Radiofrequency Heating of the Cornea: An Engineering Review of Electrodes and Applicators

Author:

Berjano Enrique J,Navarro Enrique,Ribera Vicente,Gorris Javier,Alió Jorge L

Abstract

This paper reviews the different applicators and electrodes employed to create localized heating in the cornea by means of the application of radiofrequency (RF) currents. Thermokeratoplasty (TKP) is probably the best known of these techniques and is based on the principle that heating corneal tissue (particularly the central part of the corneal tissue, i.e. the central stroma) causes collagen to shrink, and hence changes the corneal curvature. Firstly, we point out that TKP techniques are a complex challenge from the engineering point of view, due to the fact that it is necessary to create very localized heating in a precise location (central stroma), within a narrow temperature range (from 58 to 76ºC). Secondly, we describe the different applicator designs (i.e. RF electrodes) proposed and tested to date. This review is planned from a technical point of view, i.e. the technical developments are classified and described taking into consideration technical criteria, such as energy delivery mode (monopolar versus bipolar), thermal conditions (dry versus cooled electrodes), lesion pattern (focal versus circular lesions), and application placement (surface versus intrastromal).

Publisher

Bentham Science Publishers Ltd.

Subject

Biomedical Engineering,Medicine (miscellaneous),Bioengineering

Reference48 articles.

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2. Ismail MM, Pérez-Santonja JJ, Alió JL JL. “Correction of the hyperopia and hyperopic astigmatism by laser thermokeratoplasty,” In: Serdarevic ON, Ed. Refractive Surgery: Current Techniques and Management. New York: Igaku-Shoin 1997; pp. 263-74.

3. Shaw EL, Gasset AR. “Thermokeratoplasty (TKP) temperature profile,” Invest Ophthalmol 1974; 13 : 181-6.

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