1.Acute Angle-Closure Glaucoma from Spontaneous Massive Hemorrhagic Retinal Detachment.
Yoon Jung LEE ; Sung Min KANG ; Il Bong KANG
Korean Journal of Ophthalmology 2007;21(1):61-64
PURPOSE: To report a case of acute angle-closure glaucoma resulting from spontaneous hemorrhagic retinal detachment. METHODS: An 81-year-old woman visited our emergency room for severe ocular pain and vision loss in her left eye. Her intraocular pressures (IOPs) were 14 mmHg in the right eye and 58 mmHg in the left eye. Her visual acuity was 0.4 in the right eye but she had no light perception in the left eye. The left anterior chamber depth was shallow and gonioscopy of the left eye showed a closed angle. In comparison, the right anterior chamber depth was normal and showed a wide, open angle. Computed tomography and ultrasonography demonstrated retinal detachment due to subretinal hemorrhage. After systemic and topical antiglaucoma medications failed to relieve her intractable severe ocular pain, she underwent enucleation. RESULTS: The ocular pathology specimen showed that a large subretinal hemorrhage caused retinal detachment and pushed displaced the lens-iris diaphragm, resulting in secondary angle-closure glaucoma. CONCLUSIONS: Prolonged anticoagulant therapy may cause hemorrhagic retinal detachment and secondary angle-closure glaucoma. If medical therapy fails to relieve pain or if there is suspicion of an intraocular tumor, enucleation should be considered as a therapeutic option.
Tomography, X-Ray Computed
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Retinal Hemorrhage/*complications/pathology/radiography
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Retinal Detachment/*etiology/pathology/radiography
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Humans
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Glaucoma, Angle-Closure/*etiology/surgery
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Female
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Eye Enucleation
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Aged, 80 and over
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Acute Disease
2.Intravitreal cysticercosis.
Man Seong SEO ; Je Moon WOO ; Yeoung Geol PARK
Korean Journal of Ophthalmology 1996;10(1):55-59
Examination of a 36-year-old man with naked visual acuity of 20/20 revealed a floating, conspicuous cyst of Cysticercus cellulosae in the vitreous cavity of the right eye. A vitreous traction band from the vitreous base and the optic disc was connected to the lodging bulb of the cyst. In the superonasal area, an ovoid retinal break surrounded by a white retinal lesion with two elliptical retinal hemorrhages was found, and this seems to be the previous lodging site of the cyst. A pars plana vitrectomy was performed to remove the parasite, and laser photocoagulation was carried out around the retinal break. Four months after the operation, the patient was satisfied with naked visual acuity of 25/20 without any complication in the affected eye.
Adult
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Animals
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Cysticercosis/*diagnosis/physiopathology/surgery
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Cysticercus/*isolation & purification
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Eye Diseases/diagnosis
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Eye Infections, Parasitic/*diagnosis/physiopathology/surgery
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Humans
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Laser Coagulation
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Male
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Retinal Hemorrhage/etiology/surgery
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Retinal Perforations/etiology/surgery
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Visual Acuity
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Vitrectomy
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Vitreous Body/*parasitology/surgery
4.Multiple Retinal Hemorrhage following Anterior Chamber Paracentesis in Uveitic Glaucoma.
Sang Joon LEE ; Jung Joo LEE ; Shin Dong KIM
Korean Journal of Ophthalmology 2006;20(2):128-130
PURPOSE: We describe the occurrence of a massive retinal hemorrhage following anterior chamber paracentesis in uveitic glaucoma. METHODS: A 33-year-old man who suffered from uveitic glaucoma was transferred to our hospital. The IOP in both his eyes was documented to vary between 11 mmHg and 43 mmHg and remained at a continuously high level for 7 months despite maximally tolerable medical treatment. A paracentesis was performed bilaterally to lower the IOP. RESULTS: Immediately after the paracentesis, massive retinal hemorrhages occurred in the left eye. Multiple round blot retinal hemorrhages with white centers occurred in the equator and peripheral retina, and small slit hemorrhages were observed in the peripapillary area. A fluorescence angiography(FAG) showed no obstruction of retinal vessels but a slightly delayed arteriovenous time in the left eye. CONCLUSIONS: It is important to be aware that patients who have a persistent relatively high IOP are at an increased risk of developing decompression retinopathy due to paracentesis and filtering surgery.
Uveitis, Anterior/*surgery
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Retinal Hemorrhage/*etiology/pathology
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Paracentesis/*adverse effects
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Male
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Intraocular Pressure
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Humans
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Glaucoma/*surgery
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Fundus Oculi
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Follow-Up Studies
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Fluorescein Angiography
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Anterior Chamber/*surgery
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Adult
5.Argon Green Laser for Valsalva Retinopathy Treatment and Long-term Follow-up of the Internal Limiting Membrane Changes in Optical Coherence Tomography.
Hakan TIRHIS ; Cagatay CAGLAR ; Pelin YILMAZBAS ; Mustafa Alparslan ANAYOL ; Mehmet Ali SEKEROGLU
Korean Journal of Ophthalmology 2015;29(6):437-438
No abstract available.
Adult
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Basement Membrane/*pathology
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Follow-Up Studies
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Humans
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Laser Coagulation/*methods
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Lasers, Gas/*therapeutic use
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Male
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Retinal Hemorrhage/diagnosis/etiology/*surgery
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Tomography, Optical Coherence
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*Valsalva Maneuver
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Vitreous Hemorrhage/diagnosis/etiology/*surgery
6.ICG-enhanced digital angiography and photocoagulation of choroidal neovascularization in age-related macular degeneration.
Sang Ha KIM ; Dong Eun LEE ; Young Jung PARK
Korean Journal of Ophthalmology 1995;9(1):59-65
Choroidal neovascular membranes are often poorly defined on fluorescein angiography because of fluorescein leakage or blockage of hyperfluorescence by overlying hemorrhage, lipid, turbid fluid, or pigment. Indocyanine green (ICG) is a highly protein-bound dye in the near infrared portion of the spectrum. Therefore, ICG remained in and around the neovascular membrane and enhanced the visualization of certain membranes poorly defined with fluorescein. ICG penetrated through the overlying turbid tissue, and improved the visualization of the underlying choroidal neovascular membrane. Using an infrared angiography system, the authors obtained 21 ICG-angiograms with suspected choroidal neovascularization, and compared them to fluorescein angiograms. In 5 of the 21 eyes, occult choroidal neovascularization was well delineated on the ICG angiograms. In 2 eyes, we were able to detect a well-defined choroidal neovascular membrane underlying a subretinal hemorrhage. In 12 of the 21 eyes with choroidal neovascular membrane, we performed argon-green laser photocoagulation applying the overlay technique of the ICG angiogram to red-free photo or the early fluorescein angiogram, and evaluated the effect of full coverage laser treatment.
Choroid/*blood supply
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Female
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Fluorescein Angiography/*methods
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Fundus Oculi
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Humans
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Indocyanine Green/*diagnostic use
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*Laser Coagulation
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Macular Degeneration/*complications
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Male
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Middle Aged
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Neovascularization, Pathologic/diagnosis/etiology/*surgery
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Retinal Hemorrhage/complications
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Signal Processing, Computer-Assisted
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Visual Acuity
7.Decompression Retinopathy after Trabeculectomy.
Korean Journal of Ophthalmology 2005;19(2):128-131
PURPOSE: To present a case of a unilateral diffuse retinal hemorrhage in a 15-year-old girl, who underwent bilateral trabeculectomy for steroid induced glaucoma. METHODS: Despite the maximally tolerable medical treatment, IOP in the right eye remained above 50 mmHg for four months, and was simultaneously elevated in the left eye. So we performed bilateral trabeculectomy. RESULTS: On the first postoperative day, diffuse retinal hemorrhages were observed in the right eye; however, no retinal hemorrhage was found in the left eye. The hemorrhages resolved completely without consequences two months later. CONCLUSIONS: In the case of high IOP for a long period, sudden lowering of IOP may acutely increase the blood flow and consequently rupture multiple retinal capillaries because of altered autoregulatory function. Special care is therefore needed to prevent an abrupt fall in IOP before, during, and after surgery, especially when IOP has been highly elevated for an extended period.
Administration, Topical
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Adolescent
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Female
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Fluorescein Angiography
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Fundus Oculi
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Glaucoma/chemically induced/*surgery
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Humans
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Retinal Hemorrhage/diagnosis/*etiology/pathology
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Steroids/administration & dosage/adverse effects/therapeutic use
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Trabeculectomy/*adverse effects
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Uveitis/drug therapy