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模拟葡萄酒色斑的颜色感知及其与激光凝固血管深度的关系。

Modeling the color perception of port wine stains and its relation to the depth of laser coagulated blood vessels.

作者信息

Lakmaker O, Pickering J W, van Gemert M J

机构信息

Laser Center, Academic Medical Center, Amsterdam, The Netherlands.

出版信息

Lasers Surg Med. 1993;13(2):219-26. doi: 10.1002/lsm.1900130210.

Abstract

To find the maximal depth of an ecstatic vessel in the dermis that contributes to the abnormal color of a port wine stain (PWS), "normal" and "laser treated PWS skin" are modeled, respectively, as a two-layer plane parallel geometry consisting of an epidermis and a dermis, and as a three-layer geometry consisting of an epidermis, a dermis without additional blood (the "treated" part of the stain, assumed identical to the "normal" dermis), and a layer of dermis containing 5% or 10% of blood per volume (the untreated part of the PWS). Spectral remittances were calculated for various wavelengths using the diffusion approximation to the transport equation for light propagation. These remittances were transformed into the CIE 1976 (Lab*)-color system. Color differences between "normal" and PWS skin as a function of the dermal depth of "injured" ecstatic blood vessels were calculated. The maximal depth where ecstatic blood vessels just contribute to the abnormal PWS color is predicted as 0.9 mm for a "normally" pigmented epidermis (60 microns thick) and a 5% or 10% blood per volume content. For a darker pigmented epidermis (60 microns thickness) and again at both 5% and 10% blood per volume content, this depth was found to be 0.8 mm.

摘要

为了确定导致葡萄酒色斑(PWS)颜色异常的真皮层中扩张血管的最大深度,分别将“正常”皮肤和“激光治疗后的PWS皮肤”建模,前者为包含表皮和真皮的两层平面平行几何结构,后者为包含表皮、无额外血液的真皮(色斑的“治疗”部分,假定与“正常”真皮相同)以及每体积含5%或10%血液的真皮层(PWS的未治疗部分)的三层几何结构。使用光传播输运方程的扩散近似计算了不同波长下的光谱反射率。这些反射率被转换到CIE 1976(Lab*)颜色系统中。计算了“正常”皮肤与PWS皮肤之间的颜色差异随“受损”扩张血管真皮深度的变化情况。对于色素沉着“正常”的表皮(60微米厚)以及每体积含5%或10%血液的情况,预测扩张血管刚好导致PWS异常颜色的最大深度为0.9毫米。对于色素沉着更深的表皮(60微米厚)以及每体积仍含5%和10%血液的情况,该深度为0.8毫米。

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