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Monitoring of indotricarbocyanine dye fluorescence during photochemotherapy

机译:光化疗法期间监测吲氢吲哚菁染料

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As demonstrated by the performed studies, the molecules of tricarbocyanine dye in vivo are localized in the low-permittivity region of the medium, predominantly in the form of contact ion pairs. Comparison of the experimental data and numerical simulation results has revealed that deformation of the dye fluorescence spectrum upon photochemotherapy is due to an increased percentage of methemoglobin (up to 50%) in the total hemoglobin concentration of a tumor tissue. A change in the photosensitizer fluorescence spectrum is observed in the area of a tumor, where laser radiation affects necrosis of the tissues. An analysis of the spectral data enables one to predict a depth and extent of the developed tumor necrosis. With the use of spectral methods, the treatment effectiveness may be optimized by the proper selection of an optimum dose and power density for photoexposure in the process of chemotherapy, with due regard for the character of pathology and individual features of a patient.
机译:如进行的研究所证明的,体内三碳菁染料的分子在培养基的低介质区域中定位,主要以接触离子对的形式。实验数据和数值模拟结果的比较揭示了光化学疗法时染料荧光光谱的变形是由于肿瘤组织的总血红蛋白浓度增加了甲酚(高达50%)的百分比。在肿瘤的区域中观察到光敏剂荧光谱的变化,激光辐射影响组织的坏死。对光谱数据的分析使得可以预测发育肿瘤坏死的深度和程度。 With the use of spectral methods, the treatment effectiveness may be optimized by the proper selection of an optimum dose and power density for photoexposure in the process of chemotherapy, with due regard for the character of pathology and individual features of a patient.

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