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Biomedicai optical analytical techniques to analyse the medicinal drugs and optical properties of tissues

机译:生物医学光学分析技术,用于分析药物和组织的光学特性

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In this research paper, the biomedicai optical analytical techniques such as ultra-violet spectroscopy, Fourier transform infrared spectroscopy and Fourier transform-Raman spectroscopy are used to characterise and quantise the medicinal drugs. The hydroxyl group and methyl group was assigned to the wave numbers 3230.67 cm~(-1) and 2928.50 cm~(-1). The functional groups are also identified -N=C=O, -N=C=S, -N=C=N- -N_3 at 4.67 urn. The CH, CH_2, and CH_3 three bands with strong intensity are assigned to the wave numbers 2985 cm~(-1) to 2850 cm~(-1). The FT-Raman spectra is obtained for the blue sample, the functional group C=C is assigned to the wave number 2129.84 to 2191.41 cm~(-1). The wave numbers 2558.71-2620.73 cm~(-1) are obtained for the functional bond -S-H. The wave number 1610.95 cm~(-1) is obtained for the C=N functional group. In this paper one sample namely Fibril-SF is taken by a patient and his Saliva sample is collected for Fourier Transform Infrared spectroscopy test to analyse the reaction of drugs with human body tissues.
机译:在这篇研究论文中,诸如紫外光谱,傅里叶变换红外光谱和傅里叶变换拉曼光谱之类的生物医学光学分析技术被用来表征和量化药物。羟基和甲基分配给波数为3230.67 cm〜(-1)和2928.50 cm〜(-1)。还以4.67um确定官能团-N = C = O,-N = C = S,-N = C = N--N_3。将强度高的CH,CH_2和CH_3三个波段分配给波数2985 cm〜(-1)至2850 cm〜(-1)。获得了蓝色样品的FT-拉曼光谱,将官能团C = C分配给了波数2129.84至2191.41 cm〜(-1)。对于功能键-S-H,获得波数2558.71-2620.73 cm〜(-1)。对于C = N官能团,得到波数1610.95cm-1(-1)。在本文中,患者取了一个样品,即Fibril-SF,并收集了他的唾液样品用于傅立叶变换红外光谱测试,以分析药物与人体组织的反应。

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