| Literature DB >> 35198815 |
Satoshi Kuwayama1, Aki Kato1, Soichiro Kuwayama1, Syunsuke Fujii1, Kazuhiko Sugitani1, Atsushi Osada2, Yuichiro Ogura1, Tsutomu Yasukawa1.
Abstract
PURPOSE: To report an accidental case of traumatic macular hole caused by Nd:YAG laser in a dermatology clinic. OBSERVATIONS: A 24-year-old woman sustained a laser injury to her right eye while practicing a dermatologic treatment using a Nd:YAG laser without wearing protective goggles. She noticed sudden-onset and progressing visual loss in her right eye and consulted an ophthalmologist 2 days after injury. The best-corrected visual acuity (BCVA) of her right eye decreased to 20/133. Fundus examination showed white parafoveal flecks with a central retinal hemorrhage and underlying serous retinal detachment. The retinal sensitivity in this lesion deteriorated. Two weeks later, a full-thickness macular hole (FTMH) developed in the affected eye. She was referred to Nagoya City University Hospital where the laser damage described was observed. The BCVA was 20/67. She underwent pars plana vitrectomy performed using the inverted internal limiting membrane (ILM) flap technique and gas tamponade. One week postoperatively, the FTMH closed, the BCVA in her right eye improved to 20/50, and the retinal sensitivity in the macular area mostly improved. The BCVA gradually improved and reached 20/25 9 months after the injury. CONCLUSIONS AND IMPORTANCE: Protective goggles must be worn when using an Nd:YAG laser in the laboratory or clinical setting. In the unfortunate event of a FTMH, early vitrectomy with an inverted ILM flap technique can be helpful to achieve a good visual prognosis.Entities:
Keywords: Eye injury; Inverted internal limiting membrane flap technique; Nd:YAG laser; Traumatic macular hole; Vitrectomy
Year: 2022 PMID: 35198815 PMCID: PMC8841575 DOI: 10.1016/j.ajoc.2022.101391
Source DB: PubMed Journal: Am J Ophthalmol Case Rep ISSN: 2451-9936
Fig. 1(A) At the first ophthalmologic visit, a fundus image of the right eye shows whitened flecks with a central retinal hemorrhage and adjacent white-to-grayish spots. (B) Optical coherence tomography images show destruction of the retinal layer structure, obscuration of the ellipsoid zone, and a serous retinal detachment in the fovea. (C) Humphrey field analyzer perimetry (10-2) shows decreased retinal sensitivity consistent with the injured area.
Fig. 2(A) Two weeks after the injury, a fundus image of the right eye shows an irregular macular hole. (B) Optical coherence tomography images of the right eye show a full-thickness macular hole with intraretinal cystic changes.
Fig. 3(A) At the first visit to Nagoya City University Hospital, a fundus image of the right eye shows an irregular macular hole. (B) Optical coherence tomography of the right eye shows a full-thickness macular hole with intraretinal cystic changes. (C) Fundus autofluorescence imaging shows hyperfluorescence consistent with the macular hole and low fluorescence consistent with the injured region superior to the fovea. Fluorescein/indocyanine green fluorescein fundus angiography (FA/ICGA) in (D) early-phase FA and (E) ICGA show hyperfluorescence consistent with the macular hole, and no fluorescence leakage in late-phase (F) FA and (G) ICGA. A hypoautofluorescent area has hypofluorescence on ICGA. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 4Ten days postoperatively, (A) fundus and (B) optical coherence tomography images show closure of the macular hole. Retinal edema and retinal detachment are negligible. (C) A fundus autofluorescence image shows foveal and extrafoveal hypofluorescence regions.
Fig. 5Eight weeks postoperatively, (A) fundus and (B) optical coherence tomography images show sustained closure of the macular hole with partial atrophy of the retina and the retinal pigment epithelium. (C) While Humphrey field analyzer 10-2 perimetry shows that the retinal sensitivity in the injury region has mostly improved, a hypofluorescent region superior to the fovea on indocyanine green imaging remains less sensitive. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Cases of full-thickness macular holes caused by Nd:YAG laser use during cosmetic surgery.
| Author, study year | Patient age (years), gender, eye | Wave-length | Energy (mJ) | BCVA before surgery | Size of hole before surgery (μm) | Time to initial surgery (months) | Vitreous hemorrhage present | Surrounding macular hole CME | Surgical ILM peeled or inverted | Dye used | Gas | Repeat PPV | Outcome | Final BCVA | Follow-up after PPV (months) |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Current case | Unknown | 1064 nm | N/A | 20/100 | 600 | 1 | No | Yes | Inverted | ICG | SF6 | No | Closure | 20/25 | 9 |
| Gao et al.; | 36, male; OD | Unknown | 500 | 20/200 | 700 | 5 | Yes | Yes | Peeled | N/A | C2F6 | No | Closure | 20/200 | 13 |
| Obana et al.; | 38, female; OD | 1064 nm | 2.7 | 20/666 | 653 | 1 | Yes | Yes | Inverted | No | Air | Yes | Closure | 20/2000 | 11 |
| Qi et al.; | 21, female; OS | 1064 nm | Unknown | 20/200 | 646 | 2 | No | Yes | Peeled | No | C3F8 | No | Closure | 20/20 | 36 |
| 38, female; OS | 1064 nm | Unknown | 20/100 | 503 | 2 | No | Yes | Peeled | No | C2F6 | No | Closure | 20/30 | 3 |
BCVA, best-corrected visual acuity; CME, cystoid macular edema; ICG, indocyanine green; ILM, internal limiting membrane; N/A, not available; OCT, optical coherence tomography; OD, right eye; OS, left eye; SF6, sulfur hexafluoride; C2F6, Hexafluoroethane.