Diabetic Macular Edema, Diabetic Retinopathy
Conditions
Keywords
Diabetic Retinopathy, Diabetic Macular Edema, Lucentis, Ranibizumab, Triamcinolone, Laser photocoagulation, Combination Therapy
Brief summary
The purpose of the study is to find out which is a better treatment for diabetic macular edema (DME): laser alone, laser combined with an intravitreal injection of triamcinolone, laser combined with an intravitreal injection of ranibizumab, or intravitreal injection of ranibizumab alone. At the present time, it is not known whether intravitreal steroid or anti-vascular endothelial growth factor (anti-VEGF) injections, with or without laser treatment, are better than just laser by itself. It is possible that one or both of the types of injections, with or without laser treatment, will improve vision more often than will laser without injections. However, even if better vision outcomes are seen with injections, side effects may be more of a problem with the injections than with laser. Therefore, this study is conducted to find out whether the benefits of the injections will outweigh the risks.
Detailed description
Thus far the only demonstrated means to reduce the risk of vision loss from diabetic macular edema are laser photocoagulation, intensive glycemic control, and blood pressure control. Earlier studies have shown that photocoagulation, although effective in reducing the risk of moderate vision loss, can eventually result in retinal and retinal pigment epithelium atrophy resulting in loss of central vision, central scotomata, and decreased color vision. Consequently, many retinal specialists today tend to treat diabetic macular edema (DME) with lighter, less intense laser burns than was originally specified in the Early Treatment Diabetic Retinopathy Study (ETDRS). The additional unsatisfactory outcome from treatments with laser photocoagulation in a significant proportion of eyes with DME has prompted interest in other treatment modalities. One such treatment is pars plana vitrectomy. Studies suggest that vitreomacular traction may play a role in increased retinal vascular permeability, and that removal of the vitreous, or relief of mechanical traction with vitrectomy and membrane stripping may substantially improve macular edema and visual acuity. However, this treatment may be applicable only to a specific subset of eyes with a component of vitreomacular traction secondary to edema. Other treatment modalities such as pharmacologic therapy with oral protein kinase C inhibitors and intravitreal corticosteroids are under investigation. The use of antibodies targeted at vascular endothelial growth factor (VEGF) is another treatment modality that needs to be further explored for its potential benefits. Increased VEGF levels have been demonstrated in the retina and vitreous of human eyes with diabetic retinopathy. VEGF, also knows as vascular permeability factor, has been shown to increase retinal vascular permeability in in vivo models. Therapy that inhibits VEGF, therefore, may represent a useful therapeutic modality which targets the underlying pathogenesis of diabetic macular edema. Ranibizumab is a promising anti-VEGF drug. Its efficacy and safety have been demonstrated in treatment of age-related macular degeneration. Reports of its use and that of other anti-VEGF drugs in DME have suggested sufficient benefit to warrant evaluation of efficacy and safety in a phase III trial. Corticosteroids, a class of substances with anti-inflammatory properties, have also been demonstrated to inhibit the expression of the VEGF gene. The Diabetic Retinopathy Clinical Research Network (DRCR.net) is currently conducting a phase III randomized clinical trial comparing focal photocoagulation to intravitreal corticosteroids (triamcinolone acetonide) for diabetic macular edema. However, even if triamcinolone or ranibizumab are proven to be efficacious, a major concern, based on clinical observations with intravitreal corticosteroids, is that DME will recur as the effect of the intravitreal drug wears off, necessitating repetitive injections long-term. Combining an intravitreal drug (triamcinolone or ranibizumab) with photocoagulation provides hope that one could get the short-term benefit of the intravitreal drug (decreased retinal thickening and decreased fluid leakage) and the long-term reduction in fluid leakage as a result of photocoagulation. In addition, it is possible that the worsening of macular edema immediately following focal photocoagulation, a known complication of this treatment, could be decreased if an intravitreal drug was present at the time of photocoagulation. This might result in an increased likelihood of vision improvement following photocoagulation and a decreased likelihood of vision loss. This study is designed to determine if ranibizumab alone or ranibizumab added to laser photocoagulation is more efficacious than photocoagulation alone, and if so, to determine if combining ranibizumab with photocoagulation reduces the total number of injections needed to obtain these benefits. Furthermore, this study is designed to determine if combining photocoagulation with corticosteroids, the only other class of drugs currently being considered for treatment of DME, is efficacious in the population being enrolled. Subjects will be randomly assigned to one of the following 4 groups: 1. Group A: Sham injection plus focal (macular) photocoagulation 2. Group B: 0.5 mg injection of intravitreal ranibizumab plus focal photocoagulation 3. Group C: 0.5 mg injection of intravitreal ranibizumab plus deferred focal photocoagulation 4. Group D: 4 mg intravitreal triamcinolone plus focal photocoagulation In groups A, B and D, laser will be given 7-10 days after the initial injection at the time of the injection follow-up safety visit. During the first year, subjects are evaluated for retreatment every 4 weeks. The injection for group A is a sham and for groups B and C ranibizumab. For group D, a triamcinolone injection is given if one has not been given in the prior 15 weeks; otherwise a sham injection is given. For Groups A, B, and D, focal photocoagulation will be given 7 to 10 days later following each injection unless focal photocoagulation has been given in the past 15 weeks or no macular edema is present. In Years 2 and 3, subjects continue to be evaluated for retreatment every 4 weeks unless injections are discontinued due to failure. In that case, follow-up visits occur every 4 months and treatment is at investigator discretion.
Interventions
4 mg intravitreal triamcinolone at randomization plus focal photocoagulation 1 week post-injection, repeated every 16 weeks with sham injections at 4-week intervals in-between. Retreatment starting at 16 weeks depends on visual acuity and OCT.
0.5 mg intravitreal ranibizumab at randomization plus focal photocoagulation 1 week post-injection. Injections are repeated every 4 weeks with focal photocoagulation given post-injection every 16 weeks. Retreatment starting at 16 weeks depends on visual acuity and OCT.
Sham injection at randomization plus focal photocoagulation 1 week post-injection. Injections are repeated every 4 weeks with focal photocoagulation given post-injection every 16 weeks. Retreatment starting at 16 weeks depends on visual acuity and OCT.
0.5 mg intravitreal ranibizumab at randomization, repeated every 4 weeks. Retreatment starting at 16 weeks depends on visual acuity and OCT. If improvement has not occured from injections alone, laser can be given starting at the 24 week visit.
Sponsors
Study design
Eligibility
Inclusion criteria
General Inclusion Criteria To be eligible, the following inclusion criteria (1-5) must be met: * Age \>= 18 years * Diagnosis of diabetes mellitus (type 1 or type 2) * At least one eye meets the study eye criteria * Fellow eye (if not a study eye) meets criteria * Able and willing to provide informed consent General
Exclusion criteria
A subject is not eligible if any of the following
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Change in Visual Acuity From Baseline to 1 Year Grouped by Diabetic Retinopathy Severity | from baseline to 1 Year | Change in best correct visual acuity letter score from baseline to one year as measured by a certified tester using an electronic visual acuity testing machine based on the Early Treatment Diabetic Retinopathy Study (ETDRS) method. A positive change denotes an improvement. Best value on the scale 97, worst 0. |
| Change in Visual Acuity From Baseline to 1 Year Grouped by Optical Coherence Tomography Central Subfield Thickness | from baseline to 1 Year | Change in best correct visual acuity letter score from baseline to one year as measured by a certified tester using an electronic visual acuity testing machine based on the Early Treatment Diabetic Retinopathy Study (ETDRS) method. A positive change denotes an improvement. Best value on the scale 97, worst 0. |
| Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | from baseline to 1 Year | Change in best correct visual acuity letter score as measured by a certified tester using an electronic visual acuity testing machine based on the Early Treatment Diabetic Retinopathy Study (ETDRS) method. |
| Change in Visual Acuity From Baseline to 1 Year Grouped by Baseline Visual Acuity Letter Score | from baseline to 1 Year | Change in best correct visual acuity letter score as measured by a certified tester using an electronic visual acuity testing machine based on the Early Treatment Diabetic Retinopathy Study (ETDRS) method. A positive change denotes an improvement. Best value on the scale 97, worst 0. |
| Change in Visual Acuity From Baseline to 1 Year Among Eyes That Had Prior Treatment for Diabetic Macular Edema | from baseline to 1 Year | — |
| Mean Change in Visual Acuity (Letters) From Baseline to 1 Year Adjusted for Baseline Visual Acuity | from baseline to 1 Year | Change in best correct visual acuity letter score from baseline to one year as measured by a certified tester using an electronic visual acuity testing machine based on the Early Treatment Diabetic Retinopathy Study (ETDRS) method. A positive change denotes an improvement. Best value on the scale 97, worst 0. |
| Change in Visual Acuity From Baseline to 1 Year Among Eyes That Were Pseudophakic at Baseline | from baseline to 1 Year | — |
| Change in Visual Acuity From Baseline to 1 Year Grouped by Diffuse vs. Focal Edema as Characterized by the Investigator | from baseline to 1 Year | Change in best correct visual acuity letter score from baseline to one year as measured by a certified tester using an electronic visual acuity testing machine based on the Early Treatment Diabetic Retinopathy Study (ETDRS) method. A positive change denotes an improvement. Best value on the scale 97, worst 0. |
Secondary
| Measure | Time frame | Description |
|---|---|---|
| Number of Injections in First Year | from baseline to 1 year | Maximum possible number of injections for each of the following groups: sham+prompt laser=13 sham injections;ranibizumab+prompt laser=13 ranibizumab injections; ranibizumab+deferred laser=13 ranibizumab injections; triamcinolone+prompt laser=4 triamcinolone injections and 9 sham injections. |
| Percentage of Eyes Receiving Laser at the 48 Week Visit (%) | 1 Year | — |
| Mean Optical Coherence Tomography Retinal Volume at 1 Year | 1 Year | — |
| Change in Retinal Thickening of Central Subfield on Optical Coherence Tomography From Baseline to 1 Year | from baseline to 1 year | Negative change denotes an improvement. |
| Number of Laser Treatments Received Prior to the 1 Year Visit | 1 Year | One eye in the sham+prompt laser group did not receive laser until post 1-year due to an adverse event unrelated to study treatment. One eye in the triamcinolone+prompt laser did not receive laser until after 1-year due to missing 2 consecutive visits at the time of required laser treatment. |
| Mean Change in Optical Coherence Tomography Retinal Volume From Baseline to 1 Year | from baseline to 1 Year | — |
Other
| Measure | Time frame | Description |
|---|---|---|
| Central Subfield Thickness < 250 With at Least a 25 Micron Decrease From Baseline to 1 Year | 1 Year | — |
| Major Ocular Adverse Events During First Year of Follow-Up | 1 Year | — |
| Cardiovascular Events According to Antiplatelet Trialists' Collaboration Through 1 Year | 1 Year | Antiplatelet Trialists' Collaboration is a collaborative overview of randomised trials of antiplatelet therapy - I: Prevention of death, myocardial infarction, and stroke by prolonged antiplatelet therapy in various categories of patients. Antiplatelet Trialists' Collaboration. MBJ 1994; 308:81-106. Nonfatal cerebrovascular accident includes ischemic or hemorrhagic or unknown events. Vascular death includes death from any potential vascular or unknown cause. |
| Change From Severe Non-proliferative Diabetic Retinopathy or Worse From Baseline to 1-year | from baseline to 1 Year | Criteria are based on the ETDRS fundus photographic risk factors for the progression of diabetic retinopathy. ETDRS report no. 12. Ophthalmology 1991; 98:823-833, ETDRS Severity Scale = Diabetic retinopathy absent, minimal non-proliferative diabetic retinopathy (PDR), mild to moderately severe non-PDR, severe non-PDR, scars of full pr partial panretinal photocoagulation present PDR absent, mild to moderate PDR, high risk PDR, cannot grade, missing. |
| Change From Moderately Severe Non-proliferative Diabetic Retinopathy or Better From Baseline to 1-year | from baseline to 1 Year | 113 eyes had missing or ungradable photos at 1 year. Criteria are based on the ETDRS fundus photographic risk factors for the progression of diabetic retinopathy. ETDRS report no. 12. Ophthalmology 1991; 98:823-833 |
| Eyes With Alternative Treatments Prior to the 1-year Visit | 1 Year | Each combination of treatment only counted once. |
| Distribution of Logarithmic Transformation of Optical Coherence Tomography (LogOCT) Improvement and Worsening | 1 Year | Logarithmic transformation of optical coherence tomography central subfield thickness is calculated by taking the log base 10 of the ratio of the central subfield thickness divided by 200 and rounding to the nearest hundredth. The change is the change in the log values. |
Countries
United States
Participant flow
Recruitment details
Fifty two academic and community based sites across the United States recruited 691 study participants from March 2007 to December 2008.
Pre-assignment details
Participants with two study eyes enrolled each eye in a different treatment group. Therefore, each treatment group/arm includes no more than one study eye for a given participant, and thus the numbers of eyes is equal to the number of participants in each arm.
Participants by arm
| Arm | Count |
|---|---|
| Sham+Prompt Laser Sham injection at randomization plus focal photocoagulation 1 week post-injection. Injections are repeated every 4 weeks with focal photocoagulation given post-injection every 16 weeks. Retreatment starting at 16 weeks depends on visual acuity and OCT. | 293 |
| 0.5 mg Ranibizumab+Prompt Laser 0.5 mg intravitreal ranibizumab at randomization plus focal photocoagulation 1 week post-injection. Injections are repeated every 4 weeks with focal photocoagulation given post-injection every 16 weeks. Retreatment starting at 16 weeks depends on visual acuity and OCT. | 187 |
| 0.5 mg Ranibizumab+Deferred Laser 0.5 mg intravitreal ranibizumab at randomization, repeated every 4 weeks. Retreatment starting at 16 weeks depends on visual acuity and OCT. If improvement has not occured from injections alone, laser can be given starting at the 24 week visit. | 188 |
| 4 mg Triamcinolone+Prompt Laser 4 mg intravitreal triamcinolone at randomization plus focal photocoagulation 1 week post-injection, repeated every 16 weeks with sham injections at 4-week intervals in-between. Retreatment starting at 16 weeks depends on visual acuity and OCT. | 186 |
| Total | 854 |
Withdrawals & dropouts
| Period | Reason | FG000 | FG001 | FG002 | FG003 |
|---|---|---|---|---|---|
| Overall Study | Death | 7 | 5 | 3 | 2 |
| Overall Study | Dropped | 11 | 11 | 7 | 7 |
| Overall Study | Missed visit | 1 | 0 | 0 | 1 |
Baseline characteristics
| Characteristic | Sham+Prompt Laser | Total | 4 mg Triamcinolone+Prompt Laser | 0.5 mg Ranibizumab+Deferred Laser | 0.5 mg Ranibizumab+Prompt Laser |
|---|---|---|---|---|---|
| Age, Continuous | 63 years | 63 years | 62 years | 64 years | 62 years |
| Central subfield thickness on optical coherence tomography | 407 microns | 381 microns | 374 microns | 382 microns | 371 microns |
| Classification of diabetic macular edema Neither predominantly focal or diffuse | 71 Eyes | 206 Eyes | 48 Eyes | 41 Eyes | 46 Eyes |
| Classification of diabetic macular edema Predominantly diffuse | 144 Eyes | 389 Eyes | 85 Eyes | 79 Eyes | 81 Eyes |
| Classification of diabetic macular edema Predominantly focal | 78 Eyes | 259 Eyes | 53 Eyes | 68 Eyes | 60 Eyes |
| Currently on intraocular pressure lowering medicine for glaucoma or ocular hypertension No | 288 Eyes | 837 Eyes | 184 Eyes | 184 Eyes | 181 Eyes |
| Currently on intraocular pressure lowering medicine for glaucoma or ocular hypertension Yes | 5 Eyes | 17 Eyes | 2 Eyes | 4 Eyes | 6 Eyes |
| Diabetes Type Type 1 | 25 Participants | 65 Participants | 14 Participants | 15 Participants | 11 Participants |
| Diabetes Type Type 2 | 260 Participants | 768 Participants | 166 Participants | 170 Participants | 172 Participants |
| Diabetes Type Uncertain | 8 Participants | 21 Participants | 6 Participants | 3 Participants | 4 Participants |
| Duration of diabetes | 16 Years | 16 Years | 17 Years | 17 Years | 18 Years |
| E-ETDRS Visual Acuity Letter Score | 65 Letter Score | 66 Letter Score | 66 Letter Score | 66 Letter Score | 66 Letter Score |
| ETDRS retinopathy severity level (ETDRS description) Cannot grade | 10 Eyes | 17 Eyes | 4 Eyes | 2 Eyes | 1 Eyes |
| ETDRS retinopathy severity level (ETDRS description) Diabetic retinopathy absent | 5 Eyes | 13 Eyes | 1 Eyes | 3 Eyes | 4 Eyes |
| ETDRS retinopathy severity level (ETDRS description) High risk proliferative DR | 7 Eyes | 15 Eyes | 3 Eyes | 1 Eyes | 4 Eyes |
| ETDRS retinopathy severity level (ETDRS description) Mild to moderately severe non-proliferative DR | 171 Eyes | 476 Eyes | 95 Eyes | 107 Eyes | 103 Eyes |
| ETDRS retinopathy severity level (ETDRS description) Mild to moderate proliferative DR | 33 Eyes | 113 Eyes | 34 Eyes | 22 Eyes | 24 Eyes |
| ETDRS retinopathy severity level (ETDRS description) Minimal non-proliferative DR | 2 Eyes | 10 Eyes | 3 Eyes | 3 Eyes | 2 Eyes |
| ETDRS retinopathy severity level (ETDRS description) Missing | 5 Eyes | 19 Eyes | 2 Eyes | 9 Eyes | 3 Eyes |
| ETDRS retinopathy severity level (ETDRS description) Scars of full or partial PRP present;PDR absent | 38 Eyes | 127 Eyes | 29 Eyes | 30 Eyes | 30 Eyes |
| ETDRS retinopathy severity level (ETDRS description) Severe non-proliferative DR | 22 Eyes | 64 Eyes | 15 Eyes | 11 Eyes | 16 Eyes |
| HbA1c | 7.3 Percentage | 7.3 Percentage | 7.4 Percentage | 7.5 Percentage | 7.3 Percentage |
| Hypertension No | 53 Participants | 156 Participants | 38 Participants | 32 Participants | 33 Participants |
| Hypertension Yes | 240 Participants | 698 Participants | 148 Participants | 156 Participants | 154 Participants |
| Intraocular pressure | 16 mmHg | 16 mmHg | 16 mmHg | 16 mmHg | 16 mmHg |
| Lens status Anterior Chamber Intraocular Lense | 3 Eyes | 5 Eyes | 0 Eyes | 1 Eyes | 1 Eyes |
| Lens status Phakic | 192 Eyes | 581 Eyes | 124 Eyes | 134 Eyes | 131 Eyes |
| Lens status Posterior Chamber Intraocular Lense | 98 Eyes | 268 Eyes | 62 Eyes | 53 Eyes | 55 Eyes |
| Number of study eyes 1 study eye | 130 Participants | 528 Participants | 135 Participants | 132 Participants | 131 Participants |
| Number of study eyes 2 study eyes | 163 Participants | 326 Participants | 51 Participants | 56 Participants | 56 Participants |
| Optical coherence tomography cystoid abnormality Cannot grade or missing | 0 Eyes | 6 Eyes | 1 Eyes | 2 Eyes | 3 Eyes |
| Optical coherence tomography cystoid abnormality No evidence | 19 Eyes | 52 Eyes | 8 Eyes | 12 Eyes | 13 Eyes |
| Optical coherence tomography cystoid abnormality Questionable or definite | 274 Eyes | 796 Eyes | 177 Eyes | 174 Eyes | 171 Eyes |
| Optical coherence tomography subretinal fluid present Cannot grade | 1 Eyes | 8 Eyes | 2 Eyes | 3 Eyes | 2 Eyes |
| Optical coherence tomography subretinal fluid present No evidence | 222 Eyes | 657 Eyes | 146 Eyes | 140 Eyes | 149 Eyes |
| Optical coherence tomography subretinal fluid present Questionable or definite | 70 Eyes | 189 Eyes | 38 Eyes | 45 Eyes | 36 Eyes |
| Prior anti-VEGF for diabetic macular edema No | 269 Eyes | 765 Eyes | 166 Eyes | 167 Eyes | 163 Eyes |
| Prior anti-VEGF for diabetic macular edema Yes | 24 Eyes | 89 Eyes | 20 Eyes | 21 Eyes | 24 Eyes |
| Prior cardiovascular event No | 200 Participants | 573 Participants | 125 Participants | 127 Participants | 121 Participants |
| Prior cardiovascular event Yes | 93 Participants | 281 Participants | 61 Participants | 61 Participants | 66 Participants |
| Prior IVT for diabetic macular edema No | 254 Eyes | 726 Eyes | 155 Eyes | 152 Eyes | 165 Eyes |
| Prior IVT for diabetic macular edema Yes | 39 Eyes | 128 Eyes | 31 Eyes | 36 Eyes | 22 Eyes |
| Prior laser for diabetic macular edema No | 120 Eyes | 365 Eyes | 72 Eyes | 87 Eyes | 86 Eyes |
| Prior laser for diabetic macular edema Yes | 173 Eyes | 489 Eyes | 114 Eyes | 101 Eyes | 101 Eyes |
| Prior Panretinal Photocoagulation No | 245 Eyes | 702 Eyes | 149 Eyes | 157 Eyes | 151 Eyes |
| Prior Panretinal Photocoagulation Yes | 48 Eyes | 152 Eyes | 37 Eyes | 31 Eyes | 36 Eyes |
| Prior peribulbar triamcinolone for diabetic macular edema No | 281 Eyes | 823 Eyes | 181 Eyes | 183 Eyes | 178 Eyes |
| Prior peribulbar triamcinolone for diabetic macular edema Yes | 12 Eyes | 31 Eyes | 5 Eyes | 5 Eyes | 9 Eyes |
| Prior treatment for diabetic macular edema No | 105 Eyes | 314 Eyes | 61 Eyes | 74 Eyes | 74 Eyes |
| Prior treatment for diabetic macular edema Yes | 188 Eyes | 540 Eyes | 125 Eyes | 114 Eyes | 113 Eyes |
| Prior vitrectomy for diabetic macular edema No | 278 Eyes | 815 Eyes | 174 Eyes | 183 Eyes | 180 Eyes |
| Prior vitrectomy for diabetic macular edema Yes | 15 Eyes | 39 Eyes | 12 Eyes | 5 Eyes | 7 Eyes |
| Race/Ethnicity, Customized African American | 51 Participants | 138 Participants | 32 Participants | 25 Participants | 30 Participants |
| Race/Ethnicity, Customized Asian | 4 Participants | 11 Participants | 4 Participants | 2 Participants | 1 Participants |
| Race/Ethnicity, Customized Hispanic or Latino | 34 Participants | 95 Participants | 15 Participants | 25 Participants | 21 Participants |
| Race/Ethnicity, Customized More than one race | 1 Participants | 3 Participants | 0 Participants | 1 Participants | 1 Participants |
| Race/Ethnicity, Customized Native Hawaiian/Other Pacific Islander | 0 Participants | 1 Participants | 0 Participants | 0 Participants | 1 Participants |
| Race/Ethnicity, Customized Unknown/not reported | 1 Participants | 5 Participants | 1 Participants | 1 Participants | 2 Participants |
| Race/Ethnicity, Customized White | 202 Participants | 601 Participants | 134 Participants | 134 Participants | 131 Participants |
| Retinal volume on optical coherence tomography | 8.7 microns | 8.5 microns | 8.5 microns | 8.4 microns | 8.4 microns |
| Sex: Female, Male Female | 123 Participants | 372 Participants | 86 Participants | 78 Participants | 85 Participants |
| Sex: Female, Male Male | 170 Participants | 482 Participants | 100 Participants | 110 Participants | 102 Participants |
| Visual Acuity Letter Score (approximate Snellen equivalent) by randomization strata ≤65 (20/50 or worse) | 147 Eyes | 425 Eyes | 93 Eyes | 93 Eyes | 92 Eyes |
| Visual Acuity Letter Score (approximate Snellen equivalent) by randomization strata ≥66 (better than 20/50) | 146 Eyes | 429 Eyes | 93 Eyes | 95 Eyes | 95 Eyes |
Adverse events
| Event type | EG000 affected / at risk | EG001 affected / at risk | EG002 affected / at risk | EG003 affected / at risk | EG004 affected / at risk | EG005 affected / at risk | EG006 affected / at risk |
|---|---|---|---|---|---|---|---|
| deaths Total, all-cause mortality | — / — | — / — | — / — | — / — | — / — | — / — | — / — |
| other Total, other adverse events | 139 / 139 | 97 / 97 | 105 / 105 | 145 / 145 | 0 / 0 | 0 / 0 | 0 / 0 |
| serious Total, serious adverse events | 53 / 130 | 46 / 131 | 41 / 132 | 57 / 135 | 21 / 56 | 20 / 56 | 12 / 51 |
Outcome results
Change in Visual Acuity From Baseline to 1 Year Among Eyes That Had Prior Treatment for Diabetic Macular Edema
Time frame: from baseline to 1 Year
| Arm | Measure | Group | Value (MEAN) | Dispersion |
|---|---|---|---|---|
| Sham+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Among Eyes That Had Prior Treatment for Diabetic Macular Edema | No | 2 Letters | Standard Deviation 14 |
| Sham+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Among Eyes That Had Prior Treatment for Diabetic Macular Edema | Yes | 3 Letters | Standard Deviation 13 |
| 0.5 mg Ranibizumab+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Among Eyes That Had Prior Treatment for Diabetic Macular Edema | Yes | 9 Letters | Standard Deviation 10 |
| 0.5 mg Ranibizumab+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Among Eyes That Had Prior Treatment for Diabetic Macular Edema | No | 9 Letters | Standard Deviation 12 |
| 0.5 mg Ranibizumab+Deferred Laser | Change in Visual Acuity From Baseline to 1 Year Among Eyes That Had Prior Treatment for Diabetic Macular Edema | No | 11 Letters | Standard Deviation 13 |
| 0.5 mg Ranibizumab+Deferred Laser | Change in Visual Acuity From Baseline to 1 Year Among Eyes That Had Prior Treatment for Diabetic Macular Edema | Yes | 8 Letters | Standard Deviation 12 |
| 4 mg Triamcinolone+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Among Eyes That Had Prior Treatment for Diabetic Macular Edema | No | 3 Letters | Standard Deviation 13 |
| 4 mg Triamcinolone+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Among Eyes That Had Prior Treatment for Diabetic Macular Edema | Yes | 5 Letters | Standard Deviation 13 |
Change in Visual Acuity From Baseline to 1 Year Among Eyes That Were Pseudophakic at Baseline
Time frame: from baseline to 1 Year
| Arm | Measure | Group | Value (MEAN) | Dispersion |
|---|---|---|---|---|
| Sham+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Among Eyes That Were Pseudophakic at Baseline | Not pseudophakic at baseline | 2 Letters | Standard Deviation 13 |
| Sham+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Among Eyes That Were Pseudophakic at Baseline | Pseudophakic at baseline | 4 Letters | Standard Deviation 14 |
| 0.5 mg Ranibizumab+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Among Eyes That Were Pseudophakic at Baseline | Pseudophakic at baseline | 8 Letters | Standard Deviation 12 |
| 0.5 mg Ranibizumab+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Among Eyes That Were Pseudophakic at Baseline | Not pseudophakic at baseline | 9 Letters | Standard Deviation 10 |
| 0.5 mg Ranibizumab+Deferred Laser | Change in Visual Acuity From Baseline to 1 Year Among Eyes That Were Pseudophakic at Baseline | Not pseudophakic at baseline | 10 Letters | Standard Deviation 14 |
| 0.5 mg Ranibizumab+Deferred Laser | Change in Visual Acuity From Baseline to 1 Year Among Eyes That Were Pseudophakic at Baseline | Pseudophakic at baseline | 7 Letters | Standard Deviation 9 |
| 4 mg Triamcinolone+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Among Eyes That Were Pseudophakic at Baseline | Not pseudophakic at baseline | 2 Letters | Standard Deviation 14 |
| 4 mg Triamcinolone+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Among Eyes That Were Pseudophakic at Baseline | Pseudophakic at baseline | 8 Letters | Standard Deviation 9 |
Change in Visual Acuity From Baseline to 1 Year Grouped by Baseline Visual Acuity Letter Score
Change in best correct visual acuity letter score as measured by a certified tester using an electronic visual acuity testing machine based on the Early Treatment Diabetic Retinopathy Study (ETDRS) method. A positive change denotes an improvement. Best value on the scale 97, worst 0.
Time frame: from baseline to 1 Year
| Arm | Measure | Group | Value (MEAN) | Dispersion |
|---|---|---|---|---|
| Sham+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Baseline Visual Acuity Letter Score | ≥66 (better than 20/50) | 1 Letters | Standard Deviation 12 |
| Sham+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Baseline Visual Acuity Letter Score | ≤65 (20/50 or worse) | 5 Letters | Standard Deviation 14 |
| 0.5 mg Ranibizumab+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Baseline Visual Acuity Letter Score | ≤65 (20/50 or worse) | 12 Letters | Standard Deviation 11 |
| 0.5 mg Ranibizumab+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Baseline Visual Acuity Letter Score | ≥66 (better than 20/50) | 6 Letters | Standard Deviation 10 |
| 0.5 mg Ranibizumab+Deferred Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Baseline Visual Acuity Letter Score | ≥66 (better than 20/50) | 5 Letters | Standard Deviation 13 |
| 0.5 mg Ranibizumab+Deferred Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Baseline Visual Acuity Letter Score | ≤65 (20/50 or worse) | 13 Letters | Standard Deviation 10 |
| 4 mg Triamcinolone+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Baseline Visual Acuity Letter Score | ≥66 (better than 20/50) | 1 Letters | Standard Deviation 11 |
| 4 mg Triamcinolone+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Baseline Visual Acuity Letter Score | ≤65 (20/50 or worse) | 7 Letters | Standard Deviation 14 |
Change in Visual Acuity From Baseline to 1 Year Grouped by Diabetic Retinopathy Severity
Change in best correct visual acuity letter score from baseline to one year as measured by a certified tester using an electronic visual acuity testing machine based on the Early Treatment Diabetic Retinopathy Study (ETDRS) method. A positive change denotes an improvement. Best value on the scale 97, worst 0.
Time frame: from baseline to 1 Year
| Arm | Measure | Group | Value (MEAN) | Dispersion |
|---|---|---|---|---|
| Sham+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diabetic Retinopathy Severity | Moderately severe non-proliferative DR or better | 3 Letters | Standard Deviation 13 |
| Sham+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diabetic Retinopathy Severity | Severe non-proliferative DR or worse | 2 Letters | Standard Deviation 15 |
| 0.5 mg Ranibizumab+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diabetic Retinopathy Severity | Severe non-proliferative DR or worse | 8 Letters | Standard Deviation 10 |
| 0.5 mg Ranibizumab+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diabetic Retinopathy Severity | Moderately severe non-proliferative DR or better | 10 Letters | Standard Deviation 11 |
| 0.5 mg Ranibizumab+Deferred Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diabetic Retinopathy Severity | Moderately severe non-proliferative DR or better | 9 Letters | Standard Deviation 12 |
| 0.5 mg Ranibizumab+Deferred Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diabetic Retinopathy Severity | Severe non-proliferative DR or worse | 9 Letters | Standard Deviation 13 |
| 4 mg Triamcinolone+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diabetic Retinopathy Severity | Moderately severe non-proliferative DR or better | 3 Letters | Standard Deviation 14 |
| 4 mg Triamcinolone+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diabetic Retinopathy Severity | Severe non-proliferative DR or worse | 5 Letters | Standard Deviation 12 |
Change in Visual Acuity From Baseline to 1 Year Grouped by Diffuse vs. Focal Edema as Characterized by the Investigator
Change in best correct visual acuity letter score from baseline to one year as measured by a certified tester using an electronic visual acuity testing machine based on the Early Treatment Diabetic Retinopathy Study (ETDRS) method. A positive change denotes an improvement. Best value on the scale 97, worst 0.
Time frame: from baseline to 1 Year
| Arm | Measure | Group | Value (MEAN) | Dispersion |
|---|---|---|---|---|
| Sham+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diffuse vs. Focal Edema as Characterized by the Investigator | Typical/predominantly focal | 3 Letters | Standard Deviation 13 |
| Sham+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diffuse vs. Focal Edema as Characterized by the Investigator | Typical/predominantly diffuse | 3 Letters | Standard Deviation 13 |
| Sham+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diffuse vs. Focal Edema as Characterized by the Investigator | Neither predominantly focal nor diffuse | 2 Letters | Standard Deviation 14 |
| 0.5 mg Ranibizumab+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diffuse vs. Focal Edema as Characterized by the Investigator | Typical/predominantly focal | 8 Letters | Standard Deviation 11 |
| 0.5 mg Ranibizumab+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diffuse vs. Focal Edema as Characterized by the Investigator | Typical/predominantly diffuse | 9 Letters | Standard Deviation 12 |
| 0.5 mg Ranibizumab+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diffuse vs. Focal Edema as Characterized by the Investigator | Neither predominantly focal nor diffuse | 10 Letters | Standard Deviation 9 |
| 0.5 mg Ranibizumab+Deferred Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diffuse vs. Focal Edema as Characterized by the Investigator | Neither predominantly focal nor diffuse | 8 Letters | Standard Deviation 15 |
| 0.5 mg Ranibizumab+Deferred Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diffuse vs. Focal Edema as Characterized by the Investigator | Typical/predominantly focal | 8 Letters | Standard Deviation 13 |
| 0.5 mg Ranibizumab+Deferred Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diffuse vs. Focal Edema as Characterized by the Investigator | Typical/predominantly diffuse | 10 Letters | Standard Deviation 10 |
| 4 mg Triamcinolone+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diffuse vs. Focal Edema as Characterized by the Investigator | Typical/predominantly focal | 3 Letters | Standard Deviation 11 |
| 4 mg Triamcinolone+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diffuse vs. Focal Edema as Characterized by the Investigator | Typical/predominantly diffuse | 5 Letters | Standard Deviation 14 |
| 4 mg Triamcinolone+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Diffuse vs. Focal Edema as Characterized by the Investigator | Neither predominantly focal nor diffuse | 3 Letters | Standard Deviation 13 |
Change in Visual Acuity From Baseline to 1 Year Grouped by Optical Coherence Tomography Central Subfield Thickness
Change in best correct visual acuity letter score from baseline to one year as measured by a certified tester using an electronic visual acuity testing machine based on the Early Treatment Diabetic Retinopathy Study (ETDRS) method. A positive change denotes an improvement. Best value on the scale 97, worst 0.
Time frame: from baseline to 1 Year
| Arm | Measure | Group | Value (MEAN) | Dispersion |
|---|---|---|---|---|
| Sham+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Optical Coherence Tomography Central Subfield Thickness | <400 microns | 3 Letters | Standard Deviation 11 |
| Sham+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Optical Coherence Tomography Central Subfield Thickness | ≥400 microns | 3 Letters | Standard Deviation 15 |
| 0.5 mg Ranibizumab+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Optical Coherence Tomography Central Subfield Thickness | ≥400 microns | 11 Letters | Standard Deviation 10 |
| 0.5 mg Ranibizumab+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Optical Coherence Tomography Central Subfield Thickness | <400 microns | 7 Letters | Standard Deviation 11 |
| 0.5 mg Ranibizumab+Deferred Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Optical Coherence Tomography Central Subfield Thickness | <400 microns | 7 Letters | Standard Deviation 12 |
| 0.5 mg Ranibizumab+Deferred Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Optical Coherence Tomography Central Subfield Thickness | ≥400 microns | 11 Letters | Standard Deviation 13 |
| 4 mg Triamcinolone+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Optical Coherence Tomography Central Subfield Thickness | <400 microns | 3 Letters | Standard Deviation 12 |
| 4 mg Triamcinolone+Prompt Laser | Change in Visual Acuity From Baseline to 1 Year Grouped by Optical Coherence Tomography Central Subfield Thickness | ≥400 microns | 6 Letters | Standard Deviation 14 |
Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year
Change in best correct visual acuity letter score as measured by a certified tester using an electronic visual acuity testing machine based on the Early Treatment Diabetic Retinopathy Study (ETDRS) method.
Time frame: from baseline to 1 Year
Population: For eyes without any 1-year data the last observation carried forward method was used to impute data for the primary analysis.
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| Sham+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | ≥15 letter improvement | 43 Eyes |
| Sham+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | 10-14 letters worse | 16 Eyes |
| Sham+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | 5-9 letters worse | 20 Eyes |
| Sham+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | 14-10 letter improvement | 38 Eyes |
| Sham+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | ≥15 letters worse | 23 Eyes |
| Sham+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | 9-5 letter improvement | 67 Eyes |
| Sham+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | Same ±4 letters | 86 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | 10-14 letters worse | 3 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | Same ±4 letters | 38 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | 9-5 letter improvement | 34 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | 5-9 letters worse | 14 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | ≥15 letters worse | 3 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | 14-10 letter improvement | 38 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | ≥15 letter improvement | 57 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | Same ±4 letters | 35 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | ≥15 letter improvement | 52 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | 14-10 letter improvement | 36 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | 9-5 letter improvement | 54 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | 5-9 letters worse | 5 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | 10-14 letters worse | 2 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | ≥15 letters worse | 4 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | 9-5 letter improvement | 32 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | ≥15 letters worse | 15 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | 10-14 letters worse | 12 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | 14-10 letter improvement | 22 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | ≥15 letter improvement | 39 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | 5-9 letters worse | 12 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Distribution of Change in Visual Acuity (Letters) From Baseline to 1 Year | Same ±4 letters | 54 Eyes |
Mean Change in Visual Acuity (Letters) From Baseline to 1 Year Adjusted for Baseline Visual Acuity
Change in best correct visual acuity letter score from baseline to one year as measured by a certified tester using an electronic visual acuity testing machine based on the Early Treatment Diabetic Retinopathy Study (ETDRS) method. A positive change denotes an improvement. Best value on the scale 97, worst 0.
Time frame: from baseline to 1 Year
Population: For eyes without any 1-year data the last observation carried forward method was used to impute data for the primary analysis. followed intention to treat principle.
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Sham+Prompt Laser | Mean Change in Visual Acuity (Letters) From Baseline to 1 Year Adjusted for Baseline Visual Acuity | 3 Letters | Standard Deviation 13 |
| 0.5 mg Ranibizumab+Prompt Laser | Mean Change in Visual Acuity (Letters) From Baseline to 1 Year Adjusted for Baseline Visual Acuity | 9 Letters | Standard Deviation 11 |
| 0.5 mg Ranibizumab+Deferred Laser | Mean Change in Visual Acuity (Letters) From Baseline to 1 Year Adjusted for Baseline Visual Acuity | 9 Letters | Standard Deviation 12 |
| 4 mg Triamcinolone+Prompt Laser | Mean Change in Visual Acuity (Letters) From Baseline to 1 Year Adjusted for Baseline Visual Acuity | 4 Letters | Standard Deviation 13 |
Change in Retinal Thickening of Central Subfield on Optical Coherence Tomography From Baseline to 1 Year
Negative change denotes an improvement.
Time frame: from baseline to 1 year
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Sham+Prompt Laser | Change in Retinal Thickening of Central Subfield on Optical Coherence Tomography From Baseline to 1 Year | -102 microns | Standard Deviation 151 |
| 0.5 mg Ranibizumab+Prompt Laser | Change in Retinal Thickening of Central Subfield on Optical Coherence Tomography From Baseline to 1 Year | -131 microns | Standard Deviation 129 |
| 0.5 mg Ranibizumab+Deferred Laser | Change in Retinal Thickening of Central Subfield on Optical Coherence Tomography From Baseline to 1 Year | -137 microns | Standard Deviation 136 |
| 4 mg Triamcinolone+Prompt Laser | Change in Retinal Thickening of Central Subfield on Optical Coherence Tomography From Baseline to 1 Year | -127 microns | Standard Deviation 140 |
Mean Change in Optical Coherence Tomography Retinal Volume From Baseline to 1 Year
Time frame: from baseline to 1 Year
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Sham+Prompt Laser | Mean Change in Optical Coherence Tomography Retinal Volume From Baseline to 1 Year | -1.0 mm^3 | Standard Deviation 1.4 |
| 0.5 mg Ranibizumab+Prompt Laser | Mean Change in Optical Coherence Tomography Retinal Volume From Baseline to 1 Year | -1.4 mm^3 | Standard Deviation 1.4 |
| 0.5 mg Ranibizumab+Deferred Laser | Mean Change in Optical Coherence Tomography Retinal Volume From Baseline to 1 Year | -1.5 mm^3 | Standard Deviation 1.5 |
| 4 mg Triamcinolone+Prompt Laser | Mean Change in Optical Coherence Tomography Retinal Volume From Baseline to 1 Year | -1.4 mm^3 | Standard Deviation 1.6 |
Mean Optical Coherence Tomography Retinal Volume at 1 Year
Time frame: 1 Year
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Sham+Prompt Laser | Mean Optical Coherence Tomography Retinal Volume at 1 Year | 8.1 mm^3 | Standard Deviation 1.4 |
| 0.5 mg Ranibizumab+Prompt Laser | Mean Optical Coherence Tomography Retinal Volume at 1 Year | 7.3 mm^3 | Standard Deviation 1 |
| 0.5 mg Ranibizumab+Deferred Laser | Mean Optical Coherence Tomography Retinal Volume at 1 Year | 7.4 mm^3 | Standard Deviation 1.2 |
| 4 mg Triamcinolone+Prompt Laser | Mean Optical Coherence Tomography Retinal Volume at 1 Year | 7.5 mm^3 | Standard Deviation 1.3 |
Number of Injections in First Year
Maximum possible number of injections for each of the following groups: sham+prompt laser=13 sham injections;ranibizumab+prompt laser=13 ranibizumab injections; ranibizumab+deferred laser=13 ranibizumab injections; triamcinolone+prompt laser=4 triamcinolone injections and 9 sham injections.
Time frame: from baseline to 1 year
Population: Sham+prompt laser group listed median excludes 56 eyes among 163 participants with 2 study eyes that were unmasked at baseline because the participant's other eye was in the ranibizumab+deferred laser group, precluding sham injections for the study eye assigned to sham+prompt laser.
| Arm | Measure | Value (MEDIAN) |
|---|---|---|
| Sham+Prompt Laser | Number of Injections in First Year | 11 Injections |
| 0.5 mg Ranibizumab+Prompt Laser | Number of Injections in First Year | 8 Injections |
| 0.5 mg Ranibizumab+Deferred Laser | Number of Injections in First Year | 9 Injections |
| 4 mg Triamcinolone+Prompt Laser | Number of Injections in First Year | 3 Injections |
Number of Laser Treatments Received Prior to the 1 Year Visit
One eye in the sham+prompt laser group did not receive laser until post 1-year due to an adverse event unrelated to study treatment. One eye in the triamcinolone+prompt laser did not receive laser until after 1-year due to missing 2 consecutive visits at the time of required laser treatment.
Time frame: 1 Year
Population: Number who completed the 1-year visit.
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| Sham+Prompt Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 3 | 107 Eyes |
| Sham+Prompt Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 1 | 35 Eyes |
| Sham+Prompt Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 4 | 56 Eyes |
| Sham+Prompt Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 2 | 75 Eyes |
| Sham+Prompt Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 0 | 1 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 2 | 54 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 3 | 46 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 4 | 18 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 1 | 53 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 0 | 0 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 2 | 17 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 0 | 124 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 1 | 36 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 3 | 1 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 4 | 0 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 3 | 49 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 1 | 46 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 0 | 1 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 2 | 53 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Number of Laser Treatments Received Prior to the 1 Year Visit | 4 | 27 Eyes |
Percentage of Eyes Receiving Laser at the 48 Week Visit (%)
Time frame: 1 Year
| Arm | Measure | Value (NUMBER) |
|---|---|---|
| Sham+Prompt Laser | Percentage of Eyes Receiving Laser at the 48 Week Visit (%) | 26 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Percentage of Eyes Receiving Laser at the 48 Week Visit (%) | 16 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Percentage of Eyes Receiving Laser at the 48 Week Visit (%) | 8 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Percentage of Eyes Receiving Laser at the 48 Week Visit (%) | 21 Eyes |
Cardiovascular Events According to Antiplatelet Trialists' Collaboration Through 1 Year
Antiplatelet Trialists' Collaboration is a collaborative overview of randomised trials of antiplatelet therapy - I: Prevention of death, myocardial infarction, and stroke by prolonged antiplatelet therapy in various categories of patients. Antiplatelet Trialists' Collaboration. MBJ 1994; 308:81-106. Nonfatal cerebrovascular accident includes ischemic or hemorrhagic or unknown events. Vascular death includes death from any potential vascular or unknown cause.
Time frame: 1 Year
Population: Study participants with 2 study eyes are assigned to the non-sham group. Multiple events within a study participant are only counted once per event.
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| Sham+Prompt Laser | Cardiovascular Events According to Antiplatelet Trialists' Collaboration Through 1 Year | Nonfatal myocardial infarction | 3 Participants |
| Sham+Prompt Laser | Cardiovascular Events According to Antiplatelet Trialists' Collaboration Through 1 Year | Nonfatal cerebrovascular accident | 5 Participants |
| Sham+Prompt Laser | Cardiovascular Events According to Antiplatelet Trialists' Collaboration Through 1 Year | Vascular death | 4 Participants |
| Sham+Prompt Laser | Cardiovascular Events According to Antiplatelet Trialists' Collaboration Through 1 Year | Any ATC cardiovascular event | 10 Participants |
| 0.5 mg Ranibizumab+Prompt Laser | Cardiovascular Events According to Antiplatelet Trialists' Collaboration Through 1 Year | Any ATC cardiovascular event | 11 Participants |
| 0.5 mg Ranibizumab+Prompt Laser | Cardiovascular Events According to Antiplatelet Trialists' Collaboration Through 1 Year | Nonfatal myocardial infarction | 1 Participants |
| 0.5 mg Ranibizumab+Prompt Laser | Cardiovascular Events According to Antiplatelet Trialists' Collaboration Through 1 Year | Vascular death | 7 Participants |
| 0.5 mg Ranibizumab+Prompt Laser | Cardiovascular Events According to Antiplatelet Trialists' Collaboration Through 1 Year | Nonfatal cerebrovascular accident | 3 Participants |
| 0.5 mg Ranibizumab+Deferred Laser | Cardiovascular Events According to Antiplatelet Trialists' Collaboration Through 1 Year | Any ATC cardiovascular event | 5 Participants |
| 0.5 mg Ranibizumab+Deferred Laser | Cardiovascular Events According to Antiplatelet Trialists' Collaboration Through 1 Year | Nonfatal cerebrovascular accident | 1 Participants |
| 0.5 mg Ranibizumab+Deferred Laser | Cardiovascular Events According to Antiplatelet Trialists' Collaboration Through 1 Year | Vascular death | 2 Participants |
| 0.5 mg Ranibizumab+Deferred Laser | Cardiovascular Events According to Antiplatelet Trialists' Collaboration Through 1 Year | Nonfatal myocardial infarction | 2 Participants |
Central Subfield Thickness < 250 With at Least a 25 Micron Decrease From Baseline to 1 Year
Time frame: 1 Year
| Arm | Measure | Value (NUMBER) |
|---|---|---|
| Sham+Prompt Laser | Central Subfield Thickness < 250 With at Least a 25 Micron Decrease From Baseline to 1 Year | 72 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Central Subfield Thickness < 250 With at Least a 25 Micron Decrease From Baseline to 1 Year | 91 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Central Subfield Thickness < 250 With at Least a 25 Micron Decrease From Baseline to 1 Year | 74 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Central Subfield Thickness < 250 With at Least a 25 Micron Decrease From Baseline to 1 Year | 82 Eyes |
Change From Moderately Severe Non-proliferative Diabetic Retinopathy or Better From Baseline to 1-year
113 eyes had missing or ungradable photos at 1 year. Criteria are based on the ETDRS fundus photographic risk factors for the progression of diabetic retinopathy. ETDRS report no. 12. Ophthalmology 1991; 98:823-833
Time frame: from baseline to 1 Year
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| Sham+Prompt Laser | Change From Moderately Severe Non-proliferative Diabetic Retinopathy or Better From Baseline to 1-year | Improved by 2 or more levels | 6 Eyes |
| Sham+Prompt Laser | Change From Moderately Severe Non-proliferative Diabetic Retinopathy or Better From Baseline to 1-year | Worsened by 2 or more levels | 11 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Change From Moderately Severe Non-proliferative Diabetic Retinopathy or Better From Baseline to 1-year | Improved by 2 or more levels | 46 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Change From Moderately Severe Non-proliferative Diabetic Retinopathy or Better From Baseline to 1-year | Worsened by 2 or more levels | 5 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Change From Moderately Severe Non-proliferative Diabetic Retinopathy or Better From Baseline to 1-year | Improved by 2 or more levels | 20 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Change From Moderately Severe Non-proliferative Diabetic Retinopathy or Better From Baseline to 1-year | Worsened by 2 or more levels | 2 Eyes |
Change From Severe Non-proliferative Diabetic Retinopathy or Worse From Baseline to 1-year
Criteria are based on the ETDRS fundus photographic risk factors for the progression of diabetic retinopathy. ETDRS report no. 12. Ophthalmology 1991; 98:823-833, ETDRS Severity Scale = Diabetic retinopathy absent, minimal non-proliferative diabetic retinopathy (PDR), mild to moderately severe non-PDR, severe non-PDR, scars of full pr partial panretinal photocoagulation present PDR absent, mild to moderate PDR, high risk PDR, cannot grade, missing.
Time frame: from baseline to 1 Year
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| Sham+Prompt Laser | Change From Severe Non-proliferative Diabetic Retinopathy or Worse From Baseline to 1-year | Improved by 2 or more levels | 10 Eyes |
| Sham+Prompt Laser | Change From Severe Non-proliferative Diabetic Retinopathy or Worse From Baseline to 1-year | Worsened by 2 or more levels | 7 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Change From Severe Non-proliferative Diabetic Retinopathy or Worse From Baseline to 1-year | Improved by 2 or more levels | 18 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Change From Severe Non-proliferative Diabetic Retinopathy or Worse From Baseline to 1-year | Worsened by 2 or more levels | 1 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Change From Severe Non-proliferative Diabetic Retinopathy or Worse From Baseline to 1-year | Improved by 2 or more levels | 6 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Change From Severe Non-proliferative Diabetic Retinopathy or Worse From Baseline to 1-year | Worsened by 2 or more levels | 2 Eyes |
Distribution of Logarithmic Transformation of Optical Coherence Tomography (LogOCT) Improvement and Worsening
Logarithmic transformation of optical coherence tomography central subfield thickness is calculated by taking the log base 10 of the ratio of the central subfield thickness divided by 200 and rounding to the nearest hundredth. The change is the change in the log values.
Time frame: 1 Year
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| Sham+Prompt Laser | Distribution of Logarithmic Transformation of Optical Coherence Tomography (LogOCT) Improvement and Worsening | ≥2 step improvement | 81 Eyes |
| Sham+Prompt Laser | Distribution of Logarithmic Transformation of Optical Coherence Tomography (LogOCT) Improvement and Worsening | ≥2 step worsening | 6 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Distribution of Logarithmic Transformation of Optical Coherence Tomography (LogOCT) Improvement and Worsening | ≥2 step worsening | 1 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Distribution of Logarithmic Transformation of Optical Coherence Tomography (LogOCT) Improvement and Worsening | ≥2 step improvement | 72 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Distribution of Logarithmic Transformation of Optical Coherence Tomography (LogOCT) Improvement and Worsening | ≥2 step improvement | 71 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Distribution of Logarithmic Transformation of Optical Coherence Tomography (LogOCT) Improvement and Worsening | ≥2 step worsening | 0 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Distribution of Logarithmic Transformation of Optical Coherence Tomography (LogOCT) Improvement and Worsening | ≥2 step improvement | 65 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Distribution of Logarithmic Transformation of Optical Coherence Tomography (LogOCT) Improvement and Worsening | ≥2 step worsening | 4 Eyes |
Eyes With Alternative Treatments Prior to the 1-year Visit
Each combination of treatment only counted once.
Time frame: 1 Year
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| Sham+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Intravitreal triamcinolone acetonide | 5 Eyes |
| Sham+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Vitrectomy | 2 Eyes |
| Sham+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Total number of treatments applied | 25 Eyes |
| Sham+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Total deviations from protocol treatments applied | 9 Eyes |
| Sham+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Total number of eyes with alternative treatments | 14 Eyes |
| Sham+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Intravitreal bevacizumab+triamcinolone acetonide | 4 Eyes |
| Sham+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Total per protocol treatments applied | 5 Eyes |
| Sham+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Intravitreal bevacizumab | 3 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Total per protocol treatments applied | 1 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Total number of eyes with alternative treatments | 1 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Total number of treatments applied | 1 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Intravitreal triamcinolone acetonide | 0 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Intravitreal bevacizumab | 0 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Vitrectomy | 0 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Total deviations from protocol treatments applied | 0 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Intravitreal bevacizumab+triamcinolone acetonide | 0 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Total number of treatments applied | 0 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Intravitreal triamcinolone acetonide | 0 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Total deviations from protocol treatments applied | 0 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Total per protocol treatments applied | 0 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Vitrectomy | 0 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Intravitreal bevacizumab | 0 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Intravitreal bevacizumab+triamcinolone acetonide | 0 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Total number of eyes with alternative treatments | 0 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Total deviations from protocol treatments applied | 0 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Intravitreal bevacizumab | 1 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Intravitreal triamcinolone acetonide | 0 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Vitrectomy | 0 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Intravitreal bevacizumab+triamcinolone acetonide | 0 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Total number of eyes with alternative treatments | 1 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Total number of treatments applied | 1 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Eyes With Alternative Treatments Prior to the 1-year Visit | Total per protocol treatments applied | 1 Eyes |
Major Ocular Adverse Events During First Year of Follow-Up
Time frame: 1 Year
| Arm | Measure | Group | Value (NUMBER) |
|---|---|---|---|
| Sham+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Glaucoma surgery | 0 Eyes |
| Sham+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Increase in intraocular pressure >=10 mmHg | 16 Eyes |
| Sham+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Vitreous hemorrhage | 15 Eyes |
| Sham+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Retinal detachment | 0 Eyes |
| Sham+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Initiation of intraocular lowering medication | 23 Eyes |
| Sham+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Vitrectomy | 7 Eyes |
| Sham+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Pseudoendophthalmitis | 1 Eyes |
| Sham+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Endophthalmitis | 1 Eyes |
| Sham+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Intraocular pressure >=30 mmHg | 3 Eyes |
| Sham+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Cataract surgery | 11 Eyes |
| Sham+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Ocular vascular event | 1 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Increase in intraocular pressure >=10 mmHg | 10 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Cataract surgery | 6 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Endophthalmitis | 1 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Pseudoendophthalmitis | 0 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Ocular vascular event | 1 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Retinal detachment | 0 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Vitrectomy | 0 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Vitreous hemorrhage | 3 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Intraocular pressure >=30 mmHg | 2 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Initiation of intraocular lowering medication | 12 Eyes |
| 0.5 mg Ranibizumab+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Glaucoma surgery | 0 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Major Ocular Adverse Events During First Year of Follow-Up | Vitreous hemorrhage | 4 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Major Ocular Adverse Events During First Year of Follow-Up | Increase in intraocular pressure >=10 mmHg | 5 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Major Ocular Adverse Events During First Year of Follow-Up | Cataract surgery | 8 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Major Ocular Adverse Events During First Year of Follow-Up | Initiation of intraocular lowering medication | 7 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Major Ocular Adverse Events During First Year of Follow-Up | Glaucoma surgery | 0 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Major Ocular Adverse Events During First Year of Follow-Up | Endophthalmitis | 1 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Major Ocular Adverse Events During First Year of Follow-Up | Pseudoendophthalmitis | 0 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Major Ocular Adverse Events During First Year of Follow-Up | Retinal detachment | 1 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Major Ocular Adverse Events During First Year of Follow-Up | Ocular vascular event | 0 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Major Ocular Adverse Events During First Year of Follow-Up | Vitrectomy | 3 Eyes |
| 0.5 mg Ranibizumab+Deferred Laser | Major Ocular Adverse Events During First Year of Follow-Up | Intraocular pressure >=30 mmHg | 4 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Vitrectomy | 0 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Vitreous hemorrhage | 2 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Pseudoendophthalmitis | 1 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Increase in intraocular pressure >=10 mmHg | 70 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Glaucoma surgery | 0 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Intraocular pressure >=30 mmHg | 46 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Endophthalmitis | 0 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Initiation of intraocular lowering medication | 79 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Retinal detachment | 0 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Cataract surgery | 19 Eyes |
| 4 mg Triamcinolone+Prompt Laser | Major Ocular Adverse Events During First Year of Follow-Up | Ocular vascular event | 2 Eyes |