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The importance of coherence in phototherapy

机译:相干在光疗法中的重要性

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The importance of coherence in phototherapy has been questioned over the last two decades, with the arguments largely being based on; 1) Lasers are just convenient machines that produce radiation, 2) It is the radiation that produces the photobiological and/or photophysical effects and therapeutic gains, not the machines, and 3) Radiation must be absorbed to produce a chemical or physical change, which results in a biological response. Whilst these conclusions are, in essence, true, they neglect to account for the effects of laser speckle in vivo. In a proportion of individual laser speckles the intensity is higher than the surrounding environment, and the light is partially linearly polarized. This is important because the probability for a photon absorption event to occur largely depends on intensity and the photon absorption cross section of the molecule (which in turn is influenced by polarization and several other factors). In superficial tissue, where the photon flux is high (less absorption has taken place), it is easy to reach necessary power density thresholds without the benefits of laser speckle. However, in deep tissue where the photon flux is extremely low, the increased probability of photon absorption from individual laser speckles increases the probability of reaching the necessary power density thresholds. Because of the non-coherent nature of radiation from light/IR emitting diodes speckle does not occur in the tissue with LED therapy, which may explain why head-to-head comparisons between lasers and LEDs in deep tissue seem to be in favor of lasers, and super-pulsed lasers in particular.
机译:在过去的二十年中,光疗中相干性的重要性受到质疑,争论很大程度上是基于的; 1)激光器只是产生辐射的方便机器,2)它是产生光生物学和/或光学效应和治疗性收益,而不是机器和3)辐射的辐射必须被吸收以产生化学或物理变化导致生物反应。虽然这些结论是真实的,但是,他们忽视了激光斑点在体内的影响。在一部分单独的激光斑点中,强度高于周围环境,并且光部分是线性偏振的。这是重要的,因为光子吸收事件的概率很大程度上取决于分子的强度和光子吸收横截面(这反过来受到极化的影响和几个其他因素)。在浅表组织中,在光子通量高(吸收较少)的情况下,易于达到必要的功率密度阈值,而不会达到激光散斑的益处。然而,在光子通量极低的深层组织中,来自各个激光斑点的光子吸收的增加概率增加了达到必要的功率密度阈值的可能性。由于来自光/红外发射二极管的辐射的非相干性质,在具有LED疗法的组织中不会发生斑点,这可以解释为什么深色组织中的激光和LED之间的头部比较似乎有利于激光器以及特别是超级脉冲激光器。

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