首页> 外文会议>Conference on Optical Diagnostics and Sensing >DESIGN, FABRICATION, AND ANALYSIS OF MINIATURE REFLECTIVE OXYGEN MONITORING SYSTEM FOR USE IN PDT OF ESOPHAGEAL CARCINOMA.
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DESIGN, FABRICATION, AND ANALYSIS OF MINIATURE REFLECTIVE OXYGEN MONITORING SYSTEM FOR USE IN PDT OF ESOPHAGEAL CARCINOMA.

机译:用于食管癌PDT的微型反光氧监测系统的设计,制造和分析。

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Photodynamic therapy (PDT) is an effective and minimally invasive treatment modality with relatively less side effects, which is approved by FDA for the treatment of esophageal cancer. Maximum therapeutic outcome of the PDT protocol for each individual patient requires optimization of the components of PDT operating at their highest efficacy. Tumor necrosis, the method of malignant tissue destruction by PDT, is carried out by the toxic singlet oxygen molecules that are being formed from the molecular oxygen in the tumor. The availability of molecular oxygen, hence being the rate limiting step for PDT plays a key role in the treatment protocol. Currently the PDT of esophageal carcinoma is rather a blind process since there is no method to monitor the tumor oxygen level during the treatment. In this paper we present an optical technique to monitor molecular oxygen level in the PDT milieu. The technique described herein is a reflection oximetry technique designed with small semiconductor lasers and a silicon photodiode. The light used for monitoring system comes from two semiconductor diode lasers of 650 nm and 940 nm wavelengths. The two lasers and the photodiode are mounted onto a small package which is to be imprinted onto a balloon catheter containing the PDT light delivery system. Lasers and the photodiode are powered and controlled by a control box that is connected via a cable. Light sources and the respective photodiode output are controlled by the LabVIEW virtual instrumentation. The sequential on and off light source and the respective reflective signal are processed with MATLAB. The latter code integrates with LabVIEW to make an automatic calculation of the corresponding light absorption by each chromophore and to calculate the change in oxygen level as well as the amount of blood and oxygen present in the treatment area. The designed system is capable of monitoring the change in oxygen level and the blood flow in any part of the human body where the package is possible to place.
机译:光动力疗法(PDT)是一种有效和微创的治疗方式,副作用较少,其被FDA批准用于治疗食道癌。每个患者的PDT方案的最大治疗结果需要优化PDT的组分以其最高功效操作。肿瘤坏死,PDT的恶性组织破坏方法由肿瘤中的分子氧形成的有毒单态氧分子进行。分子氧的可用性,因此是PDT的速率限制步骤在治疗方案中起关键作用。目前,食管癌的PDT是盲目的过程,因为没有方法在治疗过程中监测肿瘤氧水平。在本文中,我们介绍了一种光学技术来监测PDT Milieu中的分子氧水平。本文所述的技术是用小半导体激光器和硅光电二极管设计的反射血氧基测技术。用于监测系统的光来自650nm和940nm波长的两个半导体二极管激光器。两个激光器和光电二极管安装在一个小封装上,该小封装将被印在包含PDT光输送系统的球囊导管上。激光器和光电二极管由通过电缆连接的控制箱供电和控制。光源和相应的光电二极管输出由LabVIEW虚拟仪器控制。用MATLAB处理顺序接通和关闭光源和各个反射信号。后者代码与LabVIEW集成,以自动计算每种发色团的相应光吸收,并计算氧气水平的变化以及治疗区域中存在的血液和氧气量。设计的系统能够监测氧气水平的变化和人体的任何部分的血流,其中可以放置包装。

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