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F Koda

Publications and source records attributed to F Koda.

2 recordsLinked to original sources

[Damage to cultured corneal endothelium caused by ultrasound during phacoemulsification].

An experimental study was performed to estimate the degree of corneal endothelial damage caused by ultrasound during phacoemulsification. Cultured corneal endothelium prepared from bovine eyes was exposed to ultrasound. Dead cell rates were determined by counting the number of cells positively stained by trypan blue under various conditions of ultrasonic radiation. Dead cell rate increased from 13 +/- 2% to 39 +/- 4% (n = 5, Mean +/- S.D.) as ultrasonic duration was prolonged from 15 seconds to 45 seconds. Dead cell rate increased from 6 +/- 1% to 39 +/- 4% as ultrasonic power increased from 60% to 100%. Dead cell rate increased from 8 +/- 1% to 44 +/- 11% as the distance of the phaco tip decreased from 7 mm to 4 mm. Dead cell rate increased from 4 +/- 2% to 35 +/- 7% as the angle of the phaco tip increased from 30 degrees to 90 degrees. We confirmed that endothelial damage depended on ultrasonic duration, ultrasonic power, the distance of the phaco tip, and the angle of the phaco tip. We suggest that the endothelium is damaged mainly by shock waves emanating from the phaco tip.

Animals↗

Development of inductive heating equipment using an inductive aperture-type applicator.

We designed an inductive aperture-type applicator, IATA, consisting of a one-turn, square, column-like coil made of a metal strip. In experiments using a phantom, this applicator was seen to have the following characteristics: (1) it does not excessively heat the fat layer; (2) deep portions can be heated effectively; (3) heat can be applied to the subject, without contact with the applicator; (4) excessive generation of heat does not occur in parts of tissue near the edge of the aperture; (5) size of the aperture can be changed for adaptation to size of the site to be heated; (6) the aperture can be modified to fit the shape of the subject and the depth of penetration is influenced by size of the subject being heated; (7) the applicator can be driven at an arbitrary frequency; (8) efficiency of heat generation to the input power is low. The inductive heating equipment, 'Inductron', which we have developed possesses the necessary requirements for adequate clinical application.

Adipose Tissue↗