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Effects of laser-magnetic blood irradiation in vivo

机译:激光磁性血液辐照体内的影响

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Laser-magnetic field action on blood in vivo was studied within a range 440-650 nm. The primary mechanisms of laser-magnetic blood irradiation in vivo were studied at (1) laser and non-laser irradiation with light of various wavelengths, (2) autohemo-magnetic-therapy, (3) multicolored over-vein irradiation of the blood, (4) the laser-magnetic field actions. Hemoglobin is considered as primary photoacceptor of radiation. The dependence of effectiveness of laser action on light wavelength was compared with known action spectra for blood photostimulation. Magnetic field enhancement of the laser- induced reactions was discussed as result of magnetic field influence on ferromagnetic hem inclusions and on a structure of hemoglobin peptide chains. Hemoglobin oxygenation or deoxygenation processes were analyzed as a first stage of the therapeutic effects depending on a preceding hemoglobin oxygenation degree at pathological state. The laser-magnetic irradiation causes tendency to the normalization of these process. It is proposed that the secondary reactions are initiated by reversible structural changes of erythrocytes membrane caused the strong hemoglobin absorption.
机译:体内血液上的激光磁场作用在440-650nm的范围内。体内激光磁性血液照射的主要机制进行了研究,在(1)的激光和非激光照射具有各种波长的光,(2)autohemo磁疗法,(3)五彩血液的过度静脉照射, (4)激光磁场动作。血红蛋白被认为是辐射的初级摄影器。将激光作用有效性对光波长的依赖性与已知的动作光谱进行比较,用于血液光致刺激。作为铁磁下摆夹杂物对磁场影响的磁场和血红蛋白肽链的结构的结果,讨论了激光诱导反应的磁场增强。根据病理状态的前述血红蛋白氧合度分析血红蛋白氧合或脱氧过程作为治疗作用的第一阶段。激光磁力照射导致这些过程的归一化的趋势。提出,通过红细胞膜的可逆结构变化引发二次反应引起强烈的血红蛋白吸收。

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