Development of a red diode laser system for photodynamic therapy

Konstantinos N. Halkiotis, D. Yova, N. Uzunoglou, G. Papastergiou, S. Matakias, I. Koukouvinos
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Abstract

The effectiveness of photodynamic treatment modality has been proven experimentally for a large variety of tumors, during the last years. This therapy utilizes the combined action of light and photosensitizing drug. Until now, a disadvantage of PDT has be the low tissue penetration of light, at the wavelengths of most commonly available lasers, for clinical studies. The red wavelength offers the advantage of increased penetration depth in tissue, in addition several new wavelength offers the advantage of increased penetration depth in tissue, in addition several new photosensitizers present absorption band at the region 630nm to 690nm. The development of high power red diode laser system for photodynamic therapy, has provided a cost effective alternative to existing lasers for use in PDT. This paper will describe the system design, development and performance of a diode laser system, connected with a fiber optic facility, to be used for PDT. The system was based on a high power semiconductor diode laser emitting at 655nm. The laser output power was approximately 60mW at the output of a 62.5/125/900 micron fiber optic probe. FUll technical details and optical performance characteristics of the system will be discussed in this paper.
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光动力治疗用红色二极管激光系统的研制
在过去的几年中,光动力治疗方式的有效性已被实验证明适用于多种肿瘤。这种疗法利用光和光敏药物的联合作用。到目前为止,PDT的一个缺点是在临床研究中,在最常用的激光波长下,光的组织穿透性较低。红色波长具有增加组织渗透深度的优点,另外几种新波长具有增加组织渗透深度的优点,另外几种新的光敏剂在630nm至690nm区域存在吸收带。用于光动力治疗的高功率红色二极管激光系统的开发,为PDT中使用的现有激光器提供了一种经济有效的替代方案。本文将描述用于PDT的二极管激光系统的系统设计、开发和性能,该系统与光纤设备相连。该系统基于高功率半导体二极管激光器,发射波长为655nm。在62.5/125/900微米光纤探头的输出端,激光输出功率约为60mW。本文将讨论该系统的全部技术细节和光学性能特点。
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