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Backscattering measuring system for optimization of intravenous laser irradiation dose

机译:静脉激光辐照剂量优化的反向散射测量系统

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Intravenous laser blood irradiation as an effective method of biostimulation and physiotherapy becomes a more popular procedure. Optimal irradiation conditions for each patient are needed to be established individually. A fiber optics feedback system combined with conventional intravenous laser irradiation system was developed to control of irradiation process. The system consists of He-Ne laser, fiber optics probe and signal analyzer. Intravenous blood irradiation was performed in 7 healthy volunteers and 19 patients with different diseases. Measurements in vivo were related to in vitro blood irradiation which was performed in the same conditions with force-circulated venous blood. Comparison of temporal variations of backscattered light during all irradiation procedures has shown a strong discrepancy on optical properties of blood in patients with various health disorders since second procedure. The best cure effect was achieved when intensity of backscattered light was constant during at least five minutes. As a result, the optical irradiation does was considered to be equal 20 minutes' exposure of 3 mW He-Ne laser light at the end of fourth procedure.
机译:静脉激光血液辐照作为生物刺激和物理治疗的有效方法成为一种更受欢迎的程序。需要单独建立每位患者的最佳照射条件。结合常规静脉激光辐射系统的光纤反馈系统以控制辐照过程。该系统由HE-NE激光,光纤探头和信号分析仪组成。在7名健康志愿者和19例不同疾病的患者中进行静脉内血液辐射。体内测量与体外血液照射有关,其在具有力循环静脉血的同一条件下进行。在所有照射程序期间,反向散射光的时间变化的比较显示了自第二过程以来各种健康障碍患者的血液的光学性质的强烈差异。当在至少五分钟后,当背散射光的强度恒定时,实现了最佳固化效果。结果,在第四步骤结束时,光学照射被认为是相等的3mW He-Ne激光的20分钟暴露。

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