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首页> 外文期刊>Medical Physics >Design and construction of a light-delivery system for photodynamic therapy.
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Design and construction of a light-delivery system for photodynamic therapy.

机译:光动力疗法的光传输系统的设计和构建。

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We have developed a device to divide the output from a dye laser into as many as eight beams of equal power with negligible total power loss. In this system, 630-nm s-plane polarized laser light was split by a series of highly polarization-sensitive plate beamsplitters. Each of the beams was coupled to a 200, 400, or 600 microm diameter optical fiber. Brewster-window-type attenuators allowed the power of each beam to be individually set. It was possible to reconfigure the device to produce four, two, or one output(s). We discuss the design requirements of the beamsplitter device and describe its construction from mostly commercially available components. An apparatus for positioning and stabilizing each optical fiber relative to the skin surface of a patient is also described. The illumination from the fiberoptic supported by such an apparatus strikes a defined surface area and is independent of patient movement. Both the beamsplitter device and the optical fiber positioner are used routinely in photodynamic therapy (PDT) of malignant tumors in the clinic and in the laboratory.
机译:我们已经开发出一种设备,可以将染料激光器的输出分成多达八束相等功率的光束,而总功率损耗可以忽略不计。在该系统中,630 nm s平面偏振激光被一系列高度偏振敏感的平板分束器分开。每个光束耦合到直径为200、400或600微米的光纤。布鲁斯特窗式衰减器允许单独设置每个光束的功率。可以重新配置设备以产生四个,两个或一个输出。我们讨论了分束器设备的设计要求,并从大部分可商购的组件中描述了其结构。还描述了一种用于相对于患者的皮肤表面定位和稳定每根光纤的设备。由这样的设备支撑的来自光纤的照明照射到限定的表面积,并且与患者运动无关。分光镜装置和光纤定位器在临床和实验室中都常规用于恶性肿瘤的光动力治疗(PDT)。

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