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基于手机的平台,用于生物医学设备的开发和教育应用。

Cell-phone-based platform for biomedical device development and education applications.

机构信息

Center for Biophotonics Science and Technology, University of California Davis, Sacramento, California, United States of America.

出版信息

PLoS One. 2011 Mar 2;6(3):e17150. doi: 10.1371/journal.pone.0017150.

Abstract

In this paper we report the development of two attachments to a commercial cell phone that transform the phone's integrated lens and image sensor into a 350x microscope and visible-light spectrometer. The microscope is capable of transmission and polarized microscopy modes and is shown to have 1.5 micron resolution and a usable field-of-view of 150 x 50 with no image processing, and approximately 350 x 350 when post-processing is applied. The spectrometer has a 300 nm bandwidth with a limiting spectral resolution of close to 5 nm. We show applications of the devices to medically relevant problems. In the case of the microscope, we image both stained and unstained blood-smears showing the ability to acquire images of similar quality to commercial microscope platforms, thus allowing diagnosis of clinical pathologies. With the spectrometer we demonstrate acquisition of a white-light transmission spectrum through diffuse tissue as well as the acquisition of a fluorescence spectrum. We also envision the devices to have immediate relevance in the educational field.

摘要

在本文中,我们报告了两种附件的开发,这些附件可以将商用手机的集成镜头和图像传感器转换为 350x 显微镜和可见光分光计。该显微镜能够实现透射和偏振显微镜模式,并且在没有图像处理的情况下,其分辨率为 1.5 微米,可用视野为 150x50,应用后处理时约为 350x350。分光计的带宽为 300nm,光谱分辨率的极限接近 5nm。我们展示了这些设备在与医学相关问题上的应用。在显微镜的情况下,我们对染色和未染色的血涂片进行成像,显示出能够获得与商业显微镜平台相似质量的图像的能力,从而可以诊断临床病理学。使用分光计,我们演示了通过漫射组织获取白光透射光谱以及获取荧光光谱的过程。我们还设想这些设备在教育领域具有直接的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/204d/3047559/3299aa10f5fd/pone.0017150.g001.jpg

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