JOURNAL ARTICLE

<title>Tissue photoablation process with short-pulsed lasers</title>

Gerhard J. MuellerKlaus DoerschelH. Kar

Year: 1992 Journal:   Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE Vol: 1524 Pages: 150-177   Publisher: SPIE

Abstract

Since Hippocrates, physicians have three weapons to fight malignant diseases of the human body: Quae medicamenta non sanat, ferrum sanat; quae ferrum non sanat, ignis sanat; and quae vero ignis non sanat, insanabilia reputari oportet. Today there are various possibilities to use the ''fire'': electrical and optical cauterization; mono- and bipolar rf-surgery; ionizing radiation for tumor treatment; and last but not least, the laser of laser tissue interactions, all can be used to remove malignant tissue either by biological digestion or immediate ablation, i.e., photovaporization or photodecomposition. This paper will discuss a semiempirical theory of the so-called photoablation process and the thermal side effects of the surrounding tissue. The term ''Photoablation; has to be well differentiated with the terms photovaporization, photodisruption and photofragmentation. As will be shown in this paper, photoablation is a microscale fast thermal explosion.

Keywords:
Photoablation Laser Ablation Sloughing Microscale chemistry Materials science Laser ablation Optics Medicine Physics Pathology Excimer laser

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Topics

Laser Design and Applications
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Laser Material Processing Techniques
Physical Sciences →  Engineering →  Computational Mechanics
Laser Applications in Dentistry and Medicine
Health Sciences →  Medicine →  Radiology, Nuclear Medicine and Imaging

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