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White light interferometry on human blood film using white light emitting diode

机译:使用白色发光二极管对人血膜进行白光干涉测量

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A white light emitting diode (LED) does not offer uniform irradiance in the visible region of electromagnetic spectrum. However, the additional irradiance in the blue regions is found to be complementary of the absorption spectrum peaks of human blood. Here, we have utilized such spectral characteristics of a typical white LED light as a source of white light interferometry for the measurement of thickness of blood film, additional irradiance of the LED spectrum is supposed to take care the imaginary component of refractive index of human blood. The thickness of blood duly measured by our developed technique is found to be essentially dictated by mean diameter of red blood cells as depicted by dynamic light scattering (DLS) studies on the corresponding blood samples. This technique can also follow the changes of the red blood cells diameter in isotonic, hypotonic and hypertonic solutions consistent with DLS studies on corresponding blood samples. Even quantitative agreement of the measured thickness of the blood film with the values obtained from DLS studies can be made on taking the surface roughness of the glass substrates (cover slips) as measured from Field Emission Scanning Electron Microscopy (FESEM). We have also proposed a low cost version of our developed technique, where, the relatively expensive spectrograph has been replaced by a band pass filter wheel.
机译:白光发光二极管(LED)在电磁光谱的可见光区域内无法提供均匀的辐照度。然而,发现蓝色区域中的附加辐照度与人血的吸收光谱峰互补。在这里,我们利用典型的白光LED的光谱特性作为白光干涉测量法的来源来测量血膜厚度,LED光谱的额外辐照度应注意人体血液折射率的虚部。发现通过我们开发的技术适当测量的血液厚度主要由红血球的平均直径决定,如对相应血样的动态光散射(DLS)研究所描绘的。该技术还可以跟踪等渗,低渗和高渗溶液中红细胞直径的变化,这与对相应血样的DLS研究一致。甚至可以通过测量由场发射扫描电子显微镜(FESEM)测得的玻璃基板(盖玻片)的表面粗糙度,来使测得的血膜厚度与从DLS研究获得的值达到定量的一致性。我们还提出了一种已开发技术的低成本版本,其中,相对昂贵的光谱仪已被带通滤光轮代替。

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