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How the biological activity of low-intensity laser radiation depends on its modulation frequency

机译:低强度激光辐射的生物活性如何取决于其调制频率

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This paper presents experimental data that show that the biological action of low-intensity laser radiation (LILR) with a wavelength of 808 nm (power density P=2.9 mW/cm(2)) shows a pronounced dependence on the irradiation regime (continuous or modulated) and the modulation frequency in the range F=1-50 Hz. It is shown that sturgeon embryos are convenient objects for estimating the biological activity of the radiation, while the presence of a photobiological effect can be confirmed by testing the size and weight of standard fry and their stability against the action of extreme temperatures (thermal resistance). The dose dependence of the stimulating effect for each irradiation regime is characterized by a curve with a pronounced extremum, whose magnitude and energy position are determined by the frequency modulation. The maximum stimulating action, which manifests itself in a twofold increase of the body mass of the individuals and of their thermal resistance by comparison with the control group, is observed at F =50 Hz (dose E=0.17 J/cm(2)). The prospects are discussed of using intensity-modulated radiation in medical technologies based on the action of LILR. (c) 2008 Optical Society of America.
机译:本文给出的实验数据表明,波长为808 nm(功率密度P=2.9 mW/cm(2))的低强度激光辐射(LILR)的生物作用对辐照方式(连续或调制)和调制频率在F=1-50 Hz范围内表现出明显的依赖性。结果表明,鲟鱼胚胎是估计辐射生物活性的方便对象,而光生物学效应的存在可以通过测试标准鱼苗的大小和重量及其对极端温度作用的稳定性(热阻)来确认。每种照射方案的刺激效果的剂量依赖性由具有明显极值的曲线表征,其大小和能量位置由频率调制决定。在F = 50Hz(剂量E = 0.17J / cm(2))下观察到最大的刺激作用,其表现为与对照组相比,个体的体重及其热阻增加了两倍。讨论了基于LILR作用的在医疗技术中使用调强辐射的前景。(c) 2008年美国光学学会。

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