Faculty of Information Technology, University of Jyväskylä, 40100 Jyväskylä, Finland.
Department of Dermatology and Allergology, University of Helsinki and Helsinki University Hospital, 00290 Helsinki, Finland.
Sensors (Basel). 2022 Apr 29;22(9):3420. doi: 10.3390/s22093420.
Hyperspectral imaging (HSI) applications for biomedical imaging and dermatological applications have been recently under research interest. Medical HSI applications are non-invasive methods with high spatial and spectral resolution. HS imaging can be used to delineate malignant tumours, detect invasions, and classify lesion types. Typical challenges of these applications relate to complex skin surfaces, leaving some skin areas unreachable. In this study, we introduce a novel spectral imaging concept and conduct a clinical pre-test, the findings of which can be used to develop the concept towards a clinical application. The SICSURFIS spectral imager concept combines a piezo-actuated Fabry-Pérot interferometer (FPI) based hyperspectral imager, a specially designed LED module and several sizes of stray light protection cones for reaching and adapting to the complex skin surfaces. The imager is designed for the needs of photometric stereo imaging for providing the skin surface models (3D) for each captured wavelength. The captured HS images contained 33 selected wavelengths (ranging from 477 nm to 891 nm), which were captured simultaneously with accordingly selected LEDs and three specific angles of light. The pre-test results show that the data collected with the new SICSURFIS imager enable the use of the spectral and spatial domains with surface model information. The imager can reach complex skin surfaces. Healthy skin, basal cell carcinomas and intradermal nevi lesions were classified and delineated pixel-wise with promising results, but further studies are needed. The results were obtained with a convolutional neural network.
近年来,高光谱成像(HSI)在生物医学成像和皮肤病学应用方面的研究受到了关注。医学 HSI 应用是一种具有高空间和光谱分辨率的非侵入性方法。HS 成像可用于描绘恶性肿瘤、检测入侵和分类病变类型。这些应用的典型挑战与复杂的皮肤表面有关,导致一些皮肤区域无法触及。在这项研究中,我们引入了一种新的光谱成像概念,并进行了临床预测试,该测试的结果可用于开发该概念以实现临床应用。SICSURFIS 光谱成像仪概念结合了基于压电驱动的法布里-珀罗干涉仪(FPI)的高光谱成像仪、专门设计的 LED 模块和几个尺寸的杂散光保护锥,以适应复杂的皮肤表面。该成像仪是为用于提供每个捕获波长的皮肤表面模型(3D)的光度立体成像的需求而设计的。捕获的 HS 图像包含 33 个选定的波长(范围从 477nm 到 891nm),这些波长与相应选择的 LED 和三个特定角度的光同时捕获。预测试结果表明,使用新的 SICSURFIS 成像仪收集的数据可以在具有表面模型信息的光谱和空间域中使用。该成像仪可以到达复杂的皮肤表面。健康皮肤、基底细胞癌和真皮内痣病变被分类和逐像素描绘,结果有希望,但需要进一步研究。结果是使用卷积神经网络获得的。