Postoperative Astigmatism after Keratoplasty: A Systematic Review Meta-Analysis Based on PRISMA
Abstract
:1. Introduction
2. Methodology
2.1. Search Strategy
2.2. Clinical Outcomes
2.3. Data Extraction
2.4. Data Statistical Analyses
3. Results
3.1. The Change in Astigmatism
3.2. The Change in Visual Acuity
4. Discussion
4.1. Limitations of the Study
- The main limitation of this review is the lack of standardization due to several different studies having different methods for measuring astigmatism, with different methods such as keratometry, pentacam, and autorefractors included within the present research;
- There was risk of bias in studies where most research only disseminates good results and successful operations and does not record cases where a corneal transplant failed, or the patch was rejected;
- A low number of studies were available on the topic;
- There is a lack of information about the corneal graft in the preoperative and postoperative periods. Graft health, endothelial count, and clear zone all affect the outcome and should be well documented to further explain the results;
- There was a lack of standardization of research and evaluation of results.
4.2. Power Analysis
5. Conclusions
Funding
Institutional Review Board Statement
Data Availability Statement
Conflicts of Interest
References
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Author | No. of Eyes | Study | Method | Best Corrected Visual Acuity (BCVA) in logMAR | Topographical Corneal Astigmatism in Diopters | ||
---|---|---|---|---|---|---|---|
Preoperatively | Postoperatively | Preoperatively | Postoperatively | ||||
1. García de Oteyza et al. (2022) [12] | 51 eyes | Retrospective quasi-experimental, before and after study | Manual wedge resection was performed after PK | 1.25 (0.27) logMAR | 0.84(0.50) logMAR | 2.68 (4.21) D | 0.86 (3.13) D |
2. Janiszewska-Bil et al. (2023) [13] | 96 eyes | Prospective study | Femto-LASIK after DALK | 0.1 ± 0.05 logMAR | 0.7 ± 0.05 (12 months) logMAR | ||
3. Alfonso-Bartolozzi et al. (2022) [14] | 10 eyes | Retrospective case series | Femto-LASIK after a DALK | 0.13 ± 0.05 logMAR | 0.47 ± 0.15 logMAR | −3.88 ± 1.00 D | −0.93 ± 0.39 D |
4. Alfonso-Bartolozzi et al. (2023)-Bartolozzi [15] | 40 eyes | Retrospective study | Ferrara-type ICRS implantation after DALK | 1.39 ± 0.55 logMAR | 0.71 ± 0.37 at 6 months logMAR | −6.86 ± 2.62 D | −2.33 ± 1.09 D at 6 months |
5. Bertino et al. (2022) [16] | 30 eyes | Prospective interventional study | Femtosecond laser-assisted ICRS implantation combined with PRK post penetrating keratoplasty | 1.16 ± 0.37 logMAR |
| 7.10 ± 1.13 D |
|
6. Bizrah et al. (2021) [17] | 54 eyes | Retrospective interventional case series | Topography-guided photorefractive keratectomy (TG-PRK) after PK | 0.96 ± 0.06 logMAR | 0.46 ± 0.05 logMAR | 5.24 ± 0.36 D | 2.98 ± 0.34 D at the final follow-up |
7. Sorkin et al. (2021) [8] | 150 eyes | Retrospective, comparative, pairwise-matched case series |
|
logMAR
logMAR |
logMAR
logMAR |
|
FSAK had superior visual and keratometric outcomes compared with manual AK |
8. Elkadim et al. (2020) [5] | 40 eyes | Retrospective interventional case series | Novel blunt dissection technique after modified DALK | 0.21 ± 0.20 logMAR | 0.11 ± 0.13 logMAR (p < 0.001) | 6.32 ± 2.56 D | 2.61 ± 1.05 D (p < 0.001) |
9. Mejía et al. (2020) [18] | 39 eyes | Retrospective observational study | Corneal wedge resection after DALK | 0.35 ± 0.01 logMAR | 0.57 ± 0.02 at 12 months logMAR | 7.99 ± 0.25 D | 2.5 ± 0.3 D at 12 months and remained stable thereafter (a mean follow-up of 76.3 months) |
10. AnNakh and Khattak. (2019) [19] | 50 eyes | Retrospective, comparative, interventional study | Femtosecond laser-assisted astigmatic keratotomy for suture-out post DALK or PKP corneal astigmatism | 0.57 ± 0.48 logMAR | 0.38 ± 0.29 logMAR | 4.55 ± 2.52 D | 3.17 ± 1.68 D |
11. Drouglazet-Moalic et al. (2019) [20] | 20 eyes | Prospective study | Deep intrastromal arcuate keratotomy with in situ keratomileusis (DIAKIK) after keratoplasty. | 1.12 ± 0.42 logMAR | 0.58 ± 0.23 logMAR | −5.01 ± 4.35 D | −1.54 ± 2.42 D |
12. Schiano Lomoriello et al. (2018) [21] | 10 eyes | Prospective, noncomparative, interventional case series | A customized toric IOL implantation after DALK and cataract surgery | 0.55 ± 0.29 logMAR | 0.14 ± 0.12 logMAR | 4.92 ± 1.99 D | 3.80 ± 1.60 D |
13. Arantes et al. (2017) [22] | 25 eyes | Retrospective, longitudinal study | Intrastromal corneal ring segments for astigmatism correction after DALK | 0.33 (±0.10) logMAR | 0.20 (±0.09) logMAR | 3.87 D | 1.90 D |
14. Javadi et al. (2017) [23] | 24 eyes | Interventional case series | Relaxing incision procedure after DALK | 0.26 ± 0.14 logMAR | 0.22 ± 0.09 logMAR | 6.28 ± 1.20 (range, 4.0 to 9.0) D | 3.45 ± 1.80 (range, 0 to 8.50) D |
15. St. Clair et al. (2016) [24] | 140 eyes | Retrospective interventional case series |
| 0.47 logMAR ± 0.38 (SD) | 0.35 ± 0.31 logMAR | 6.77 ± 2.80 D | 2.85 ± 2.57 D |
16. Alipour et al. (2015) [25] | 12 eyes | Prospective interventional case series | Fitting with miniscleral lenses after DALK | 1.05 logMar (SD: 0.54) | 0.17 logMar (SD: 0.19) with the miniscleral lens. | ||
17. Romano et al. (2015) [26] | 158 eyes | Retrospective noncomparative interventional study | Astigmatic keratotomy or laser refractive surgery after DALK. | UDVA was 20/400 (1.5 ± 0.4 logMAR), CDVA 20/50 (0.7 ± 0.2 logMAR) | UDVA was 20/50 (0.5 ± 0.3 logMAR), CDVA to 20/25 (0.09 ± 0.1 logMAR) | 4.7 ± 2.6 D | 2.9 ± 1.3 D |
18. Lockington et al. (2014) [27] | 26 eyes | Retrospective case series | Cataract surgery and toric IOL (Acrysof SN60AT or T-flex 623T/573T) implantation post keratoplasty | 1.12 ± 0.67 logMAR | 0.45 ± 0.39 logMAR | −5.49 ± 3.72 D | −2.61 ± 2.10 D |
19. Kubaloglu et al. (2011) [28] | 44 eyes | Prospective, comparative, interventional case series | Standard manual 1-pair, 90-degree, and 90% corneal thickness AK incisions after DALK or PK 44 eyes (20 eyes underwent DALK; 24 eyes underwent PK) |
|
|
| After 6 months follow-up
|
20. Ratanasit A et al. (2011) [29] | 5 eyes | Retrospective case series | Photorefractive keratectomy (PRK) or laser-assisted in situ keratomileusis (LASIK) with intraoperative mitomycin C after DSAEK | 0.68 ± 0.15 logMAR | 0.78 ± 0.13 logMAR | 7.05 ± 2.03 D (range, 4–9.75 D) | 1.08 ± 0.58 D (range, 0–2.50 D) |
21. Leccisotti et al. (2010) [30] | 16 eyes | Retrospective, consecutive, noncomparative, single-surgeon series | Phacoemulsification and IOL implantation after DALK | 0.48 logMAR | 0.13 logMAR | 10.32 D | 2.57 D |
Methods Used for Refraction Correction | n | % | |
---|---|---|---|
1. | Manual wedge resection was performed after PK | 51 | 4.904 |
2. | Femto–LASIK after DALK | 106 | 10.192 |
3. | Ferrara-type ICRS implantation after DALK | 40 | 3.846 |
4. | Femtosecond laser-assisted ICRS implantation combined with PRK post penetrating keratoplasty | 30 | 2.885 |
5. | Topography-guided photorefractive keratectomy (TG-PRK) after PK | 54 | 5.192 |
6. | Femtosecond or manual astigmatic keratotomy following PK or DALK | 150 | 14.423 |
7. | Novel blunt dissection after modified DALK | 40 | 3.846 |
8. | Corneal wedge resection after DALK | 39 | 3.750 |
9. | Femtosecond laser-assisted astigmatic keratotomy after DALK and PKP | 50 | 4.808 |
10. | Deep intrastromal arcuate keratotomy with in situ keratomileusis (DIAKIK) after keratoplasty | 20 | 1.923 |
11. | A customized toric IOL implantation after DALK and cataract surgery | 10 | 0.962 |
12. | Intrastromal corneal ring segments for astigmatism correction after DALK | 25 | 4.404 |
13. | Relaxing incision procedure after DALK | 24 | 2.308 |
14. | Femtosecond laser AK procedures were performed after penetrating keratoplasty (PKP) | 129 | 12.404 |
15. | Femtosecond laser AK procedures were performed after deep anterior lamellar keratoplasty (DALK) | 11 | 1.058 |
16. | Fitting with miniscleral lenses after DALK | 12 | 1.154 |
17. | Astigmatic keratotomy or laser refractive surgery after DALK | 158 | 15.192 |
18. | Cataract surgery and toric IOL (Acrysof SN60AT or T-flex 623T/573T) implantation post keratoplasty | 26 | 2.500 |
19. | Astigmatic keratotomy after DALK and PK | 44 | 4.231 |
20. | Photorefractive keratectomy (PRK) with intraoperative mitomycin C after DSAEK | 5 | 0.481 |
21. | Phacoemulsification and IOL implantation after DALK | 16 | 11.538 |
Total | 1040 | 100 |
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Kijonka, M.; Nowińska, A.; Wylęgała, E.; Wylęgała, A.; Wróblewska-Czajka, E.; Kryszan, K.; Dugiełło, B.; Orzechowska-Wylęgała, B. Postoperative Astigmatism after Keratoplasty: A Systematic Review Meta-Analysis Based on PRISMA. J. Clin. Med. 2024, 13, 3306. https://doi.org/10.3390/jcm13113306
Kijonka M, Nowińska A, Wylęgała E, Wylęgała A, Wróblewska-Czajka E, Kryszan K, Dugiełło B, Orzechowska-Wylęgała B. Postoperative Astigmatism after Keratoplasty: A Systematic Review Meta-Analysis Based on PRISMA. Journal of Clinical Medicine. 2024; 13(11):3306. https://doi.org/10.3390/jcm13113306
Chicago/Turabian StyleKijonka, Magdalena, Anna Nowińska, Edward Wylęgała, Adam Wylęgała, Ewa Wróblewska-Czajka, Katarzyna Kryszan, Bogdan Dugiełło, and Bogusława Orzechowska-Wylęgała. 2024. "Postoperative Astigmatism after Keratoplasty: A Systematic Review Meta-Analysis Based on PRISMA" Journal of Clinical Medicine 13, no. 11: 3306. https://doi.org/10.3390/jcm13113306
APA StyleKijonka, M., Nowińska, A., Wylęgała, E., Wylęgała, A., Wróblewska-Czajka, E., Kryszan, K., Dugiełło, B., & Orzechowska-Wylęgała, B. (2024). Postoperative Astigmatism after Keratoplasty: A Systematic Review Meta-Analysis Based on PRISMA. Journal of Clinical Medicine, 13(11), 3306. https://doi.org/10.3390/jcm13113306