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Cell Cytometry: Review and Perspective on Biotechnological Advances

机译:细胞计数:生物技术进展的回顾与展望

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摘要

Cell identification and enumeration are essential procedures within clinical and research laboratories. For over 150 years, quantitative investigation of body fluids such as counts of various blood cells has been an important tool for diagnostic analysis. With the current evolution of point-of-care diagnostics and precision medicine, cheap and precise cell counting technologies are in demand. This article reviews the timeline and recent notable advancements in cell counting that have occurred as a result of improvements in sensing including optical and electrical technology, enhancements in image processing capabilities, and contributions of micro and nanotechnologies. Cell enumeration methods have evolved from the use of manual counting using a hemocytometer to automated cell counters capable of providing reliable counts with high precision and throughput. These developments have been enabled by the use of precision engineering, micro and nanotechnology approaches, automation and multivariate data analysis. Commercially available automated cell counters can be broadly classified into three categories based on the principle of detection namely, electrical impedance, optical analysis and image analysis. These technologies have many common scientific uses, such as hematological analysis, urine analysis and bacterial enumeration. In addition to commercially available technologies, future technological trends using lab-on-a-chip devices have been discussed in detail. Lab-on-a-chip platforms utilize the existing three detection technologies with innovative design changes utilizing advanced nano/microfabrication to produce customized devices suited to specific applications.
机译:细胞鉴定和计数是临床和研究实验室的基本程序。 150多年来,对体液进行定量研究(例如各种血细胞计数)一直是诊断分析的重要工具。随着即时诊断和精确医学的发展,对便宜而精确的细胞计数技术的需求日益迫切。本文回顾了时间轴和最近在细胞计数方面的显着进步,这些进步是由于包括光学和电气技术在内的传感技术的改进,图像处理能力的增强以及微纳技术的贡献所致。细胞计数方法已经从使用血球计数器的手动计数发展到能够提供高精度和高通量可靠计数的自动细胞计数器。这些发展是通过使用精密工程,微米和纳米技术方法,自动化和多元数据分析来实现的。根据检测原理,可以将市售的自动细胞计数器大致分为三类,即电阻抗,光学分析和图像分析。这些技术具有许多常见的科学用途,例如血液学分析,尿液分析和细菌计数。除了商用技术之外,还详细讨论了使用片上实验室设备的未来技术趋势。芯片实验室平台利用现有的三种检测技术,利用先进的纳米/微加工技术进行创新的设计变更,以生产适合特定应用的定制设备。

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