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Human Skin and Tissue Phantoms in Optical Software: Engineering Design and Future Medical Applications

机译:光学软件中的人体皮肤和组织幻影:工程设计和未来医学应用

摘要

Recent breakthroughs in Breault Research Organization's ASAP® optical software have resulted in a highly accurate method for skin and tissue modeling via the Henyey-Greenstein approximation for the angular distribution of scattered light and the radiative-transport equation. Four parameters are key to the model: the anisotropy factor (g), the scattering coefficient (μs), the absorption coefficient (μa), and the fractional obscuration per unit area (f) -- the former three of which are wavelength (λ) dependent. The wavelength dependence of light-absorbing and scattering molecules, including eumelanin, pheomelanin, deoxy- and oxy-hemoglobin, bilirubin, beta carotene, and water is known over the wavelength range from 250 nanometers to 1 micron. The ASAP Realistic Skin Model™ and Tissue Generator have enabled virtual modeling for a wide range of tissue-optics problems. Researchers may now simulate light interactions in the stratum corneum, epidermis, dermis, and hypodermis of human skin -- with provisions for hair, blood vessel, dermal papillae, and fluorescence characterization -- as well as single and multilayer tissue models based on bulk-scattering approximations. Commercial applications for these models include medical-device design and treatment-efficacy studies involving light delivery and detection. Future applications may include real-time monitoring of bio-optical phenomena, and patient-specific pre-treatment studies for cancer and other diseases for which light-based therapies are emerging.
机译:Breault Research Organization的ASAP®光学软件的最新突破已经导致了通过对散射光的角度分布和辐射传输方程进行Henyey-Greenstein近似进行皮肤和组织建模的高精度方法。该模型的关键是四个参数:各向异性系数(g),散射系数(μs),吸收系数(μa)和每单位面积的分数模糊度(f)-前三个是波长(λ) )依赖。已知在250纳米至1微米的波长范围内,包括Eumelanin,pheomelanin,脱氧和氧合血红蛋白,胆红素,β-胡萝卜素和水的光吸收和散射分子的波长依赖性。 ASAP逼真的皮肤模型和组织生成器已实现了针对各种组织光学问题的虚拟建模。研究人员现在可以模拟人皮肤的角质层,表皮,真皮和皮下组织中的光相互作用-包括头发,血管,真皮乳头和荧光特征的规定-以及基于体细胞的单层和多层组织模型散射近似值。这些模型的商业应用包括医疗设备设计以及涉及光传输和检测的治疗功效研究。未来的应用可能包括对生物光学现象的实时监控,以及针对癌症和其他正在出现基于光的疗法的其他疾病的针对患者的预处理研究。

著录项

  • 作者

    Stevenson Michael Allen;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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