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Characterization of fractional photothermolysis and visualization of microthermal zone with optical coherence tomography

机译:光学相干断层扫描表征部分光热解并显示微热区

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In this study, an optical coherence tomography (OCT) system is implemented for the noninvasive characterization of photothermolysis in human skin induced by ablative fractional lasers (AFLs) and non-ablative fractional lasers (NAFLs). With OCT imaging, microthermal zones (MZTs) induced by fractional lasers can be noninvasively visualized, and the size of induced MZTs can be quantitatively evaluated. According to the OCT results, the center region of the induced MZT corresponds to weaker backscattered intensity after the AFL exposure as a result of tissue volatilization by photon energy. In contrast, after the NAFL exposure, the skin tissue is damaged and coagulated but not volatilized, which causes the backscattered intensity of the induced MZT enhanced in the OCT image. To further identify the photothermolysis induced by AFLs or NAFLs, the backscattered intensities of MZTs are compared with those of the untreated tissue from the OCT results. The statistical result shows a clear difference in scattering properties of photothermolysis induced by AFLs and NAFLs. Finally, the induced photodamage at various depths can also be quantitatively evaluated, enabling an investigation of the relationship between the photodamage and the depth.
机译:在这项研究中,实施了光学相干断层扫描(OCT)系统,用于通过烧蚀性分数激光(AFL)和非烧蚀性分数激光(NAFL)诱导人皮肤中光热解的无创性表征。使用OCT成像,可以无创地观察由分数激光诱导的微热区(MZT),并且可以定量评估诱导的MZT的大小。根据OCT结果,由于光子能量使组织挥发,诱导的MZT的中心区域对应于AFL暴露后较弱的反向散射强度。相反,暴露于NAFL后,皮肤组织受损并凝结,但没有挥发,这导致OCT图像中诱导的MZT的反向散射强度增强。为了进一步确定由AFL或NAFL诱导的光热解,根据OCT结果将MZT的反向散射强度与未处理组织的反向散射强度进行了比较。统计结果表明,AFL和NAFL引起的光热分解的散射特性存在明显差异。最后,还可以定量评估在各个深度处引起的光损伤,从而能够研究光损伤与深度之间的关系。

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