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一种经济实惠的、手持式多模式显微镜系统,具有内置的细胞形态学和在移动设备上的细胞计数功能。

An affordable, handheld multimodal microscopic system with onboard cell morphology and counting features on a mobile device.

机构信息

Applied Photonics and Nanophotonics Laboratory, Department of Physics, Tezpur University, Sonitpur, Assam-784028, India.

Department of Molecular Biology and Biotechnology, Tezpur University, Sonitpur, Assam-784028, India.

出版信息

Analyst. 2022 Jun 13;147(12):2859-2869. doi: 10.1039/d1an02317a.

Abstract

Microscopes, bright-field (BF) and fluorescence microscopes, in particular, are ubiquitous for clinical diagnostics, cellular and microbiological investigations and in research laboratories. However, the size, cost, fragility and need for skilled personnel to operate these tools restrict their use in resource-limited settings. As an alternative platform, herein, we report a flexible multimodal imaging system that operates in BF and fluorescence modes using a smartphone. Our device utilizes the inbuilt primary camera of phones, and with the aid of easily available optical components, the designed platform is transformed into a high-throughput microscopic device that performs on par with that of a laboratory-grade microscope. The designed platform operates at three different optical magnifications and yields a lateral resolution of 1.21 μm over an acceptable field-of-view (FoV) of diameter ∼4530 μm. The versatility of the device has been demonstrated through imaging of standard microbeads and human blood samples both in BF and fluorescence modes of imaging. Furthermore, the designed imaging platform is equipped with an on-board cell recognition feature which has been obtained through developing a smartphone application for automatic cell counting with high precision.

摘要

显微镜,尤其是明场(BF)和荧光显微镜,在临床诊断、细胞和微生物学研究以及研究实验室中无处不在。然而,这些工具的体积、成本、易碎性以及对熟练操作人员的需求限制了它们在资源有限环境中的使用。作为替代平台,在此,我们报告了一种灵活的多模式成像系统,该系统使用智能手机在 BF 和荧光模式下运行。我们的设备利用手机内置的主摄像头,并借助易于获得的光学组件,将设计的平台转换为高通量显微镜设备,其性能与实验室级显微镜相当。设计的平台在三种不同的光学放大倍数下运行,在可接受的直径约为 4530μm 的视场(FoV)内,横向分辨率为 1.21μm。该设备的多功能性已通过在 BF 和荧光成像模式下对标准微珠和人血样本进行成像得到了证明。此外,设计的成像平台配备了 onboard 细胞识别功能,该功能是通过开发用于自动高精度细胞计数的智能手机应用程序获得的。

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