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Red Blood Cells three-dimensional morphometry by quantitative phase microscopy

机译:通过定量相显微镜的红细胞三维形态学

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In humans, healthy mature erythrocytes or Red Blood Cells (RBCs) have globule structure and mostly important they lack a cell nucleus and most organelles, thus RBC is an envelope filled of uniform and transparent liquid. Abnormal RBCs may be fragmented or shaped like teardrops, crescents, needles, or a variety of other forms deviating from their regular ordinary shape. Here we show that seeing an erythrocyte-ensemble as nanolens-array, detection of abnormal cells can be made rapidly and efficiently without recurring to subjective shape analysis of image by the doctor or by sophisticated image processing tools, but rather by exploiting their abnormal shape alterations affecting the lens-focusing properties. Demonstration of how aberrations affect the focusing properties of the RBC is given by Hartmann-Shack approach and Zernike polynomial-fitting, as occurs for wavefront aberration correction in adaptive modern astronomic telescopes. The results show how the concept of biological lens could be addressed for revolutionary integration between photonics and biology and that a fast blood pre-screening can be performed by the proposed approach.
机译:在人类中,健康成熟的红细胞或红细胞(RBCs)具有球状结构,并且大多数重要的是它们缺乏细胞核和大多数细胞器,因此RBC是填充均匀和透明液体的封套。异常RBC可以是泪滴或形状的泪滴,新月形,针或偏离其常规普通形状的各种其他形式。在这里,我们认为看到红细胞系列作为纳米阵阵列,可以快速有效地检测异常细胞,而不会经常发出医生或通过复杂的图像处理工具的主观形状分析,而是通过利用它们的异常形状改变来进行影响镜头聚焦性质。通过Hartmann-Shack方法和Zernike多项式拟合给出了如何影响RBC的聚焦性能的像差,如适应性现代天文学望远镜的波前像差校正发生。结果表明,如何解决生物透镜的概念,以解决光子学和生物学之间的革命集成,并且可以通过所提出的方法进行快速血液预筛选。

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