首页> 外文会议>Photonic Therapeutics and Diagnostics II; Progress in Biomedical Optics and Imaging; vol.7, no.1 >Noninvasive quantitative documentation of cutaneous inflammation in vivo using spectral imaging
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Noninvasive quantitative documentation of cutaneous inflammation in vivo using spectral imaging

机译:使用光谱成像的体内皮肤炎症的无创定量记录

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Skin inflammation is often accompanied by edema and erythema. While erythema is the result of capillary dilation and subsequent local increase of oxygenated hemoglobin (oxy-Hb) concentration, edema is characterized by an increase in extracellular fluid in the dermis leading to local tissue swelling. Edema and erythema are typically graded visually. In this work we tested the potential of spectral imaging as a non-invasive method for quantitative documentation of both the erythema and the edema reactions. As examples of dermatological conditions that exhibit skin inflammation we imaged patients suffering from acne, herpes zoster, and poison ivy rashes using a hyperspectral-imaging camera. Spectral images were acquired in the visible and near infrared part of the spectrum, where oxy-Hb and water demonstrate absorption bands. The values of apparent concentrations of oxy-Hb and water were calculated based on an algorithm that takes into account spectral contributions of deoxy-hemoglobin, melanin, and scattering. In each case examined concentration maps of oxy-Hb and water can be constructed that represent quantitative visualizations of the intensity and extent of erythema and edema correspondingly. In summary, we demonstrate that spectral imaging can be used in dermatology to quantitatively document parameters relating to skin inflammation. Applications may include monitoring of disease progression as well as efficacy of treatments.
机译:皮肤发炎常伴有水肿和红斑。尽管红斑是毛细血管扩张和随后的氧合血红蛋白(oxy-Hb)浓度局部升高的结果,但水肿的特征是真皮中细胞外液增多导致局部组织肿胀。水肿和红斑通常在视觉上分级。在这项工作中,我们测试了光谱成像作为非侵入性方法定量记录红斑和浮肿反应的潜力。作为表现出皮肤炎症的皮肤病学实例,我们使用高光谱成像相机对患有痤疮,带状疱疹和常春藤皮疹的患者进行了成像。光谱图像是在光谱的可见光和近红外部分获得的,其中氧合血红蛋白和水显示出吸收带。氧合血红蛋白和水的表观浓度值是根据一种算法计算得出的,该算法考虑了脱氧血红蛋白,黑色素和散射的光谱贡献。在每种情况下,都可以构建检测到的氧合血红蛋白和水的浓度图,这些图分别代表了红斑和水肿的强度和程度的定量可视化。总而言之,我们证明光谱成像可用于皮肤病学以定量记录与皮肤炎症有关的参数。应用程序可能包括监测疾病进展以及治疗效果。

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