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用于无标记血液涂片成像的坚固紧凑的数字无透镜全息显微镜。

Robust and compact digital Lensless Holographic microscope for Label-Free blood smear imaging.

作者信息

Buitrago-Duque Carlos, Patiño-Jurado Brayan, Garcia-Sucerquia Jorge

机构信息

School of Physics, Universidad Nacional de Colombia - Sede Medellin, A.A: 3840, Medellin 050034, Colombia.

出版信息

HardwareX. 2023 Feb 25;13:e00408. doi: 10.1016/j.ohx.2023.e00408. eCollection 2023 Mar.

Abstract

The lack of equipped healthcare infrastructure in isolated hard-to-reach zones exposes their population to a higher risk of complications in common diseases. With a timely diagnosis setting a life-altering difference, worldwide efforts have been conducted for the development of point-of-care testing (PoCT) with cost-effective devices. Among the most common interests in PoCT is the analysis of blood smear samples, as they can help to detect, diagnose, and monitor a wide range of diseases and disorders. With microscopy being the traditional tool for these analyses, a significative advance has been the development of cost-effective digital holographic microscopy systems, driven in part by its label-free imaging capabilities that waive the need for any sample preprocessing. Here, a robust and portable digital lensless holographic microscope, functionalized for the analysis of non-preprocessed blood smear samples in PoCT environments, is presented, and its viability is tested in the observation of red blood cells. The device uses an optical fiber with a cone-shaped tip instead of a pinhole, which ensures the sturdiness of the system and eliminates the need for challenging alignment. While the distances of the microscope can be tuned before fabrication, the herein-reported operational parameters are functionalized for the specific analysis of blood samples.

摘要

在偏远、难以到达的地区,缺乏配备齐全的医疗基础设施,这使其居民在患常见疾病时出现并发症的风险更高。由于及时诊断会带来改变人生的差异,因此全球都在努力开发具有成本效益的即时检测(PoCT)设备。即时检测中最常见的关注点之一是血液涂片样本分析,因为它们有助于检测、诊断和监测多种疾病及病症。显微镜检查是这些分析的传统工具,具有成本效益的数字全息显微镜系统的开发是一项重大进展,部分原因是其无标记成像能力无需任何样本预处理。在此,我们展示了一种坚固且便携的无透镜数字全息显微镜,其功能适用于在即时检测环境中分析未经预处理的血液涂片样本,并在观察红细胞时测试了其可行性。该设备使用带有锥形尖端的光纤而非针孔,这确保了系统的坚固性并消除了具有挑战性的对准需求。虽然显微镜的距离可以在制造前进行调整,但本文报告的操作参数是针对血液样本的特定分析进行功能化设置的。

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