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A novel method for non-destructive determination of hair photo-induced damage based on multispectral imaging technology

机译:基于多光谱成像技术的非破坏性测定毛发造成损伤的一种新方法

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Extended exposure to sunlight may give rise to chemical and physical damages of human hairs. In this work, we report a novel method for non-destructive quantification of hair photodamage via multispectral imaging (MSI) technology. We show that the multispectral reflectance value in near-infrared region has a strong correlation with hair photodamage. More specifically, the hair segments with longer growing time and the same hair root segment after continuous ultraviolet (UV) irradiation displaying more severe photodamage observed via scanning electron microscopy (SEM) micrographs showed significantly higher multispectral reflectance value. Besides, the multispectral reflectance value of hair segments with different growing time was precisely reproduced by exposing the same hair root segment to specific durations of UV irradiation, suggesting that MSI can be adequately applied to determine the sunlight exposure time of the hair. The loss of cystine content of photodamaged hairs was identified to be the main factor that physiologically contributed to the morphological changes of hair surface fibers and hence the variation of their multispectral reflectance spectra. Considering the environmental information recording nature of hairs, we believe that MSI for non-destructive evaluation of hair photodamage would prove valuable for assessing sunlight exposure time of a subject in the biomedical fields.
机译:延长的阳光暴露可能会产生人毛的化学和物理损害。在这项工作中,我们通过多光谱成像(MSI)技术报告了一种用于未破坏性定量的毛发光电模拟的新方法。我们表明近红外区域的多光谱反射率值与头发光电振动有很强的相关性。更具体地,具有较长的时间和连续紫外线(UV)照射后的较长时间和相同的毛发根部段的毛发段显示通过扫描电子显微镜(SEM)显微照片观察更严重的光​​电模型,显示出显着更高的多光谱反射值。此外,通过将相同的头发根部段暴露于UV照射的特定持续时间,精确地再现了具有不同生长时间的毛段的多光谱反射值,这表明可以充分应用MSI以确定头发的阳光暴露时间。鉴定了光电抗毛发的胱氨酸含量的损失是生理学上促成头发表面纤维的形态变化的主要因素,从而使其多光谱反射光谱的变化。考虑到毛发的环境信息,我们认为,无损评估头发光电图的MSI对于评估生物医学领域的阳光暴露时间来证明是有价值的。

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