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用于现场环境远程医疗应用的组合反射和透射显微镜。

Combined reflection and transmission microscope for telemedicine applications in field settings.

机构信息

UCLA Electrical Engineering Department, University of California, Los Angeles, CA 90095, USA.

出版信息

Lab Chip. 2011 Aug 21;11(16):2738-43. doi: 10.1039/c1lc20169g. Epub 2011 Jun 27.

Abstract

We demonstrate a field-portable upright and inverted microscope that can image specimens in both reflection and transmission modes. This compact and cost-effective dual-mode microscope weighs only ∼135 grams (<4.8 ounces) and utilizes a simple light emitting diode (LED) to illuminate the sample of interest using a beam-splitter cube that is positioned above the object plane. This LED illumination is then partially reflected from the sample to be collected by two lenses, creating a reflection image of the specimen onto an opto-electronic sensor-array that is positioned above the beam-splitter cube. In addition to this, the illumination beam is also partially transmitted through the same specimen, which then casts lensfree in-line holograms of the same objects onto a second opto-electronic sensor-array that is positioned underneath the beam-splitter cube. By rapid digital reconstruction of the acquired lensfree holograms, transmission images (both phase and amplitude) of the same specimen are also created. We tested the performance of this field-portable microscope by imaging various micro-particles, blood smears as well as a histopathology slide corresponding to skin tissue. Being compact, light-weight and cost-effective, this combined reflection and transmission microscope might especially be useful for telemedicine applications in resource limited settings.

摘要

我们展示了一种便携式直立和倒置显微镜,可在反射和透射两种模式下对标本进行成像。这种紧凑且经济高效的双模显微镜重量仅约 135 克(<4.8 盎司),利用简单的发光二极管(LED)通过位于物平面上方的分束立方体来照亮感兴趣的样本。然后,该 LED 照明从样本部分反射,由两个透镜收集,在位于分束立方体上方的光电传感器阵列上形成样本的反射图像。此外,照明光束也部分穿过相同的样本,然后将相同物体的无透镜共线全息图投射到位于分束立方体下方的第二光电传感器阵列上。通过快速数字化重建所获取的无透镜全息图,还可以创建相同样本的透射图像(相位和幅度)。我们通过对各种微粒子、血涂片以及对应于皮肤组织的组织病理学载玻片进行成像来测试这种便携式显微镜的性能。这种组合的反射和透射显微镜因其结构紧凑、重量轻且经济高效,可能特别适用于资源有限环境中的远程医疗应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1bfe/3151572/81ad86d4c81d/nihms-315242-f0001.jpg

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