Pulsed CO2 laser tissue ablation: Effect of tissue type and pulse duration on thermal damage
- 1 January 1988
- journal article
- research article
- Published by Wiley in Lasers in Surgery and Medicine
- Vol. 8 (2), 108-118
- https://doi.org/10.1002/lsm.1900080204
Abstract
Tissue removal by infrared lasers is accompanied by thermal damage to nonablated tissue. The extent of thermal damage can be controlled by a choice of laser wavelength, irradiance, and exposure duration. The effect of exposure duration has been studied in vivo by using CO2 lasers with pulse widths that vary from 2 μsec to 50 msec. Pulse widths of 50 msec, typical of a shuttered, continuous-wave CO2 laser, produce damage regions 750 μm wide in normal guinea pig skin; the use of a 2-μseclong pulse reduced this damage zone to as little as 50 μm. Using 2-μseclong pulses, in vitro studies showed that the minimum zone of thermal damage varied significantly with tissue type. The thermal denaturation of these tissues has been studied and correlated with damage. The effect of denaturation temperature and pulse duration on the width of the damage zone is explained by a simple model.Keywords
This publication has 21 references indexed in Scilit:
- Use of pulsed energy delivery to minimize tissue injury resulting from carbon dioxide laser irradiation of cardiovascular tissuesJournal of the American College of Cardiology, 1986
- Techniques of Laser Burn SurgeryPublished by Springer Nature ,1981
- COMPARISON OF CARBON DIOXIDE LASER EXCISION OF BURNS WITH OTHER THERMAL KNIVESAnnals of the New York Academy of Sciences, 1976
- Theory, Measurement, and Application of Thermal Properties of BiomaterialsAnnual Review of Biophysics and Bioengineering, 1975
- Observation of Laser-induced Explosion of Solid Materials and Correlation with TheoryApplied Optics, 1974
- High-intensity laser-induced vaporization and explosion of solid materialIEEE Journal of Quantum Electronics, 1972
- Ocular hazards from lasers and other optical sourcesC R C Critical Reviews in Environmental Control, 1970
- The absorption spectra of liquid phase H2O, HDO and D2O from 0·7 μm to 10 μmInfrared Physics, 1963
- Evidence for a Reversible First-Order Phase Transition in Collagen–Diluent MixturesNature, 1956
- The Near Infrared Absorption Spectrum of Liquid WaterJournal of the Optical Society of America, 1951