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Biomedical subjects

Y Kora

Publications and source records attributed to Y Kora.

24 records · Page 2Linked to original sources

A simple modified SRK formula for severely myopic eyes.

We describe our modification of the most accurate intraocular lens power calculation formula currently used, the SRK formula, to improve the accuracy with which it can be used to calculate the power of IOLs that are implanted in severely myopic eyes, especially in those with exceptional axial length. This modified formula, which we call the L-SRK, is I = A - 2.5 L - 0.9 K - 1.69R - 1.69 (where I = the actual implanted IOL power; A = the A-constant; L = the axial length; K = the average keratometer reading; and R = the predicted postoperative refraction). The results achieved using this modified formula demonstrate its superior accuracy in calculating lens powers for severely myopic eyes.

Humans↗

A new intraocular lens formula for high myopia.

We developed a formula suitable for calculating intraocular lens power for eyes with axial lengths of 27 mm or greater. We then used this formula in a prospective study to determine its reliability in 32 eyes. In these latter cases the mean error between predictive postoperative refraction and actual postoperative refraction was 0.36 D, with 67% of the cases having less than 1.0 D error; 84% of the cases having less than a 2.0 D error; and no cases having an error greater than 3.0 D. The new formula provided greater accuracy for these highly myopic eyes than the SRK, SRKII, Hollady, and Thompson formulas.

Adolescent↗

Intraocular lens implantation and high myopia.

We evaluated aphakia and pseudophakia in highly myopic patients whose axial lengths were 27 mm and over. Cataract surgery alone was performed on 99 eyes (aphakic group) and intraocular lens (IOL) implantation was performed on 84 eyes (pseudophakic group). The IOL power was determined by the SRK formula and ranged from +9.0 to +18.5 diopters (D). There was no statistical difference in postoperative complications between the aphakic and pseudophakic groups. The postoperative aphakic refractions ranged from +9.5 D to -3.5 D, and the pseudophakic refractions, from +2.5 D to -14.0 D. A visual acuity of 20/40 or better was achieved by 51% of aphakic patients and 63% of pseudophakic patients. A near visual acuity of 20/40 or better was achieved by 65% of pseudophakic patients. Seventy-three pseudophakic eyes (87%) were not corrected or were corrected with minus diopter lenses. This confirmed our opinion that there was no need to correct them for near vision. According to a postoperative questionnaire, 67% of the pseudophakic patients did not need spectacles for near vision and 93% of patients could see comfortably for daily life. In view of these results, we feel that most myopic patients are good candidates for IOL implantation.

Adult↗

A case of insulin dependent diabetes mellitus following systemic treatment for Vogt-Koyanagi-Harada syndrome.

A 29-year-old man developed acute visual impairment, cough, and headache. Both eyes showed serous retinal detachment in the posterior fundus. Fluorescein angiography showed subretinal pooling of fluorescein in the late phase. A diagnosis of Vogt-Koyanagi-Harada (VKH) syndrome was made based on clinical features. Treatment with systemic corticosteroids resulted in improvement of uveitis and both eyes showed "sunset glow" fundus 11 months later. Insulin-dependent diabetes mellitus (IDDM) developed 13 months later (3 months after systemic corticosteroid therapy). Despite treatment with insulin, glycemic control was poor. Human leukocyte antigen (HLA) typing showed HLADR9 and DQB 1*0303 related to IDDM. We postulated that treatment with corticosteroids precipitated IDDM, a yet unknown common autoimmune mechanism might have caused IDDM and VKH, or both conditions occurred coincidentally.

Adult↗