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Diabetic Erythrocytes Test by Correlation Coefficient

机译:用相关系数检验糖尿病性红细胞

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Even when a healthy individual is studied, his/her erythrocytes in capillaries continually change their shape in a synchronized erratic fashion. In this work, the problem of characterizing the cell behavior is studied from the perspective of bounded correlated random walk, based on the assumption that diffractometric data involves both deterministic and stochastic components. The photometric readings are obtained by ektacytometry over several millions of shear elongated cells, using a home-made device called Erythrodeformeter. We have only a scalar signal and no governing equations; therefore the complete behavior has to be reconstructed in an artificial phase space. To analyze dynamics we used the technique of time delay coordinates suggested by Takens, May algorithm, and Fourier transform. The results suggest that on random-walk approach the samples from healthy controls exhibit significant differences from those from diabetic patients and these could allow us to claim that we have linked mathematical nonlinear tools with clinical aspects of diabetic erythrocytes’ rheological properties.
机译:即使研究了一个健康的个体,他/她的毛细血管中的红细胞也会以同步不稳定的方式不断改变其形状。在这项工作中,基于衍射相关数据既涉及确定性成分又包含随机性成分的假设,从有界相关随机游动的角度研究了表征细胞行为的问题。使用称为Erythrodeformeter的自制设备,通过细胞计数法在数百万个剪切细长细胞上获得光度读数。我们只有一个标量信号,没有控制方程。因此,必须在人工相空间中重构完整的行为。为了分析动力学,我们使用了Takens,May算法和Fourier变换建议的延时坐标技术。结果表明,在随机行走方法中,健康对照组的样本与糖尿病患者的样本存在显着差异,这些可以使我们断言我们已将数学非线性工具与糖尿病红细胞流变特性的临床联系起来。

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