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Structural and functional bases of laser-microvessels interaction

机译:激光与微血管相互作用的结构和功能基础

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Abstract: Structural and functional microcirculatory changes in tissues and organs (muscles, liver, derma, epinephros, brain cortex) under various dosages and powers of laser irradiation in the red (633 nm) and near infrared (890 nm) spectrum regions have been studied in experiments and clinic. In case of nonsensitized tissues the `photoactivation' range of power densities and doses of laser irradiation has been established. We have identified a short-term reaction of microvessels and a long-term reaction (adaptation). The former consists of intensification of microcirculation and metabolism rise in parenchymatous cells; the latter is connected with neoangiogenesis acceleration. The intensification of the blood microcirculation includes a dilation of microvessels of all orders, an amplification of arteriolar vasomotions and an opening of `reserved' capillaries. Data on the structural reconstruction of myocytes and endotheliocytes have shown that the high differential parenchymatous cells and its membrane structures are sensitive to low energy laser irradiation and, on the other hand, under low energy laser irradiation there is an activation of synthetic processes in the cells. Thus, during the laser-tissue interaction in such complex system as human organism the microcirculation plays the key role among the other systems.!8
机译:摘要:研究了在红色(633 nm)和近红外(890 nm)光谱区域内不同剂量和功率的激光辐照下组织和器官(肌肉,肝脏,皮肤,肾上腺,大脑皮层)的结构和功能微循环变化。在实验和临床中。对于不敏感的组织,已经确定了功率密度和激光辐照剂量的“光激活”范围。我们已经确定了微血管的短期反应和长期反应(适应)。前者包括实质细胞微循环的增强和新陈代谢的增加。后者与新血管生成的加速有关。血液微循环的增强包括所有阶次微血管的扩张,小动脉血管运动的扩大和“保留的”毛细血管的开放。关于肌细胞和内皮细胞的结构重建的数据表明,高分化薄壁组织细胞及其膜结构对低能激光照射敏感,另一方面,在低能激光照射下,细胞中的合成过程被激活。 。因此,在诸如人体这样复杂的系统中,激光与组织的相互作用中,微循环在其他系统中起着关键作用。8

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