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Influence of cell shape and orientation on the optical properties of human erythrocytes

机译:细胞形状和方向对人类红细胞光学特性的影响

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The cell shape and orientation of red blood cells (RBCs) can be influenced by shear rate and osmolarity. Changes in cell shape and cell orientation can be linked to changes in the optical behavior of the cells. The optical parameters, absorption coefficient μ_a, scattering coefficient μ_s, and effective scattering phase function of blood in the spectral range from 250 nm to 1100 nm were investigated dependent on shear rate and osmolarity. Integrating sphere measurements of light transmittance and reflectance in combination with inverse Monte-Carlo simulations were carried out for different wall shear rates between 0 and 1000 s~(-1) and osmolarity variations from 225 to 400 mosmol/1. Changes in shear rate and osmolarity could be shown to have significant influences on the optical parameters which can in part be explained by changes in the complex refractive index, cell shape and organization. Spherical forms of RBCs induced by low osmolarity show reduced scattering effects compared to normal RBC biconcave disks shape. Spinocytes, induced by high osmolarity, show the highest scattering effects. Randomly oriented cells exhibited maximum μ_a and μ_a values whereas cell alignment and elongation at high shear rates led to an asymptotical decrease. Moreover a relationship exists between the observed effects and the hemoglobin absorption. It could be shown that 10% changes in osmolarity have a drastic influence on the optical parameters which is of the same order as they appear for 10% Hct and oxygen saturation changes. Flow induced variations of about 10% have less effect on the optical parameters.
机译:红细胞(RBC)的细胞形状和方向会受到剪切速率和渗透压的影响。细胞形状和细胞取向的变化可以与细胞光学行为的变化联系起来。根据剪切速率和摩尔渗透压浓度,研究了在250 nm至1100 nm光谱范围内血液的光学参数,吸收系数μ_a,散射系数μ_s和有效散射相位函数。针对0至1000 s〜(-1)之间的不同壁剪切速率和225至400 mosmol / 1的摩尔渗透压浓度变化,结合反向透射蒙特卡洛模拟,进行了积分球的透光率和反射率测量。剪切速率和摩尔渗透压浓度的变化可能显示出对光学参数的显着影响,这在一定程度上可以通过复折射率,晶胞形状和组织的变化来解释。与正常的RBC双凹盘形状相比,低渗透压诱导的RBC球形显示出降低的散射效应。高渗透压诱导的脊髓细胞具有最高的散射作用。随机定向的细胞表现出最大的μ_a和μ_a值,而在高剪切速率下的细胞排列和伸长导致无症状的减少。此外,在观察到的效果和血红蛋白吸收之间存在关系。可以看出,渗透压的10%变化会对光学参数产生巨大影响,这与10%Hct和氧饱和度变化所出现的影响相同。大约10%的流量引起的变化对光学参数的影响较小。

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