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Development and testing of a homogenous multi-wavelength LED light source

机译:均匀多波长LED光源的开发和测试

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Multispectral imaging of human tissue is a powerful method that allows for quantify scattering and absorption parameters of the tissue and differentiate tissue types or identify pathology. This method requires imaging at multiple wavelengths and then fitting the measured data to a model based on light transport theory. Earlier, a mobile phone based multi-spectral imaging system was developed to image the uterine cervix from the colposcopy geometry, outside the patient's body at a distance of 200-300 mm. Such imaging of a distance object has inherent challenges, as bright and homogenous illumination is required. Several solutions addressing this problem were developed, with varied degrees of success. In this paper, several multi-spectral illumination setups were developed and tested for brightness and uniformity. All setups were specifically designed with low cost in mind, utilizing a printed circuit board with surface-mounted LEDs. The three setups include: LEDs illuminating the target directly, LEDs illuminating focused by a 3D printed miniature lens array, and LEDs coupled to a mixing lens and focusing optical system. In order to compare the illumination uniformity and intensity performance two experiments were performed. Test results are presented, and various tradeoffs between the three system configurations are discussed. Test results are presented, and various tradeoffs between the three system configurations are discussed.
机译:人体组织的多光谱成像是一种强大的方法,允许量化组织的散射和吸收参数并区分组织类型或鉴定病理学。该方法需要在多个波长处成像,然后将测量的数据拟合到基于光传输理论的模型。早先,开发了一种移动电话的多光谱成像系统以从阴道镜的几何形象将子宫内窥镜图像图像在患者身体外部的距离为200-300mm。这种距离对象的成像具有固有的挑战,因此需要明亮和均匀的照明。解决了解决此问题的几个解决方案,成功等多种。在本文中,开发了几种多光谱照明设置并测试了亮度和均匀性。所有设置都是专门设计的低成本,利用带有表面安装LED的印刷电路板。三个设置包括:LED直接照亮目标,LED照亮聚焦的3D印刷微型镜头阵列,以及耦合到混合透镜和聚焦光学系统的LED。为了比较照明均匀性和强度性能,进行两种实验。提出了测试结果,讨论了三种系统配置之间的各种权衡。提出了测试结果,讨论了三种系统配置之间的各种权衡。

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