Intracameral heparin in pediatric cataract surgery.
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Biomedical subjects
Publications and source records attributed to Tanuj Dada.
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PURPOSE: To study the corneal endothelium and pachymetry in eyes with different subtypes of primary angle closure glaucoma (PACG), as compared to controls. METHODS: A cross-sectional study was conducted on 30 consecutive patients in each subtype of PACG, subacute, acute and chronic, and 30 age and refraction matched controls. The parameters recorded included gonioscopy, optic disc evaluation, applanation tonometry, specular microscopy and central ultrasonic pachymetry. RESULTS: The mean endothelial cell counts in the four groups were as follows: subacute PACG 2396 +/- 271 cells/mm2, acute PACG 1597 +/- 653 cells/mm2, chronic PACG 2229 +/- 655 cells/mm2 and controls 2461 +/- 321 cells/mm2. The mean endothelial cell count in the fellow eyes of subacute PACG, acute PACG and chronic PACG patients was 2294 +/- 305 cells/mm2, 2388 +/- 226 cells/mm2 and 2108 +/- 203 cells/mm2, respectively (NS). The acute PACG patients had significantly lower endothelial cell counts (P < 0.001) as compared to the other three groups. Eyes in which the acute attack of angle closure persisted for less than 72 h had a mean endothelial cell count of 2016 +/- 306 cells/mm2, as compared to 759 +/- 94.4 cells/mm2 in eyes with an attack lasting for 72 h or more (P < 0.001). The endothelial count was also significantly lower in eyes with chronic PACG as compared to control eyes (P < 0.001). There was increased pleomorphism and polymegathism of the corneal endothelial cells seen in eyes with resolved acute and chronic PACG. The mean central corneal thickness was 531.4 +/- 25.3 microm in eyes with subacute PACG, 567.9 +/- 37.3 microm in eyes with acute PACG, 526.4 +/- 31.9 microm in eyes with chronic PACG and 525 +/- 12.6 microm in control eyes. The acute PACG eyes had a significantly higher corneal thickness (P < 0.001) when compared to all the other groups. CONCLUSION: There is a significant decrease in the corneal endothelial cell density in eyes that have had an acute attack of angle closure glaucoma and in eyes with chronic PACG. The endothelial cell population in eyes with sub-acute PACG and in the fellow eyes of all subtypes of PACG is not significantly different from the normal population.
We describe a case with non-responding polymicrobial spontaneous corneal ulceration in an HIV-positive patient. Acanthamoeba was among the microorganisms isolated.
OBJECTIVE: The aim of the study is to identify the causes, demographic and clinical profile and evaluate final visual outcome of pediatric ocular injuries. METHODS: Two hundred and four children aged fourteen years or less presenting to the emergency services of a tertiary care centre with ocular injury were included. Demographic data, nature and cause of injury, duration between injury and presentation to an ophthalmologist and the diagnosis were recorded. Evaluation of visual acuity, anterior segment and fundus were done. All patients were appropriately managed and followed up on days 1, 7, 1 month, 3 and 6 months. RESULT: Majority of injuries occurred in children of 5 years and older (87.7%). There were 133 (65.1%) boys and 71 (34.9%) girls. Forty-nine (24%) cases presented within 6 hours of injury while 70 (34.3%) presented after more than 24 hours after trauma. Most common cause of injury was bow and arrow (15.2%) followed by household appliances(14.3%). Closed globe injuries accounted for 42.2% injuries, open globe for 53.9% and 3.9% were chemical injuries. Best corrected visual acuity of 6/12 or better was achieved in 79 eyes (91.86%) in closed globe group. However, only 17 eyes (15.45%) in open globe group could achieve this. CONCLUSION: Most ocular injuries in children are preventable and occur from unsupervised games like bow and arrow and firecracker, which can lead to significant visual loss.
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AIM: To study the demographic pattern and indications for evisceration in north India and to evaluate the changing trends over the last decade. METHODS: In a retrospective hospital-based study, case records of all patients who underwent evisceration at Rajendra Prasad Centre for Ophthalmic Sciences from January 1990 to December 1999 were reviewed. The parameters evaluated were the age and sex distribution, the place of residence (urban/rural) and the indications for evisceration. The aetiology responsible for evisceration was determined on the basis of history, clinical examination and investigations as determined from previous records. RESULTS: One hundred and sixty-four patients had one eye eviscerated during the study period. The mean age of the patients was 51 +/- 13.84 years (range 6 months to 90 years). Panophthalmitis was the most common indication for evisceration (78.6%, n = 129), followed by irreparable globe injury (21.3%, n = 35). There was a significant decrease in the eviscerations performed due to pano-phthalmitis from 104 cases during the period 1990-1994, to 25 cases in the period 1995-1999. CONCLUSION: Panophthalmitis and severe ocular injury are the major indications of evisceration in north India. There has been a significant decrease in the number of eviscerations related to panophthalmitis over the last decade.
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PURPOSE: To examine the intraocular pressure (IOP) of a normal pediatric population under topical anesthesia without sedation and its correlation with other ocular parameters. SUBJECTS AND METHODS: The IOP of 810 eyes of 405 patients with ages ranging from 0 to 12 years was measured using the Perkins applanation tonometer. Cooperative patients also underwent pachymetry, refraction, and biometry measurements. RESULTS: The mean (+/- standard deviation) age was 6.68 (+/- 3.28) years, with a mean (+/- standard deviation) IOP of 12.02 (+/- 3.74) mm Hg. IOP showed an increasing trend with age (correlation coefficieit [r] = 0.49) and tended to approach adult levels by 12 years of age. The IOP correlated directly with refraction (r = 0.69) and pachymetry (r = 0.39) and inversely with axial length (r = -0.1). CONCLUSIONS: The IOP in children is much lower than that in adults. It was noted to increase with age, hyperopia, and corneal thickness and was inversely proportional to axial length.