Garcia-Sucerquia Jorge
Appl Opt. 2016 Aug 20;55(24):6649-55. doi: 10.1364/AO.55.006649.
A comparison of the performance of color digital lensless holographic microscopy (CDLHM) as utilized for illumination of RGB lasers or a super-bright white-light LED with a set of spectral filters is presented. As the use of lasers in CDLHM conceals the possibility of having a compact, lightweight, portable, and low cost microscope, and additionally the limited available laser radiation wavelengths limit a real multispectral imaging microscope, here we present the use of super-bright white-light LED and spectral filters for illuminating the sample. The performance of RGB laser-CDLHM and LED-CDLHM is evaluated on imaging a section of the head of a Drosophila melanogaster fly. This comparison shows that there is trade-off between the spatial resolution of the microscope and the light sources utilized, which can be understood with regard to the coherence properties of the illuminating light. Despite the smaller spatial coherence features of LED-CDLHM in comparison with laser-CDLHM, the former shows promise as a portable RGB digital lensless holographic microscope that could be extended to other wavelengths by the use of different spectral filters.
本文介绍了彩色数字无透镜全息显微镜(CDLHM)在使用RGB激光或带有一组光谱滤光片的超亮白光发光二极管(LED)进行照明时的性能比较。由于在CDLHM中使用激光掩盖了拥有紧凑、轻便、便携式和低成本显微镜的可能性,此外,有限的可用激光辐射波长限制了真正的多光谱成像显微镜,因此我们在此展示使用超亮白光LED和光谱滤光片来照亮样品。在对黑腹果蝇头部的一个切片进行成像时,评估了RGB激光 - CDLHM和LED - CDLHM的性能。这种比较表明,显微镜的空间分辨率与所使用的光源之间存在权衡,这可以从照明光的相干特性方面来理解。尽管与激光 - CDLHM相比,LED - CDLHM的空间相干特性较小,但前者作为一种便携式RGB数字无透镜全息显微镜显示出前景,通过使用不同的光谱滤光片可扩展到其他波长。