| Literature DB >> 29891902 |
Paul G Ursell1, Mukesh Dhariwal2, Katarina Majirska3, Frank Ender4, Shoshannah Kalson-Ray5, Alessandra Venerus5, Cristiana Miglio5, Christine Bouchet6.
Abstract
PURPOSE: To evaluate 3-year incidence of Nd:YAG capsulotomy and PCO and compare the effect of different IOL materials.Entities:
Mesh:
Substances:
Year: 2018 PMID: 29891902 PMCID: PMC6189124 DOI: 10.1038/s41433-018-0131-2
Source DB: PubMed Journal: Eye (Lond) ISSN: 0950-222X Impact factor: 3.775
Fig. 1Population selection and attrition for eyes included in the study
Number of eyes included in each of the study groups by IOL model and design
| Optic materiala | IOL model | Haptic design | Surface design |
|
|---|---|---|---|---|
| AcrySof Hydrophobic ( | SA60AT (Alcon) | Single-piece | Non-360 sharp edge | 6793 |
| SN60WF IQ (Alcon) | Single-piece | Non-360 sharp edge | 6077 | |
| NATURAL (Alcon) | Single-piece | Non-360 sharp edge | 141 | |
| MA60AC (Alcon) | Multi-piece | Non-360 sharp edge | 166 | |
| MA30AC (Alcon) | Multi-piece | Non-360 sharp edge | 5 | |
| MA50BM (Alcon) | Multi-piece | 360 sharp edge | 99 | |
| MA60MA (Alcon) | Multi-piece | 360 sharp edge | 47 | |
| MA60BM (Alcon) | Multi-piece | 360 sharp edge | 1 | |
| Non-AcrySof Hydrophobic ( | TECNIS ZCB00 (AMO) | Single-piece | 360 sharp edge | 15,083 |
| SENSAR AR40E (AMO) | Multi-piece | 360 sharp edge | 110 | |
| TECNIS ZA9003 (AMO) | Multi-piece | Non-360 sharp edge | 3832 | |
| Non-AcrySof Hydrophilic ( | AKREOS ADAPT (B&L) | Single-piece | 360 sharp edge | 8514 |
| SOFTEC HD (Lenstec) | Single-piece | 360 sharp edge | 4701 | |
| C-FLEX 970 C (Rayner) | Single-piece | 360 sharp edge | 3607 | |
| SOFTEC 1 (Lenstec) | Single-piece | 360 sharp edge | 1573 | |
| AKREOS MICS MI60 (B&L) | Single-piece | 360 sharp edge | 830 | |
| SUPERFLEX 920 H (Rayner) | Single-piece | 360 sharp edge | 576 | |
| INCISE (Renishaw) | Single-piece | 360 sharp edge | 6 | |
| 570 H (Rayner) | Multi-piece | Non-360 sharp edge | 1 |
aAcrylic IOLs are also available as hybrid surface properties (i.e. hydrophilic with hydrophobic surface properties); however, none were identified in the study sample
Baseline characteristics for all eyes and by study groups
| Characteristic | Statistic | All eyes | AcrySof | Non-AcrySof hydrophilic | Non-AcrySof hydrophobic |
|---|---|---|---|---|---|
| Single eye operated | 26,484 (50.8) | 7466 (56.0) | 11,080 (55.9) | 7940 (41.7) | |
| Eyes with fellow eye operated | 25,678 (49.2) | 5863 (44.0) | 8728 (44.1) | 11,085 (58.3) | |
| Age at index date for first eyes operated |
| 39,324 (75.4) | 10,606 (79.6) | 15,391 (77.7) | 13,327 (70.0) |
| Mean (SD) | 78.7 (7.0) | 78.7 (7.1) | 78.9 (7.1) | 78.5 (7.0) | |
| Age at index date for second eyes operated |
| 12,838 (24.6) | 2723 (20.4) | 4417 (22.3) | 5698 (30.0) |
| Mean (SD) | 78.9 (6.7) | 78.8 (6.8) | 79.0 (6.8) | 78.8 (6.7) | |
| Gender | 20,852 (40.0) | 5292 (39.7) | 7989 (40.3) | 7571 (39.8) | |
| Co-pathologies | |||||
| Record of any co-pathology (yes) | 20,343 (39.0) | 4743 (35.6) | 7792 (39.3) | 7808 (41.0) | |
| Disease not specified | 1932 (3.7) | 420 (3.2) | 844 (4.3) | 668 (3.5) | |
| Glaucoma | 5195 (25.5) | 1031 (26.7) | 2238 (28.7) | 1926 (24.7) | |
| Age-related macular degeneration | 5101 (25.1) | 1213 (25.6) | 1693 (21.7) | 2195 (28.1) | |
| Diabetic retinopathy | 2688 (13.2) | 783 (16.5) | 995 (12.8) | 910 (11.7) | |
| Brunescent/white cataract | 1993 (9.8) | 438 (9.2) | 988 (12.7) | 567 (7.3) | |
| Corneal pathology | 1787 (8.8) | 380 (8.0) | 547 (7) | 860 (11) | |
| Most recent BDVA prior to surgery (logMAR) | Missing | 2203 (4.2) | 638 (5.0) | 613 (3.1) | 952 (5.0) |
| Median (IQR) | 0.3 (0.2–0.5) | 0.3 (0.2–0.5) | 0.3 (0.2–0.5) | 0.3 (0.2–0.5) | |
| Use of vision blue (yes) | 1830 (3.5) | 401 (3.0) | 764 (3.9) | 665 (3.5) | |
| Pupil size | |||||
| Small | 1794 (3.4) | 489 (3.7) | 696 (3.5) | 609 (3.2) | |
| Medium | 7482 (14.3) | 2812 (21.1) | 2327 (11.7) | 2343 (12.3) | |
| Large | 42,886 (82.2) | 10,028 (75.2) | 16,785 (84.7) | 16,073 (84.5) | |
| Incision meridian | |||||
| Superior | 21,371 (41.0) | 6196 (46.5) | 10,544 (53.2) | 4631 (24.3) | |
| Temporal | 8663 (16.6) | 2384 (17.9) | 1532 (7.7) | 4747 (25) | |
| On-axis | 22,128 (42.4) | 4749 (35.6) | 7732 (39) | 9647 (50.7) | |
| Incision site | |||||
| Scleral | 1713 (3.3) | 1240 (9.3) | 0 (0) | 473 (2.5) | |
| Limbal | 1447 (2.8) | 458 (3.4) | 297 (1.5) | 692 (3.6) | |
| Clear corneal | 49,002 (93.9) | 11,631 (87.3) | 19,511 (98.5) | 17,860 (93.9) | |
| IOL power | Mean (SD) | 21.6 (3.8) | 21.5 (3.8) | 21.2 (3.6) | 22.2 (3.8) |
| Surgeon seniority | |||||
| Missing | 99 (0.2) | 37 (0.3) | 5 (0) | 57 (0.3) | |
| Junior trainee | 2715 (5.2) | 990 (7.4) | 363 (1.8) | 1362 (7.2) | |
| Senior trainee | 16,061 (30.8) | 3273 (24.6) | 5798 (29.3) | 6990 (36.7) | |
| Consultant | 33,287 (3.9) | 9029 (67.9) | 13,642 (68.9) | 10,616 (55.8) | |
Fig. 2Incidence proportions of Nd:YAG capsulotomy at 1, 2 and 3 years following cataract surgery for eyes implanted with AcrySof, non-AcrySof hydrophobic and non-AcrySof hydrophilic IOLs. Figure 2a includes both single and multi-piece IOLs, Fig. 2b includes single-piece IOLs only
Fig. 3Kaplan–Meier survival plots of eyes implanted with AcrySof, non-AcrySof hydrophobic and non-AcrySof hydrophilic IOLs and not requiring Nd:YAG capsulotomy over 3 years following cataract surgery. Curves represent the survival estimates with number of subjects at risk and 95% Hall–Wellner Bands. Figure 3a includes both single and multi-piece IOLs, Fig. 3b includes single-piece IOLs only
Fig. 4Adjusted ORs of undergoing Nd:YAG capsulotomy over 3 years from cataract surgery for eyes implanted with non-AcrySof hydrophobic and hydrophilic versus AcrySof IOLs. Multivariate logistic regression with level of significance = 0.05. ORs > 1 indicate that the comparator cohort is protective against Nd:YAG capsulotomy. a includes both single and multi-piece IOLs, b includes single-piece IOLs only
Fig. 5Incidence proportions of PCO at 1, 2 and 3 years following cataract surgery for eyes implanted with AcrySof, non AcrySof hydrophobic and non-AcrySof hydrophilic IOLs