Wang Zhiyang, Yang Fei, Zhang Wuyu, Yang Sihua
MOE Key Laboratory of Laser Life Science and Institute of Laser Life Science, College of Biophotonics, South China Normal University, Guangzhou, China.
Guangdong Provincial Key Laboratory of Laser Life Science, College of Biophotonics, South China Normal University, Guangzhou, China.
Bio Protoc. 2022 Apr 5;12(7):e4372. doi: 10.21769/BioProtoc.4372.
Imaging plays a vital role in the diagnosis and treatment of skin diseases. However, pure optical imaging technique is limited to the visualization of superficial skin tissues. Ultrasonic imaging technique can detect deep tissues, but it lacks detailed information on microscopic pathological structures. Photoacoustic imaging is an advanced technology that bridges the spatial-resolution gap between optical and ultrasonic techniques, by the modes of optical excitation and acoustic detection. Photoacoustic dermoscopy (PAD), based on photoacoustic technology, can noninvasively obtain high-resolution anatomical structures by endogenous absorbers, such as melanin, hemoglobin, lipids, etc. In the past years, PAD has gradually been developed in clinical dermatology for the diagnosis of melanoma, psoriasis, port-wine stains, dermatitis, skin grafting, and testing the efficacy of cosmetics. This protocol provides detailed procedures for PAD construction, including component selection, equipment setup, and system calibration. A step-by-step guide for human skin imaging is provided as an example application. Image reconstruction and troubleshooting procedures are also elaborated. PAD offers the 3D volumetric images of human skin, and quantitatively analyzes the vascular morphology in the dermis. The protocol will provide clinicians with standardized and reasonable guidance in dermatological imaging.
成像在皮肤病的诊断和治疗中起着至关重要的作用。然而,单纯的光学成像技术仅限于可视化浅表皮肤组织。超声成像技术可以检测深部组织,但缺乏关于微观病理结构的详细信息。光声成像是一种先进技术,通过光激发和声检测模式弥合了光学和超声技术之间的空间分辨率差距。基于光声技术的光声皮肤镜(PAD)可以通过黑色素、血红蛋白、脂质等内源性吸收体无创地获取高分辨率解剖结构。在过去几年中,PAD已在临床皮肤科逐渐发展,用于诊断黑色素瘤、银屑病、葡萄酒色斑、皮炎、皮肤移植以及测试化妆品的功效。本方案提供了PAD构建的详细步骤,包括组件选择、设备设置和系统校准。作为示例应用,提供了人体皮肤成像的分步指南。还阐述了图像重建和故障排除程序。PAD提供人体皮肤的三维体积图像,并定量分析真皮中的血管形态。该方案将为临床医生在皮肤病成像方面提供标准化且合理的指导。