparative study of transscleral sutured intraocular lens fixation and sutureless flanged intraocular lens fixation. BMC Ophthalmol. 2023, 23, 23. [Google Scholar] [CrossRef]
- Elsayed, T.; Hegab, M.; Al-Nashar, H.; Dessouky, R.K. Double-flanged 6/0 polypropylene suture versus flanged haptic technique for intraocular lens fixation. Delta J. Ophthalmol. 2022, 23, 103–111. [Google Scholar] [CrossRef]
- Jang, K.H.; Kong, M.; Moon, B.G.; Son, G. Comparison of Scleral Fixation of Intraocular Lens: Sutureless Intrascleral Fixation Versus Conventional Sutured Scleral Fixation. Retina 2021, 41, 761–767. [Google Scholar] [CrossRef]
- Jo, G.H.; Seo, E.J.; Jung, M.S.; Kim, K.T. Comparison of Surgical Outcomes between Conventional Sutured Scleral Fixation and Flanged Intrascleral Intraocular Lens Fixation. J. Korean Ophthalmol. 2023, 64, 387–395. [Google Scholar] [CrossRef]
- Kim, M.J.; Han, G.L.; Chung, T.Y.; Lim, D.H. Comparison of Clinical Outcomes among Conventional Scleral Fixation, Retropupillary Iris-claw Intraocular Lens Implantation, and Intrascleral Fixation. Korean J. Ophthalmol. 2022, 36, 413–422. [Google Scholar] [CrossRef]
- Kim, T.H.; Kwon, Y.H. Comparison of Short-term Clinical Outcomes between Sutured Scleral Fixation and Modified Yamane Sutureless Scleral Fixation. J. Korean Ophthalmol. Soc. 2023, 64, 396–407. [Google Scholar] [CrossRef]
- Lee, J.H.; An, S.H. The Refractive Outcomes of Sutured and Sutureless Scleral Fixation (the Yamane Technique). J. Korean Ophthalmol. Soc. 2022, 63, 841–848. [Google Scholar] [CrossRef]
- Muth, D.R.; Wolf, A.; Kreutzer, T.; Shajari, M.; Vounotrypidis, E.; Priglinger, S.; Mayer, W.J. Safety and Efficacy of Current Sclera Fixation Methods for Intraocular Lenses and Literature Overview. Klin Monbl Augenheilkd. 2021, 238, 868–874. [Google Scholar] [CrossRef]
- Raina, U.K.; Kumar, B.; Bhattacharya, S.; Saini, V.; Gupta, S.K.; Goyal, J. A comparison of sutureless flanged fixation and 4-point Gore-Tex fixation for scleral-fixated intraocular lenses: A pilot study. Digit. J. Ophthalmol. 2022, 28, 51–57. [Google Scholar] [CrossRef]
- Yalcinbayir, O.; Avci, R.; Ucan Gunduz, G.; Mavi Yildiz, A.; Cetin Efe, A.; Baykara, M. Comparison of two techniques in posterior lens dislocations: Scleral suture fixation vs. modified Yamane intrascleral lens fixation. J. Fr. Ophtalmol. 2022, 45, 13–19. [Google Scholar] [CrossRef]
- Zyablitskaya, M.; Hong, E.; Chen, R.W.S.; Chang, S.; Suh, L.H. Outcomes of four-point suture fixated and two-point sutureless posterior chamber IOLs combined with pars plana vitrectomy. BMC Ophthalmol. 2022, 22, 57. [Google Scholar] [CrossRef]
- Jacobsen, M.F.; Holm, L.M.; Erichsen, J.H.; Konge, L.; Siersma, V.; la Cour, M.; Thomsen, A.S.S. Defining the surgical footprint in cataract surgery: Patient-related outcomes dependent on the experience of the surgeon. Acta Ophthalmol. 2021, 99, e999–e1005. [Google Scholar] [CrossRef]
- Lhuillier, L.; Jeancolas, A.L.; Renaudin, L.; Goetz, C.; Ameloot, F.; Premy, S.; Ouamara, N.; Perone, J.M. Impact of Ophthalmic Surgeon Experience on Early Postoperative Central Corneal Thickness After Cataract Surgery. Cornea 2017, 36, 541–545. [Google Scholar] [CrossRef]
- Lefebvre, C.G.J.; Briscoe, S.; Featherstone, R.; Littlewood, A.; Metzendorf, M.-I.; Noel-Storr, A.; Paynter, R.; Rader, T.; Thomas, J.; Wieland, L.S. Chapter 4: Searching for and Selecting Studies. Cochrane. Available online: https://training.cochrane.org/handbook (accessed on 15 September 2023).
- Page, M.J.; McKenzie, J.E.; Bossuyt, P.M.; Boutron, I.; Hoffmann, T.C.; Mulrow, C.D.; Shamseer, L.; Tetzlaff, J.M.; Akl, E.A.; Brennan, S.E.; et al. The PRISMA 2020 statement: An updated guideline for reporting systematic reviews. Syst. Rev. 2021, 10, 89. [Google Scholar] [CrossRef]
- NHLBIN Study Quality Assessment Tools. Available online: https://www.nhlbi.nih.gov/health-topics/study-quality-assessment-tools (accessed on 17 December 2023).
- Sterne, J.A.; Hernán, M.A.; Reeves, B.C.; Savović, J.; Berkman, N.D.; Viswanathan, M.; Henry, D.; Altman, D.G.; Ansari, M.T.; Boutron, I.; et al. ROBINS-I: A tool for assessing risk of bias in non-randomised studies of interventions. BMJ 2016, 355, i4919. [Google Scholar] [CrossRef]
- Sterne, J.A.C.; Savović, J.; Page, M.J.; Elbers, R.G.; Blencowe, N.S.; Boutron, I.; Cates, C.J.; Cheng, H.Y.; Corbett, M.S.; Eldridge, S.M.; et al. RoB 2: A revised tool for assessing risk of bias in randomised trials. BMJ 2019, 366, l4898. [Google Scholar] [CrossRef]
- Tham, T.; Bhuiya, S.; Wong, A.; Zhu, D.; Romo, T.; Georgolios, A. Clinical Outcomes in Dorsal Preservation Rhinoplasty: A Meta-Analysis. Facial Plast. Surg. Aesthetic Med. 2022, 24, 187–194. [Google Scholar] [CrossRef]
- Tobaiqi, M.A.; Albadawi, E.A.; Fadlalmola, H.A.; Albadrani, M.S. Application of Virtual Reality-Assisted Exergaming on the Rehabilitation of Children with Cerebral Palsy: A Systematic Review and Meta-Analysis. J. Clin. Med. 2023, 12, 7091. [Google Scholar] [CrossRef] [PubMed]
- Desai, P. The National Cataract Surgery Survey: II. Clinical outcomes. Eye 1993, 7 Pt 4, 489–494. [Google Scholar] [CrossRef] [PubMed]
- Eloranta, H.; Falck, A. Is an ophthalmic check-up needed after uneventful cataract surgery? A large retrospective comparative cohort study of Finnish patients. Acta Ophthalmol. 2017, 95, 665–670. [Google Scholar] [CrossRef] [PubMed]
- Chi, Q.; Yang, T.; Chen, Y. A systematic review and meta-analysis on intraocular lens implantation with different performances for the treatment of cataract. Ann. Palliat. Med. 2022, 11, 260–271. [Google Scholar] [CrossRef]
- Liang, I.C.; Chang, Y.H.; Hernández Martínez, A.; Hung, C.F. Iris-Claw Intraocular Lens: Anterior Chamber or Retropupillary Implantation? A Systematic Review and Meta-Analysis. Medicina 2021, 57, 785. [Google Scholar] [CrossRef]
- Saleem, M.I.; Peng, T.; Zhu, D.; Wong, A.; Pereira, L.M.; Tham, T. Sentinel Lymph Node Biopsy Versus Elective Node Dissection in Stage cT1-2N0 Oral Cavity Cancer. Laryngoscope 2022, 132, 989–998. [Google Scholar] [CrossRef]
- Wong, A.; Zhu, D.; Kraus, D.; Tham, T. Radiologically Defined Sarcopenia Affects Survival in Head and Neck Cancer: A Meta-Analysis. Laryngoscope 2021, 131, 333–341. [Google Scholar] [CrossRef]
- Wan, X.; Wang, W.; Liu, J.; Tong, T. Estimating the sample mean and standard deviation from the sample size, median, range and/or interquartile range. BMC Med. Res. Methodol. 2014, 14, 135. [Google Scholar] [CrossRef] [PubMed]
- Gupta, N.; Boodman, C.; Jouego, C.G.; Van Den Broucke, S. Doxycycline vs azithromycin in patients with scrub typhus: A systematic review of literature and meta-analysis. BMC Infect. Dis. 2023, 23, 884. [Google Scholar] [CrossRef] [PubMed]
- Wang, X.; Soh, K.G.; Samsudin, S.; Deng, N.; Liu, X.; Zhao, Y.; Akbar, S. Effects Effects of high-intensity functional training on physical fitness and sport-specific performance among the athletes: A systematic review with meta-analysis. PLoS ONE 2023, 18, e0295531. [Google Scholar] [CrossRef] [PubMed]
- Guyatt, G.H.; Oxman, A.D.; Vist, G.E.; Kunz, R.; Falck-Ytter, Y.; Alonso-Coello, P.; Schünemann, H.J. GRADE: An emerging consensus on rating quality of evidence and strength of recommendations. BMJ 2008, 336, 924–926. [Google Scholar] [CrossRef]
- Garg, A.; Lau, T.H.A.; Popovic, M.M.; Kertes, P.J.; Muni, R.H. Sutured Scleral-Fixated Versus Anterior Chamber Intraocular Lens Implantation: A Meta-Analysis. Ophthalmic Surg. Lasers Imaging Retin. 2022, 53, 12–21. [Google Scholar] [CrossRef]
- Kalhorn, A.; Patnaik, J.L.; Ifantides, C.; Capitena Young, C.E.; Lynch, A.M.; Christopher, K.L. Association between Increased Cataract Surgery Duration and Postoperative Outcomes. Ophthalmic Epidemiol. 2022, 30, 1–6. [Google Scholar] [CrossRef]
- Kong, C.F.; Lee, B.W.H.; George, A.; Ling, M.L.H.; Jain, N.S.; Francis, I.C. Cataract surgery operating times: Relevance to surgical and visual outcomes. J. Cataract Refract. Surg. 2019, 45, 1849. [Google Scholar] [CrossRef] [PubMed]
- Scharioth, G.B.; Prasad, S.; Georgalas, I.; Tataru, C.; Pavlidis, M. Intermediate results of sutureless intrascleral posterior chamber intraocular lens fixation. J. Cataract Refract. Surg. 2010, 36, 254–259. [Google Scholar] [CrossRef] [PubMed]
- Stem, M.S.; Wa, C.A.; Todorich, B.; Woodward, M.A.; Walsh, M.K.; Wolfe, J.D. 27-Gauge Sutureless Intrascleral Fixation of Intraocular Lenses with Haptic Flanging: Short-Term Clinical Outcomes and a Disinsertion Force Study. Retina 2019, 39, 2149–2154. [Google Scholar] [CrossRef] [PubMed]
- João, M.D.; Costa, J.V.; Sousa, K.; Monteiro, T.; Lopes, N.; Calvão-Santos, G.; Cruz, C.; Vaz, F. Visual and refractive outcomes following secondary intraocular lens implantation. Semin. Ophthalmol. 2022, 37, 619–625. [Google Scholar] [CrossRef]
- Lin, H.; Ye, X.; Huang, X.; Li, H.; Wang, Z.; Niu, Y.; Bi, Y. Long-Term Stability of Intraocular Lens with Trimmed or Untrimmed Haptics in Yamane Sutureless Intrascleral Fixation Technique. Med. Sci. Monit. 2021, 27, e928868. [Google Scholar] [CrossRef]
Source (Author Year) | Study Design | Techniques | Country | Mean Age | Number of Eyes | Last Follow-Up (Months) |
---|---|---|---|---|---|---|
Byun 2023 [20] | Retrospective | Trocar-cannula-based sutureless, sutured scleral fixated | South Korea | 61.37 ± 10.95; 60.86 ± 11.45 (sutureless), 62.00 ± 10.54 (sutured) | 58 (28 sutureless, 23 sutured) | 12 |
Cui 2023 [21] | Prospective, non-randomized | Yamane, sutured scleral fixation | China | 56.5 ± 13.9 (sutureless), 56.5 ± 10.1 (sutured) | 53 (26 sutureless, 27 sutured) | 12 |
Do 2021 [5] | Prospective, randomized | Yamane, sutured scleral fixation | South Korea | 63.3 ± 7.0 (sutureless), 64.1 ± 6.9 (sutured) | 103 (50 sutureless, 53 sutured) | 12 |
Elsayed 2022 [22] | Retrospective | Flanged haptic fixation, sutured scleral fixated | Egypt | 61.1 ± 6.41 (sutureless), 59.2 ± 8.20 (sutured) | 50 (25 sutureless, 25 sutured) | 6 |
Jang 2021 [23] | Retrospective | Yamane, sutured scleral fixation | South Korea | 61.49 ± 11.89; 62.92 ± 9.91 (sutureless), 60.68 ± 12.92 (sutured) | 70 (25 sutureless, 45 sutured) | 6 |
Jo 2023 [24] | Retrospective | Yamane, sutured scleral fixation | South Korea | 61.23 ± 9.22 (sutureless), 61.82 ± 8.20 (sutured) | 69 (30 sutureless, 33 sutured) | 6 |
Kim 2022 [25] | Retrospective | Yamane, sutured scleral fixation | South Korea | 61.2 ± 8.7 (sutureless), 56.8 ± 11.6 (sutured) | 35 (12 sutureless, 23 sutured) | 6 |
Kim 2023 [26] | Retrospective | Yamane, sutured scleral fixation (10-0 polypropylene) | South Korea | 60.75 ± 10.71 (sutureless) 59.16 ± 12.50 (sutured) | 83 (40 sutureless, 43 sutured) | 3 |
Lee 2022 [27] | Retrospective | Yamane, sutured scleral fixation | South Korea | 65.920 ± 13.942 (sutureless), 58.350 ± 12.787 (sutured) | 32 (12 sutureless, 20 sutured) | 1 |
Muth 2021 [28] | Retrospective | Prolene suture, Gore-Tex suture, Yamane | Germany | 63.8 ± 19.4; 68.4 ± 15.4 (sutureless), 62.8 ± 22.4 (Prolene), 58.7 ± 20.4 (Gore-Tex) | 57 (22 sutureless, 20 Prolene, 15 Gore-Tex) | N/A |
Raina 2022 [29] | Prospective, randomized | Yamane, sutured scleral fixation (Gore-Tex) | India | 46.67 ± 16.97 (sutureless), 27.15 ± 13.29 (sutured) | 35 (15 sutureless, 20 sutured) | 6 |
Yalcinbayir 2022 [30] | Retrospective | Yamane, sutured scleral fixation | Turkey | 61.6 ± 19.2 (sutureless), 53.9 ± 19.2 (sutured) | 74 (39 sutureless, 35 sutured) | 12 |
Zyablitskaya 2022 [31] | Retrospective | Two-point sutureless (CTL IOL), four-point sutured (AK IOL) | United States | 68 ± 19.62 | 31 (7 sutureless, 24 sutured) | 1 |
Yamane Technique Complications | Scleral-Sutured Complications | ||
---|---|---|---|
Cystoid Macular Edema | 20 | Cystoid Macular Edema | 30 |
Increased IOP | 8 | Increased IOP | 16 |
Vitreous Hemorrhage | 7 | Vitreous Hemorrhage | 9 |
Suture/Haptic Complications | 5 | Suture/Haptic Complications | 8 |
Retinal Detachment | 1 | Retinal Detachment | 2 |
Glaucoma | 1 | Glaucoma | 1 |
Corneal Edema | 4 | Corneal Edema | 1 |
Hyphema | 2 | Hyphema | 0 |
IOL Decentration | 5 | IOL Decentration | 0 |
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Zhang, C.; Palka, C.; Zhu, D.; Lai, D.; Winokur, J.; Shwani, T.; DeAngelis, M.M.; Reynolds, A.L. Clinical Outcomes in Scleral Fixation Secondary Intraocular Lens with Yamane versus Suture Techniques: A Systematic Review and Meta-Analysis. J. Clin. Med. 2024, 13, 3071. https://doi.org/10.3390/jcm13113071
Zhang C, Palka C, Zhu D, Lai D, Winokur J, Shwani T, DeAngelis MM, Reynolds AL. Clinical Outcomes in Scleral Fixation Secondary Intraocular Lens with Yamane versus Suture Techniques: A Systematic Review and Meta-Analysis. Journal of Clinical Medicine. 2024; 13(11):3071. https://doi.org/10.3390/jcm13113071
Chicago/Turabian StyleZhang, Charles, Charles Palka, Daniel Zhu, Daniel Lai, Jules Winokur, Treefa Shwani, Margaret M. DeAngelis, and Andrew L. Reynolds. 2024. "Clinical Outcomes in Scleral Fixation Secondary Intraocular Lens with Yamane versus Suture Techniques: A Systematic Review and Meta-Analysis" Journal of Clinical Medicine 13, no. 11: 3071. https://doi.org/10.3390/jcm13113071
APA StyleZhang, C., Palka, C., Zhu, D., Lai, D., Winokur, J., Shwani, T., DeAngelis, M. M., & Reynolds, A. L. (2024). Clinical Outcomes in Scleral Fixation Secondary Intraocular Lens with Yamane versus Suture Techniques: A Systematic Review and Meta-Analysis. Journal of Clinical Medicine, 13(11), 3071. https://doi.org/10.3390/jcm13113071