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首页> 外文期刊>Journal of Biophotonics >Performance of a cost‐effective and automated blood counting system for resource‐limited settings operated by trained and untrained users
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Performance of a cost‐effective and automated blood counting system for resource‐limited settings operated by trained and untrained users

机译:用于经过培训和未经培训的用户操作的资源限制设置的成本效益和自动血液计数系统的性能

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摘要

>Current flow‐based blood counting devices require expensive and centralized medical infrastructure and are not appropriate for field use. In this article we report a streamlined, easy‐to‐use method to count red blood cells (RBC), white blood cells (WBC), platelets (PLT) and 3‐part WBC differential through a cost‐effective and automated image‐based blood counting system. The approach consists of using a compact, custom‐built microscope with large field‐of‐view to record bright‐field and fluorescence images of samples that are diluted with a single, stable reagent mixture and counted using automatic algorithms. Sample collection utilizes volume‐controlled capillary tubes, which are then dropped into a premixed, shelf‐stable solution to stain and dilute in a single step. Sample measurement and analysis are fully automated, requiring no input from the user. Cost of the system is minimized through the use of custom‐designed motorized components. We compare the performance of our system, as operated by trained and untrained users, to the clinical gold standard on 120 adult blood samples, demonstrating agreement within Clinical Laboratory Improvement Amendments guidelines, with no statistical difference in performance among different operator groups. The system's cost‐effectiveness, automation and performance indicate that it can be successfully translated for use in low‐resource settings where central hematology laboratories are not accessible.
机译: >电流基于流量的血液计数设备需要昂贵和集中的医疗基础设施,并且不适合现场使用。在本文中,我们通过成本效益和自动的图像,报告了一种简化的,易于使用的方法来计算红细胞(RBC),白细胞(WBC),血小板(PLT)和3部分WBC差异血液计数系统。该方法包括使用紧凑的定制显微镜,具有大视野,以记录用单个稳定的试剂混合物稀释的样品的明亮场和荧光图像,并使用自动算法计数。样品收集利用体积控制的毛细管,然后将其掉入预混合的储备稳定的溶液中以在一步中染色并稀释。样本测量和分析是完全自动化的,需要用户没有输入。通过使用定制设计的电动部件,系统的成本最小化。我们将系统的性能进行比较,由培训和未经培训的用户操作,以120名成人血样的临床金标准,展示临床实验室改进修改准则的一致性,不同的运营商群体的表现差异无统计学差异。该系统的成本效益,自动化和性能表明它可以成功转换为在低资源设置中使用,其中中央血液学实验室无法访问。

著录项

  • 来源
    《Journal of Biophotonics》 |2018年第2期|共9页
  • 作者单位

    Department of Precision Machinery and Precision InstrumentationUniversity of Science and Technology of ChinaHefei Anhui China;

    Department of Precision Machinery and Precision InstrumentationUniversity of Science and Technology of ChinaHefei Anhui China;

    Department of Precision Machinery and Precision InstrumentationUniversity of Science and Technology of ChinaHefei Anhui China;

    Department of Precision Machinery and Precision InstrumentationUniversity of Science and Technology of ChinaHefei Anhui China;

    Department of Precision Machinery and Precision InstrumentationUniversity of Science and Technology of ChinaHefei Anhui China;

    Department of Precision Machinery and Precision InstrumentationUniversity of Science and Technology of ChinaHefei Anhui China;

    Department of Precision Machinery and Precision InstrumentationUniversity of Science and Technology of ChinaHefei Anhui China;

    Department of Precision Machinery and Precision InstrumentationUniversity of Science and Technology of ChinaHefei Anhui China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学;
  • 关键词

    blood counting; hematology; image analysis; POCT;

    机译:血液计数;血液学;图像分析;POCT;

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