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Use of fractional laser microablation of skin for improvement of its immersion clearing

机译:使用分数激光微剥蚀皮肤改善沉浸感

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We are proposing a new method for enhancement of optical clearing agent delivery into the skin using fractional laser microablation of the skin surface. The Palomar Lux2940 erbium laser with the wavelength 2940 nm and pulse duration of 5 ms was used as a light source. Two regimes of laser action were used in the experiments: the first one realized microablation of skin upper layer and the second one created microchannels in skin. As optical clearing agents mineral oil and PEG-300 were used. In vivo studies were carried out with white outbred rats. Both parameters: the permeability coefficient of the agents in the tissue and the optical probing depth were measured using the OCT system at a wavelength of 930 nm. The following values of the permeability coefficient of the skin with microablation were obtained: (3.41±0.46)×10~(-5) cm/s and (2.35±6.30)×10~(-5) cm/s for mineral oil and PEG-300, respectively, at the use of the surface microablation and (3.32±0.09)×10~(-5) cm/s and (3.61±0.34)×10~(-5) cm/s for mineral oil and PEG-300, respectively, at the use of the microporation. The results have shown that the joint application of mineral oil with microablation in the first regime promotes maximal (nearly 2-folds) increasing of optical probing depth in 30 min. Obtained data can be used for development of optical diagnostic methods of skin diseases.
机译:我们正在提出一种新的方法,以使用皮肤表面的部分激光微烧蚀来增强光学清洁剂向皮肤的输送。使用波长为2940 nm,脉冲持续时间为5 ms的Palomar Lux2940 laser激光器作为光源。实验中使用了两种激光作用方式:第一种实现了皮肤上层的微消融,第二种实现了皮肤中的微通道。作为光学清除剂,使用矿物油和PEG-300。对白色近交大鼠进行了体内研究。使用OCT系统在930 nm波长下测量两个参数:药物在组织中的渗透系数和光学探测深度。获得以下微消融皮肤渗透系数的值:矿物油和皮肤油分别为(3.41±0.46)×10〜(-5)cm / s和(2.35±6.30)×10〜(-5)cm / s。对于矿物油和PEG,分别使用表面微烧蚀和(3.32±0.09)×10〜(-5)cm / s和(3.61±0.34)×10〜(-5)cm / s的PEG-300在使用微孔时分别使用-300。结果表明,在第一方案中,矿物油与微烧蚀的联合应用可在30分钟内促进最大(近2倍)的光学探测深度增加。获得的数据可用于开发皮肤疾病的光学诊断方法。

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