Chen Duan, Li Ning, Zeng Shaoqun, Lv Xiaohua, Chen Li, Liu Xiuli, Hu Qinglei
Britton Chance Center for Biomedical Photonics, Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan, China.
Ministry of Education (MOE) Key Laboratory for Biomedical Photonics, School of Engineering Sciences, Huazhong University of Science and Technology, Wuhan, China.
Analyst. 2023 May 2;148(9):2021-2034. doi: 10.1039/d3an00070b.
Blood analysis through complete blood count is the most basic medical test for disease diagnosis. Conventional blood analysis requires bulky and expensive laboratory facilities and skilled technicians, limiting the universal medical use of blood analysis outside well-equipped laboratory environments. Here, we propose a multiparameter mobile blood analyzer combined with label-free contrast-enhanced defocusing imaging (CEDI) and machine vision for instant and on-site diagnostic applications. We designed a low-cost and high-resolution miniature microscope (size: 105 mm × 77 mm × 64 mm, weight: 314 g) that comprises a pair of miniature aspheric lenses and a 415 nm LED for blood image acquisition. The analyzer, adopting CEDI, can obtain both the refractive index distributions of the white blood cell (WBC) and hemoglobin spectrophotometric information, enabling the analyzer to supply rich blood parameters, including the five-part WBC differential count, red blood cell (RBC) count, and mean corpuscular hemoglobin (MCH) quantification with machine vision algorithms and the Lambert-Beer law. We have shown that our assay can analyze a blood sample within 10 minutes without complex staining, and measurements (30 samples) from the analyzer have a strong linear correlation with clinical reference values (significance level of 0.0001). This study provides a miniature, light weight, low-cost, and easy-to-use blood analysis technique that overcomes the challenge of simultaneously realizing FWD count, RBC count, and MCH analysis using a mobile device and has great potential for integrated surveillance of various epidemic diseases, including coronavirus infection, invermination, and anemia, especially in low- and middle-income countries.
通过全血细胞计数进行血液分析是疾病诊断中最基本的医学检测。传统的血液分析需要庞大且昂贵的实验室设备以及技术熟练的技术人员,这限制了在设备完善的实验室环境之外血液分析在医疗领域的广泛应用。在此,我们提出一种结合无标记对比度增强散焦成像(CEDI)和机器视觉的多参数移动血液分析仪,用于即时和现场诊断应用。我们设计了一种低成本、高分辨率的微型显微镜(尺寸:105毫米×77毫米×64毫米,重量:314克),它由一对微型非球面透镜和一个用于采集血液图像的415纳米发光二极管组成。该分析仪采用CEDI技术,能够获取白细胞(WBC)的折射率分布和血红蛋白分光光度信息,从而使分析仪能够提供丰富的血液参数,包括通过机器视觉算法和朗伯 - 比尔定律进行五分类白细胞计数、红细胞(RBC)计数以及平均红细胞血红蛋白含量(MCH)定量分析。我们已经证明,我们的检测方法能够在10分钟内分析一份血液样本,无需复杂染色,并且该分析仪的测量结果(30个样本)与临床参考值具有很强的线性相关性(显著性水平为0.0001)。这项研究提供了一种微型、轻便、低成本且易于使用的血液分析技术,克服了使用移动设备同时实现白细胞分类计数、红细胞计数和平均红细胞血红蛋白含量分析的挑战,在包括冠状病毒感染、寄生虫感染和贫血等各种流行病的综合监测方面具有巨大潜力,特别是在低收入和中等收入国家。