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智能手机在三波长激光照射下对皮肤色素的快照成像。

Smartphone snapshot mapping of skin chromophores under triple-wavelength laser illumination.

机构信息

University of Latvia, Biophotonics Laboratory, Institute of Atomic Physics and Spectroscopy, Riga, Latvia.

University of Oulu, Optoelectronics and Measurement Techniques Unit, Faculty of Information Technology and Electrical Engineering, Oulu, Finland.

出版信息

J Biomed Opt. 2017 Sep 1;22(9):91508. doi: 10.1117/1.JBO.22.9.091508.

Abstract

Chromophore distribution maps are useful tools for skin malformation severity assessment and for monitoring of skin recovery after burns, surgeries, and other interactions. The chromophore maps can be obtained by processing several spectral images of skin, e.g., captured by hyperspectral or multispectral cameras during seconds or even minutes. To avoid motion artifacts and simplify the procedure, a single-snapshot technique for mapping melanin, oxyhemoglobin, and deoxyhemoglobin of in-vivo skin by a smartphone under simultaneous three-wavelength (448–532–659 nm) laser illumination is proposed and examined. Three monochromatic spectral images related to the illumination wavelengths were extracted from the smartphone camera RGB image data set with respect to crosstalk between the RGB detection bands. Spectral images were further processed accordingly to Beer’s law in a three chromophore approximation. Photon absorption path lengths in skin at the exploited wavelengths were estimated by means of Monte Carlo simulations. The technique was validated clinically on three kinds of skin lesions: nevi, hemangiomas, and seborrheic keratosis. Design of the developed add-on laser illumination system, image-processing details, and the results of clinical measurements are presented and discussed.

摘要

发色团分布图是评估皮肤畸形严重程度和监测烧伤、手术及其他干预后皮肤恢复情况的有用工具。发色团图可以通过处理皮肤的多个光谱图像获得,例如,在几秒钟甚至几分钟内,通过高光谱或多光谱相机捕获。为了避免运动伪影并简化程序,提出并研究了一种利用智能手机在同时三波长(448-532-659nm)激光照射下对体内皮肤的黑色素、氧合血红蛋白和脱氧血红蛋白进行单快照映射的技术。从智能手机相机的 RGB 图像数据集提取了与照明波长相关的三个单色光谱图像,以消除 RGB 检测带之间的串扰。根据 Beer 定律在三发色团近似的情况下进一步处理光谱图像。利用蒙特卡罗模拟估计了在利用的波长下皮肤中的光子吸收路径长度。该技术在三种皮肤病变(痣、血管瘤和脂溢性角化病)上进行了临床验证。介绍并讨论了所开发的附加激光照明系统的设计、图像处理细节以及临床测量结果。

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