Transpupillary thermotherapy of subfoveal choroidal neovascularization secondary to pathologic myopia. 2010

Khaled S Nabawi, and Ashraf S Shaarawi
Department of Ophthalmology, Alexandria University Hospitals, Alexandria, Egypt.

OBJECTIVE To assess the safety and effectiveness of transpupillary thermotherapy treatment of subfoveal choroidal neovascular membrane secondary to pathologic myopia. METHODS Seventy-four patients (74 eyes) with pathologic myopia underwent transpupillary thermotherapy treatment using a 3.0-mm spot size, 1-minute duration, and 520-mW power delivered through a contact lens. Clinical evaluation included measurement of best-corrected Snellen visual acuity, slit-lamp biomicroscopy, fundus color photography, and fluorescein angiography. RESULTS Sixty-four eyes (86%) received one treatment session. Six eyes (8%) improved 0.1 logarithm of the minimum angle of resolution (LogMAR) visual acuity post-treatment, 10 eyes (13.5%) lost more than 0.2 LogMAR acuity, and another 10 eyes (13.5%) lost 0.1 LogMAR acuity. The remaining 48 eyes (65%) had unchanged visual acuity after the last follow-up visit. CONCLUSIONS Transpupillary thermotherapy preserves vision in patients with choroidal neovascular membrane associated with pathologic myopia. Younger patients and eyes with higher refractive error are more likely to benefit from treatment.

UI MeSH Term Description Entries
D006979 Hyperthermia, Induced Abnormally high temperature intentionally induced in living things regionally or whole body. It is most often induced by radiation (heat waves, infra-red), ultrasound, or drugs. Fever Therapy,Hyperthermia, Local,Hyperthermia, Therapeutic,Thermotherapy,Induced Hyperthermia,Therapeutic Hyperthermia,Therapy, Fever,Local Hyperthermia
D008297 Male Males
D008875 Middle Aged An adult aged 45 - 64 years. Middle Age
D009216 Myopia A refractive error in which rays of light entering the EYE parallel to the optic axis are brought to a focus in front of the RETINA when accommodation (ACCOMMODATION, OCULAR) is relaxed. This results from an overly curved CORNEA or from the eyeball being too long from front to back. It is also called nearsightedness. Nearsightedness,Myopias,Nearsightednesses
D011446 Prospective Studies Observation of a population for a sufficient number of persons over a sufficient number of years to generate incidence or mortality rates subsequent to the selection of the study group. Prospective Study,Studies, Prospective,Study, Prospective
D005260 Female Females
D005451 Fluorescein Angiography Visualization of a vascular system after intravenous injection of a fluorescein solution. The images may be photographed or televised. It is used especially in studying the retinal and uveal vasculature. Fluorescence Angiography,Fundus Fluorescence Photography,Angiography, Fluorescein,Angiography, Fluorescence,Fluorescence Photography, Fundus,Photography, Fundus Fluorescence
D005500 Follow-Up Studies Studies in which individuals or populations are followed to assess the outcome of exposures, procedures, or effects of a characteristic, e.g., occurrence of disease. Followup Studies,Follow Up Studies,Follow-Up Study,Followup Study,Studies, Follow-Up,Studies, Followup,Study, Follow-Up,Study, Followup
D005584 Fovea Centralis An area approximately 1.5 millimeters in diameter within the macula lutea where the retina thins out greatly because of the oblique shifting of all layers except the pigment epithelium layer. It includes the sloping walls of the fovea (clivus) and contains a few rods in its periphery. In its center (foveola) are the cones most adapted to yield high visual acuity, each cone being connected to only one ganglion cell. (Cline et al., Dictionary of Visual Science, 4th ed)
D005654 Fundus Oculi The concave interior of the eye, consisting of the retina, the choroid, the sclera, the optic disk, and blood vessels, seen by means of the ophthalmoscope. (Cline et al., Dictionary of Visual Science, 4th ed) Fundus of the Eye,Ocular Fundus,Fundus, Ocular

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