Babadi Mozhdeh, Mohajerani Ezeddin, Ataie-Fashtami Leila, Zand Nasrin, Shirkavand Afshan
Laser and Plasma Research Institute, Shahid Beheshti University, Tehran, Iran.
Department of Regenerative Medicine, Royan institute For Stem Cell Biology and Technology, ACECR, Tehran, Iran.
J Lasers Med Sci. 2019 Spring;10(2):97-103. doi: 10.15171/jlms.2019.16. Epub 2019 Feb 25.
Laser hair removal needs an accurate understanding of tissue structure and chromophores content in order to optimize the selection of laser irradiation parameters. None of the optimized laser therapy might lead to side effects in skin tissue such as severe erythema, burn, scar etc. Therefore, guidance by a noninvasive real-time diagnostic method like optical spectroscopy technique is beneficial. The purpose of this survey is to analysis the skin hemoglobin spectrum quantitatively before and after hair removal laser irradiation to minimize the side effects of the procedure. To carry out a spectroscopy study, a halogen-tungsten light source was used in the wavelength region of 400-700 nm on an ocean optic device. The measurements were made on the facial area under identical conditions. Total 19 volunteers for laser hair removal by gentle laser Candela, ranging 14- 49 years old, were included in the study. A total of 18 spectra were taken from each person, 9 spectra before hair removal as a reference and 9 subsequent spectra. Colorimetry was done for all acquired before and after spectrums using Origin software (version 8.6). Then, the erythema index derived for each spectrum. Statistical analysis of correlation and normalization in colorimetry data were done using data analysis by SPSS (version 16). Spectra analysis, before and after optical reflectance spectrums in laser hair removal procedure, revealed the subpeak derivation, and concentration on special visible wavelength 510- 610 nm. We studied the changes of skin chromophores absorption. The derived erythema index [E] and colorimetry parameters a*, b*, l* were compared and correlated statistically. There was a statistically considerable direct linear correlation between a* and E while inverse linear correlation was observed for l* and E and no correlation for b* and E. Diffuse reflectance spectroscopy showed its potency as an accurate, noninvasive realtime as complementary method for laser treatment to detect erythema as a complication of the method, in order to optimize the parameters based on the tissue characteristics in various candidates.
激光脱毛需要准确了解组织结构和发色团含量,以便优化激光照射参数的选择。任何优化后的激光治疗都不应在皮肤组织中导致诸如严重红斑、烧伤、疤痕等副作用。因此,采用像光学光谱技术这样的非侵入性实时诊断方法进行指导是有益的。本研究的目的是定量分析脱毛激光照射前后皮肤血红蛋白光谱,以尽量减少该过程的副作用。为了进行光谱研究,在海洋光学设备上使用卤钨光源在400 - 700 nm波长区域进行测量。在相同条件下对面部区域进行测量。本研究共纳入19名使用Gentle激光Candela进行激光脱毛的志愿者,年龄在14 - 49岁之间。每人共采集18个光谱,9个脱毛前光谱作为参考,9个脱毛后光谱。使用Origin软件(8.6版)对所有采集的前后光谱进行比色法分析。然后,得出每个光谱的红斑指数。使用SPSS(16版)进行数据分析,对比色法数据进行相关性和归一化的统计分析。激光脱毛过程中光学反射光谱前后的光谱分析揭示了子峰的推导以及在510 - 610 nm特殊可见波长处的浓度。我们研究了皮肤发色团吸收的变化。将得出的红斑指数[E]与比色法参数a*、b*、l进行比较并进行统计相关性分析。a与E之间存在统计学上显著的直接线性相关性,而l与E之间观察到反向线性相关性,b与E之间无相关性。漫反射光谱显示出其作为一种准确、非侵入性实时的补充方法用于激光治疗的潜力,以检测作为该方法并发症的红斑,从而根据不同受检者的组织特征优化参数。