School of Information and Communications, Gwangju Institute of Science and Technology (GIST), 261 Cheomdan-gwagiro, Buk-gu, Gwangju, 500-712, Republic of Korea.
J Biomed Opt. 2012 Mar;17(3):036010. doi: 10.1117/1.JBO.17.3.036010.
We have investigated depth-resolved cellular structures of unmodified fresh human scalp hairs with ultrahigh-resolution full-field optical coherence tomography (FF-OCT). The Linnik-type white light interference microscope has been home-implemented to observe the micro-internal layers of human hairs in their natural environment. In hair shafts, FF-OCT has qualitatively revealed the cellular hair compartments of cuticle and cortex layers involved in keratin filaments and melanin granules. No significant difference between black and white hair shafts was observed except for absence of only the melanin granules in the white hair, reflecting that the density of the melanin granules directly affects the hair color. Anatomical description of plucked hair bulbs was also obtained with the FF-OCT in three-dimensions. We expect this approach will be useful for evaluating cellular alteration of natural hairs on cosmetic assessment or diagnosis of hair diseases.
我们使用超高分辨率全场光学相干断层扫描(FF-OCT)研究了未经修饰的新鲜人头皮毛的深度分辨细胞结构。已经实现了 Linnik 型白光干涉显微镜,以在自然环境中观察人发的微观内部层。在头发轴中,FF-OCT 定性地揭示了涉及角蛋白丝和黑色素颗粒的表皮和皮质层的细胞毛隔室。除了白色头发中仅缺少黑色素颗粒外,黑毛和白毛之间没有观察到明显差异,这表明黑色素颗粒的密度直接影响头发颜色。还通过 FF-OCT 三维获得了拔出的毛囊的解剖描述。我们期望这种方法将有助于评估化妆品评估或头发疾病诊断中天然毛发的细胞变化。