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New radioelectronic principles of low intensity infrared diagnostics of living tissues with micro- and nanoinhomogeneity includes

机译:低强度红外诊断具有微观和纳米异质性的活组织的新无线电电子原理包括

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In the wavelength range from 1,4 to 14,5 micron spectrum is obtained by the inverse scattering of the IR layer of postoperative blood serum, adipose tissue layer, a layer of tumor tissue of breast cancer, limited plates of sapphire and silicon compensated, leading to an increase in the inverse scattering of the IR. For the first time experimentally investigated the effect of static magnetic and electric fields on the IR transparency of the living tissues. The experiments allow coming to an explanation of some features of the transmission and scattering of low-intensity infrared radiation in biological tissues was first discovered by the authors. The results open the way to the development of new electronic principles of low-intensity infrared diagnostics of living tissues and build on their base of highly non-invasive methods and devices for medical diagnostics.
机译:波长为1,4至1,4.5微米的光谱是通过对术后血清的IR层,脂肪组织层,乳腺癌的肿瘤组织层,有限的蓝宝石和硅补偿的板进行反向散射而获得的,导致IR的反向散射增加。首次通过实验研究了静磁场和电场对生物组织IR透明性的影响。作者首先发现了实验,可以解释低强度红外辐射在生物组织中的透射和散射的某些特征。这些结果为开发低强度的活体组织红外诊断电子新原理开辟了道路,并以它们的高度非侵入性的医学诊断方法和设备为基础。

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