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首页> 外文期刊>International Journal of Cosmetic Science >Hair surface quality: Laser scattering as a tool for characterizing the surface condition and deposits from shampoos and conditioners
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Hair surface quality: Laser scattering as a tool for characterizing the surface condition and deposits from shampoos and conditioners

机译:头发表面质量:激光散射作为用于表征表面状况和沉积物的工具,来自洗发水和护发素

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Objectives The hair surface condition underlies many visually perceived attributes such as shine, colour and the 3D perception of a curly hair style. Many factors can alter the hair surface such as cumulated cleansing/styling regimens or chemical treatments which can lead to degradation of the cuticle edges and surface. Similarly, pollutants, sebum, and shampoo/conditioners can build up on the hair surface which are also perceivable to an observer. Methods The highly directive light of a laser is reflected and scattered by the surface of hair fibres into a circular pattern. The angular and spatial characteristics of this pattern reflect the hair geometry and the quality of the hair surface, i.e. the outer cuticle layer. Dark flat hair tresses were used to measure the impact of artificial sebum and shampoo/conditioner regimens on the cuticle surfaces. Also, longer single hair fibres from 4 volunteers were characterized for their surface changes from roots to tips, i.e. over the chronological age of the hair. Results The laser scattering shows clear changes in specular reflection characteristics from treatments and allows for the extraction of the cuticle inclination angle with respect to the hair axis. Deep cleansing or clarifying shampoos do partially restore the cuticle angle by removing residues on the hair surface whereas more conditioning systems can lead to changes in specular reflection angle and scattering, especially for multiple cycles of shampoo + conditioner treatments. Lastly, changes in hair surface can be traced over time of hair age by this approach and are consistent with frequency and nature of hair treatments. Conclusions The method shows great potential for characterizing cleansing regimens in terms of their impact on the hair surface, either as single or multiple washes. Coverage or damage to the hair cuticles appears readily as an angle shift of the specular reflection whereas the quality of the surface topology has a direct impact on the angular width of the specular reflection thus affecting the shine band on a person's head. Hair ageing from root to tip can be quantified by laser scattering and correlates well with treatment events in time.
机译:目标头发表面状况下潜许多视觉上感知的属性,如闪耀,颜色和3D感知的卷发式。许多因素可以改变毛发表面,例如累积的清洁/造型方案或化学处理,这可能导致角质层边缘和表面的降解。类似地,污染物,皮脂和洗发剂/调节剂可以在毛发表面上积聚,这也可感知到观察者。方法通过头发纤维的表面反射和散射激光的高度指示光和圆形图案。该图案的角度和空间特征反映了头发几何形状和头发表面的质量,即外角质层。使用深扁毛发束来测量人造皮脂和洗发水/调节剂中的撞击角质表面的影响。此外,来自4个志愿者的较长的单毛纤维的特征在于它们的表面从根部变为尖端,即在头发的时间年龄。结果激光散射显示出从处理中的镜面反射特性的清晰变化,并且允许相对于毛发轴提取角质层倾斜角度。通过去除头发表面上的残留物,深层清洁或澄清洗发剂可以通过去除残留物,而更多的调节系统可以导致镜面反射角度和散射的变化,特别是对于洗发水+调理剂处理的多个循环。最后,通过这种方法可以随着毛发时代的时间随时间追踪头发表面的变化,并且与头发处理的频率和性质一致。结论该方法表明,在其对头发表面的影响方面表现出清洁方案的巨大潜力,无论是单身还是多次洗涤。覆盖或毛发角质的损坏随着镜面反射的角度偏移而显而易见,而表面拓扑的质量对镜面反射的角度宽度直接影响,从而影响了一个人的头部上的光泽带。从根到尖端的毛发老化可以通过激光散射量化,并在时间及时良好地与治疗事件相关。

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