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Developing a dermatological photodiagnosis system by optical image analyses and in vivo study

机译:通过光学图像分析和体内研究开发皮肤病光诊断系统

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Dermatological photodynamic therapy (DPDT) involves using systematic photosensitizers in combination with light irradiation treatment to eliminate cancer cells. Therefore, a noninvasive fluorescence photodiagnosis system is critical in DPDT for diagnosing target tissues and demarcating the margin of normal tissues. This study proposes a 375-nm ring LED light module in fluorescence imaging for DPDT applications. Image reproducibility (I.R.) and image interference (I.I.) analysis were performed. The results showed that the I.R. value of this fluorescence diagnostic system was higher than 99.0%, and the I.I. from external light sources was lower than 3.0%. In addition, the result of an in vivo study showed that the Chlorin e6 red fluorescence and the scope of distribution of B16-F10 melanoma cells in a mouse ear's vein could be measured clearly using our device; however, the comparison studio with 395-nm LED lights could not focus or capture the red fluorescence effectively. (C) 2016 Elsevier B.V. All rights reserved.
机译:皮肤光动力疗法(DPDT)涉及将系统性光敏剂与光照射疗法结合使用以消除癌细胞。因此,无创荧光光诊断系统在DPDT中对于诊断目标组织和界定正常组织的边缘至关重要。这项研究提出了用于DPDT应用的荧光成像中的375 nm环形LED光模块。进行图像再现性(I.R.)和图像干扰(I.I.)分析。结果显示I.R.该荧光诊断系统的I.I.值高于99.0%。来自外部光源的辐射低于3.0%。此外,一项体内研究结果表明,使用我们的设备可以清楚地测量氯霉素e6红色荧光和小鼠耳静脉中B16-F10黑色素瘤细胞的分布范围;但是,具有395 nm LED灯的比较工作室无法有效聚焦或捕获红色荧光。 (C)2016 Elsevier B.V.保留所有权利。

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