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BRDF of human skin in the visible spectrum

机译:可见光谱中人类皮肤的BRDF

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摘要

Purpose: Significant research has been carried out in terms of development of new BRDF instruments, however there is still little research available regarding spectral BRDF measurements of human skin. This study aims to investigate the variation in human skin reflectance using a new fibre optic based spectral-BRDF measurement device.udDesign/methodology/approach: Design of our system mainly involves use of multiple fibre optics to illuminate and detect light reflected from a sample, while a hemispherical dome was 3D printed to mount the fibres at various slant/tilt angles. In order to investigate the spectral differences in BRDF of human skin, 3 narrowband filters in the visible spectrum were used while measurements were taken from the back of the hand for Caucasian and Asian skin types.udFindings: The experiments demonstrate that the BRDF of human skin varies with wavelengths in the visible spectrum and it is also different for Caucasian and Asian skin types. Both skin types exhibit off-specular reflection with increase in angle of incidence and show less variation with respect to viewing angles when the angle of incidence is normal to the surface.udResearch limitations/implications: A database of spectral BRDF measurements of human skin will not only help in creating realistic skin renderings but also in development of novel skin reflectance models for biomedical and machine vision applications. The measurements would also provide means to validate the predictions from existing light transport/ spectral simulation models for human skin and will ultimately help in the accurate diagnosis and simulation of various skin disorders.udPractical implications:udOriginality/value: Our proposed system provides fast scatter measurements by utilising multiple fibres to detect light simultaneously at different angles while also allowing easy switching between incident light directions. Due to its flexible design and contact based measurements, the device is independent of errors due to sample movements and does not require any image registration. Also, measurements taken from the device show that the BRDF of skin varies significantly in the visible spectrum and it is different for Caucasian and Asian skin types.
机译:目的:在开发新型BRDF仪器方面已经进行了重要的研究,但是关于人体皮肤光谱BRDF测量的研究还很少。这项研究旨在研究使用基于光纤的新型光谱BRDF测量设备对人皮肤反射率的变化。 udDesign /方法/方法:我们系统的设计主要涉及使用多个光纤来照明和检测从样本反射的光。 ,而3D球形半球形圆顶则以各种倾斜/倾斜角度安装纤维。为了研究人类皮肤BRDF的光谱差异,在手部背部对白种人和亚洲人皮肤类型进行测量时,使用了可见光谱中的3个窄带滤光片。 udFindings:实验证明,人类BRDF皮肤会随可见光谱中的波长而变化,白种人和亚洲人的皮肤类型也会有所不同。当入射角垂直于表面时,两种类型的皮肤都显示出镜外反射随入射角的增加而变化,并且相对于视角显示的变化较小。 ud研究局限/含义:人类皮肤光谱BRDF测量的数据库将不仅有助于创建逼真的皮肤效果,而且还有助于开发适用于生物医学和机器视觉应用的新型皮肤反射率模型。这些测量结果还将为验证现有的人体皮肤光传输/光谱模拟模型中的预测提供手段,最终将有助于准确诊断和模拟各种皮肤疾病。 ud实际意义: ud原始性/价值:我们提出的系统可提供快速的通过利用多根光纤同时检测不同角度的光来实现散射测量,同时还允许在入射光方向之间轻松切换。由于其灵活的设计和基于接触的测量,该设备不受样品移动引起的误差的影响,并且不需要任何图像配准。同样,从设备上获得的测量结果表明,皮肤的BRDF在可见光谱中有很大变化,对于白种人和亚洲人皮肤类型,它也有所不同。

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