虚拟皮肤:一种有助于验证的行为方法

B. Nicolle, Arnaud Legendre, L. Ferrero, L. Zastrow
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引用次数: 0

摘要

本研究的目的是通过VHDL-AMS功能虚拟样机(FVP)在化妆品行业的应用,开发一种新的研发方法。化妆品公司正在用更正式的方法改进研发方法。这些研究大多基于功能模型,较少进行实验室测试。因此,在与兰开斯特公司的合作下,我们首次建立了与人体皮肤和太阳光谱有关的生物物理和化学现象的独特动态模型。人体健康可能受到太阳辐射的严重影响。与健康相关的相互作用主要发生在皮肤上。因此,人体皮肤的光学特性对反射和吸收特性至关重要。通过结合太阳发射光模型和生物光学人体皮肤模型,我们可以计算太阳辐射对各种物种的影响,包括自由基的产生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Virtual skin: a behavioral approach helps verification
The aim of this study is to develop a new kind of R&D methodology through a VHDL-AMS functional virtual prototype (FVP) applied to cosmetic industries. Cosmetic firms are in the process of improving R&D methodologies with more formal methods. These studies are mostly based on functional models and less laboratory testing. Hence, in cooperation with Lancaster firm, we have built for the first time a unique dynamic model of biophysical and chemical phenomenons linked to human skin and sun spectrum. Human health can be strongly influenced by exposure to solar radiation. Relevant interactions regarding to helth take place mainly in the skin. So, the optics of human skin is of the utmost importance with reflection and absorption properties. By combining a sun emission light model and a bio-optical human skin model, we can copute the effects of the sun radiations on various species including free radicals generation.
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