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Time-domain terahertz spectroscopy of artificial skin

机译:人造皮肤的时域太赫兹光谱

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Time-domain Terahertz (THz) spectroscopy and imaging is currently evaluated as a novel tool for medical imaging and diagnostics. The application of THz-pulse imaging of human skin tissues and related cancers has been demonstrated recently in-vitro and in-vivo. With this in mind, we present a time-domain THz-transmission study of artificial skin. The skin samples consist of a monolayer of porous matrix of fibers of cross-linked bovine tendon collagen and a glycosaminoglycan (chondroitin-6-sulfate) that is manufactured with a controlled porosity and defined degradation rate. Another set of samples consists of the collagen monolayer covered with a silicone layer. We have measured the THz-transmission and determined the index of refraction and absorption of our samples between 0.1 and 3 THz for various states of hydration in distilled water and saline solutions. The transmission of the THz-radiation through the artificial skin samples is modeled by electromagnetic wave theory. Moreover, the THz-optical properties of the artificial skin layers are compared to the THz-optical properties of freshly excised human skin samples. Based on this comparison the potential use of artificial skin samples as photo-medical phantoms for human skin is discussed.
机译:时域太赫兹(THz)光谱和成像技术目前已被评估为医学成像和诊​​断的新型工具。最近已在体外和体内证明了太赫兹脉冲成像技术在人体皮肤组织和相关癌症中的应用。考虑到这一点,我们提出了人造皮肤的时域太赫兹传输研究。皮肤样品由交联的牛腱胶原蛋白和糖胺聚糖(6-硫酸软骨素)的纤维的多孔基质的单层组成,其具有可控制的孔隙率和确定的降解速率。另一组样品由覆盖有硅氧烷层的胶原蛋白单层组成。我们已经测量了THz透射率,并确定了在蒸馏水和盐溶液中各种水合状态下,样品在0.1至3 THz之间的折射率和吸收率。太赫兹辐射通过人造皮肤样品的传输是通过电磁波理论建模的。此外,将人造皮肤层的太赫兹光学性质与新鲜切除的人类皮肤样品的太赫兹光学性质进行了比较。基于该比较,讨论了将人造皮肤样品用作人类皮肤的光医学模型的潜在用途。

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