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首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >Comparative study of human erythrocytes by digital holographic microscopy, confocal microscopy, and impedance volume analyzer
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Comparative study of human erythrocytes by digital holographic microscopy, confocal microscopy, and impedance volume analyzer

机译:数字全息显微镜,共聚焦显微镜和阻抗体积分析仪对人红细胞的比较研究

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摘要

Red blood cell (RBC) parameters Such as morphology, volume, refractive index, and hemoglobin content are of great importance for diagnostic purposes. Existing approaches require complicated calibration procedures and robust Cell perturbation. As a result, reference values for normal RBC differ depending on the method used. We present a way for measuring parameters of intact individual RBCs by using digital holographic microscopy (DHM), a new interferometric and label-free technique with nanometric axial sensitivity. The results are compared with values achieved by conventional techniques for RBC of the same donor and Previously published figures. A DHM equipped with a laser diode (lambda = 663 nm) was used to record holograms in an off-axis geometry. Measurements of both RBC refractive indices and volumes were achieved via monitoring the quantitative phase map of RBC by means of a sequential perfusion of two isotonic solutions with different refractive indices obtained by the use of Nycodenz (decoupling procedure). Volume of RBCs labeled by membrane dye Dil was analyzed by confocal microscopy. The mean cell volume (MCV), red blood cell distribution width (RDW), and mean cell hemoglobin concentration (MCHC) were also measured with an impedance volume analyzer. DHM yielded RBC refractive index n = 1.418 +/- 0.012, volume 83 +/- 14 fl, MCH = 29.9 pg, and MCHC 362 +/- 40 g/l. Erythrocyte MCV, MCH, and MCHC achieved by an impedance volume analyzer were 82 fl, 28.6 pg, and 349 g/l, respectively. Confocal microscopy yielded 91 17 fl for RBC volume. In conclusion, DHM in combination with a decoupling procedure allows measuring noninvasively volume, refractive index, and hemoglobin content of single-living RBCs with a high accuracy.
机译:红血球(RBC)参数(例如形态,体积,折射率和血红蛋白含量)对于诊断目的非常重要。现有方法需要复杂的校准程序和鲁棒的细胞扰动。结果,根据所使用的方法,正常RBC的参考值会有所不同。我们提出了一种使用数字全息显微镜(DHM)来测量完整单个RBC参数的方法,该技术是一种具有纳米轴向灵敏度的新型干涉技术和无标签技术。将结果与相同供体的RBC的常规技术和以前发布的数据所获得的值进行比较。配备激光二极管(λ= 663 nm)的DHM用于记录离轴几何形状的全息图。 RBC折射率和体积的测量是通过监视两个定量的等渗溶液(通过使用Nycodenz获得的不同等渗溶液)的连续灌注来监测RBC的定量相图而实现的(解耦过程)。通过共聚焦显微镜分析被膜染料Dil标记的RBC的体积。还用阻抗体积分析仪测量平均细胞体积(MCV),红细胞分布宽度(RDW)和平均细胞血红蛋白浓度(MCHC)。 DHM得到的RBC折射率n = 1.418 +/- 0.012,体积83 +/- 14 fl,MCH = 29.9 pg,MCHC 362 +/- 40 g / l。通过阻抗体积分析仪获得的红细胞MCV,MCH和MCHC分别为82 fl,28.6 pg和349 g / l。共聚焦显微镜得到的红细胞体积为91 17 fl。总之,DHM与去耦程序相结合,可以高精度地测量单活RBC的无创体积,折射率和血红蛋白含量。

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