State Key Laboratory of Precision Measurement Technology and Instrument, Tsinghua University, Beijing, China.
Department of Precision Instrument, Tsinghua University, Beijing, China.
Cytometry A. 2021 Feb;99(2):194-204. doi: 10.1002/cyto.a.24240. Epub 2020 Nov 4.
Illumination spot in a flow cytometer is a crucial factor determining the measurement accuracy and stability. The traditional mechanism is to precisely calibrate multiple optical components to convert circular Gaussian beams into elliptical Gaussian beams, making it difficult to shape multiwavelength lasers simultaneously. A diffractive beam shaper for multicolor lasers with high simplicity, only containing one diffractive optical element and one focusing lens is created in this work. It can produce rectangular spots, of which the number, the sizes, and the positions are accurately determined by the incident wavelengths. Demonstrated in the customized microflow cytometer, the coefficient of variations (CV) of the optical signals by the beam shaper are 3.6-6.5%, comparable to those derived from the commercial instrument with 3.3-6.3% CVs. Benefiting from the narrow rectangular spots and the flexibility of diffractively shaped lasers, the measurement of bead sizes with 4-15 μm diameters and the real-time detection of flow velocity from 0.79 to 9.50 m/s with the CV of <5% are achieved. © 2020 International Society for Advancement of Cytometry.
流式细胞仪中的照明光斑是决定测量精度和稳定性的关键因素。传统的机制是精确校准多个光学组件,将圆形高斯光束转换为椭圆高斯光束,因此很难同时对多波长激光进行整形。本工作中创建了一种用于多色激光的具有高简单性的衍射光束整形器,仅包含一个衍射光学元件和一个聚焦透镜。它可以产生矩形光斑,其数量、大小和位置由入射波长精确确定。在定制的微流控流式细胞仪中进行了演示,光束整形器产生的光学信号的变化系数(CV)为 3.6-6.5%,与具有 3.3-6.3%CV 的商用仪器相当。受益于狭窄的矩形光斑和衍射整形激光的灵活性,可以实现 4-15 μm 直径的珠子大小的测量,以及从 0.79 到 9.50 m/s 的流速的实时检测,其 CV 小于 5%。©2020 国际细胞分析协会。