Macular hole and tractional retinal detachment secondary to proliferative sickle cell retinopathy

Author(s):  
Parampal S. Grewal ◽  
Peter J. Kertes
2019 ◽  
Vol 3 (5) ◽  
pp. 341-345
Author(s):  
Matthew A. Cunningham ◽  
Samantha Fink ◽  
Jaya B. Kumar ◽  
Elias C. Mavrofrides ◽  
S.K. Steven Houston ◽  
...  

Purpose: This article reports the clinical features, associations, and outcomes of patients with full-thickness macular hole (MH) formation after pars plana vitrectomy for retinal detachment (RD). Methods: A retrospective, interventional case series is presented of consecutive patients undergoing surgical repair of MH following prior tractional or rhegmatogenous retinal detachment repair from September 2014 to October 2018 at a single vitreoretinal surgery practice. The size of the MH, presence of epiretinal membrane (ERM), rate of MH closure, and visual outcome following repair were evaluated. Results: A total of 996 cases of rhegmatogenous and tractional retinal detachment repair were identified. The average time from the RD surgery to MH diagnosis was 72 days. The incidence of subsequent MH formation in patients who underwent surgery was 0.8% (8/996). The presence of ERM prior to MH repair was noted in 50% of these cases (4/8). In cases with at least 3 months of postoperative follow-up, MH closure was achieved in 100% of eyes after a single surgery. The mean preoperative visual acuity (VA) was 2.06 logMAR (logarithm of the minimum angle of resolution) units (Snellen equivalent, 20/2296) and significantly improved to 0.72 logMAR units (Snellen, 20/104; P = .017) at the last follow-up after MH repair. All patients had improvement in VA at the final postoperative visit, with a VA of 20/200 or better achieved in 87.5% of cases. Conclusions: Although MH formation after successful RD repair is uncommon, favorable visual and anatomic results can be obtained.


2018 ◽  
Vol 49 (12) ◽  
pp. e256-e262
Author(s):  
Jared T. Sokol ◽  
Kevin Ferenchak ◽  
Darin T. Rosen ◽  
Sidney A. Schechet ◽  
Dimitra Skondra

2019 ◽  
pp. 62-64
Author(s):  
A.B. Zakhidov ◽  
◽  
A. Khera ◽  
I.F. Saliev ◽  
◽  
...  

2019 ◽  
Vol 3 (10) ◽  
pp. 874-878
Author(s):  
Masashi Kakinoki ◽  
Takashi Araki ◽  
Masanori Iwasaki ◽  
Tetsuo Ueda ◽  
Hiroki Sano ◽  
...  

2019 ◽  
Vol 10 (2) ◽  
pp. 160-164 ◽  
Author(s):  
Filipe Sousa Neves ◽  
Joana Braga ◽  
Paula Sepúlveda ◽  
Miguel Bilhoto

The purpose of this case report is to describe a modified technique involving the use of an autologous neurosensory retinal free flap for closure of a macular hole (MH) during retinal detachment (RD) surgery. A 50-year-old female presented with sudden vision loss (light perception only) and a recurrent myopic RD associated with an MH. An autologous neurosensory retinal free flap was obtained and moved toward the MH. Silicone oil was used as an endotamponade and removed after 6 months. Two months after oil removal visual acuity improved to 20/400 and remained stable thereafter; however, the patient developed central retinal atrophy. One year after surgery the MH was closed and the retina attached. This modified technique with the use of an autologous neurosensory retinal flap provides an alternative approach for recurrent MH in RD procedures.


2021 ◽  
Author(s):  
Hamouda Hamdy Ghoraba ◽  
Hosam Othman Mansour ◽  
Mohamed Ahmed Abdelhafez Elsayed ◽  
Adel Galal Zaky ◽  
Mohamed Amin Heikal ◽  
...  

Purpose: To evaluate the risks that might be associated with recurrent macular hole retinal detachment (Re MHRD) after silicone oil (S.O) removal in myopic patients with open flat macular hole (MH). Methods: In this retrospective series, we assessed the different factors that might be associated with recurrent MHRD after S.O removal in 48 eyes with open flat MH that underwent S.O removal after successful MHRD repair by dividing the enrolled eyes into 2 groups: group 1 included 38 eyes with flat open MH and flat retina after S.O removal and group 2 included 10 eyes with flat open MH and recurrent MHRD after S.O removal. Results: Ten of 48 eyes (20.8%) with open flat MH developed recurrent MHRD after S.O removal. Univariate logistic regression analysis revealed that MH at the apex of PS, MH minimum diameter, hole form factor (HFF) and MH index (MHI) were significant risk factors for recurrent MHRD after S.O removal in myopic patients with open flat MH. Conclusions: If there is a "flat open" MH that is large, located at the apex of PS or with HHF or MHI of less than 0.9-0.5, it has a high chance of recurrent MHRD after S.O removal.


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