首页> 外文会议>Frontiers in Biomedical Devices Conference >DESIGN OF A HIGH YIELDING PHOTONIC LIGHT DELIVERY SYSTEM TO BE USED IN PHOTODYNAMIC THERAPY FOR ESOPHAGEAL CANCER, WITH MICROWAVE ANTENNA IMPRINTED BALLOON CATHETER FOR OXYGEN ENHANCEMENT
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DESIGN OF A HIGH YIELDING PHOTONIC LIGHT DELIVERY SYSTEM TO BE USED IN PHOTODYNAMIC THERAPY FOR ESOPHAGEAL CANCER, WITH MICROWAVE ANTENNA IMPRINTED BALLOON CATHETER FOR OXYGEN ENHANCEMENT

机译:用于食管癌光动力疗法的高产光子光输送系统的设计,微波天线压印气球导管用于氧气增强

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Photodynamic therapy (PDT) is a minimally invasive treatment with high effectiveness in the management of cancer of the upper gastrointestinal tract. A higher mortality rate associated with surgery and the higher morbidity in the older age group both make PDT a better treatment method for the treatment of esophageal cancer. However, limitations in the best docimetry protocols performance of PDT are due to ineffectiveness of the light delivery and in the unavailability of sufficient oxygen required for singlet oxygen generation to bring cellular death. The Introduction of an inexpensive high power semiconductor diode lasers for the light delivery system makes PDT efficient, low cost and portable [8-10]. However, the metallic water cooling systems used in the existing semiconductor cooling designs make those systems non-flexible and cumbersome in size.
机译:光动力治疗(PDT)是具有高效能性的微创治疗,在上胃肠道的癌症管理中具有高效果。与手术相关的死亡率和年龄较大组中的发病率较高,使PDT成为治疗食管癌的更好的治疗方法。然而,PDT的最佳编程协议性能的限制是由于光输送的无效和不可用的单次氧生成所需的足够氧气来带来细胞死亡。为光输送系统引入廉价的高功率半导体二极管激光器使PDT高效,成本低,便携式[8-10]。然而,在现有半导体冷却设计中使用的金属水冷系统使得这些系统的尺寸不柔软和麻烦。

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