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Ophthalmology – Choroidal Effusion / Detachment
Choroidal effusion or detachment refers to the accumulation of fluid, either serous or hemorrhagic, in the suprachoroidal space. It occurs when fluid or blood collects between the choroid and sclera due to altered pressure relationships or increased vascular permeability. These detachments may occur after trauma, during or after ocular surgery, or more rarely, spontaneously. Serous detachments are often less dramatic in presentation, whereas hemorrhagic choroidal detachments can be painful and visually devastating.
The incidence varies widely, reported between 0.05% and 6%, depending on the clinical setting. There is no clear racial or sex predilection, although hemorrhagic choroidal detachments are more common in elderly patients. Risk factors for serous choroidal effusion include nanophthalmos, uveal effusion syndrome, carotid-cavernous fistula, intraocular inflammation, hypotony, trauma, scleritis, Vogt-Koyanagi-Harada syndrome, tumors, and certain medications. Hemorrhagic detachments are associated with older age, arteriosclerosis, systemic hypertension, uncontrolled glaucoma, myopia, prior ocular surgery, sickle cell disease, and a history of choroidal hemorrhage in the fellow eye. Surgical risk factors include wound leaks, scleral perforation, cyclodialysis clefts, leaking blebs, and prior laser or cryotherapy.
The pathophysiology depends on changes in the balance among intraocular pressure, vascular hydrostatic pressure, and oncotic pressure within the suprachoroidal space. Increased vascular permeability allows serum proteins and fluid to exude into this potential space, causing choroidal edema and detachment. In many cases, hypotony is a major precipitating factor. Hemorrhagic detachments occur when blood enters the same space, often after a sudden pressure change or vessel rupture.
Clinically, serous choroidal effusions often cause painless decreased vision and are frequently associated with low intraocular pressure, a shallow anterior chamber, and mild anterior chamber inflammation. On fundus examination, they appear as smooth, bullous, orange elevations of the choroid and retina, often extending circumferentially in the periphery with a lobulated contour. In contrast, hemorrhagic choroidal detachments usually present suddenly with severe pain, marked vision loss, a red eye, and are often associated with elevated intraocular pressure. A careful history should assess for recent surgery, trauma, laser treatment, straining, coughing, Valsalva, and the use of anticoagulants or aspirin.
On examination, it is important to look for evidence of a wound leak, filtering bleb, cyclodialysis cleft, or signs of recent ocular intervention. Seidel testing and gonioscopy may be helpful in identifying the source of hypotony. In selected cases, scalp and skin examination may help identify associated systemic inflammatory disease, such as vitiligo or alopecia in Vogt-Koyanagi-Harada syndrome.
B-scan ultrasonography is the most useful diagnostic tool and typically shows dome-shaped choroidal elevations with low-to-medium internal reflectivity. It helps distinguish serous from hemorrhagic detachments, assesses whether blood is mobile or clotted, and identifies severe appositional detachments known as “kissing choroidals.” Additional imaging such as CT or MRI may help differentiate choroidal effusion from tumors like choroidal melanoma. Transillumination may be positive in serous detachments, whereas hemorrhagic detachments typically do not transilluminate.
Management depends on the underlying cause. Initial treatment includes topical corticosteroids and cycloplegics, along with intraocular pressure control using topical or systemic medications. Oral steroids may be considered when inflammation is a contributing factor. Parasympathomimetic agents are contraindicated as they may worsen the condition.
Surgical intervention may be required if the detachment persists or is severe. Options include posterior sclerotomy to drain suprachoroidal fluid, anterior chamber paracentesis, or injection of viscoelastic substances if the anterior chamber is shallow or flat.
Prognosis depends largely on the underlying etiology. While there is no associated mortality, up to 40% of patients may experience significant vision loss. Hemorrhagic choroidal detachments generally carry a worse prognosis. Potential complications include retinal detachment, cataract formation, glaucoma, corneal endothelial damage, peripheral anterior synechiae, and in severe cases, phthisis bulbi.
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