Kukk Anatoly Fedorov, Scheling Felix, Panzer Rüdiger, Emmert Steffen, Roth Bernhard
Hannover Centre for Optical Technologies, Leibniz University of Hannover, Nienburger Straße 17, 30167, Hannover, Germany.
Clinic and Policlinic for Dermatology and Venereology, University Medical Center Rostock, Strempelstraße 13, 18057, Rostock, Germany.
Sci Rep. 2023 Oct 20;13(1):17947. doi: 10.1038/s41598-023-44919-5.
Accurate assessment of the size and depth of infiltration is critical for effectively treating and removing skin cancer, especially melanoma. However, existing methods such as skin biopsy and histologic examination are invasive, time-consuming, and may not provide accurate depth results. We present a novel system for simultaneous and co-localized ultrasound and photoacoustic imaging, with the application for non-invasive skin lesion size and depth measurement. The developed system integrates an acoustical mirror that is placed on an ultrasound transducer, which can be translated within a flexible water tank. This allows for 3D (C-mode) imaging, which is useful for mapping the skin structure and determine the invasion size and depth of lesions including skin cancer. For efficient reconstruction of photoacoustic images, we applied the open-source MUST library. The acquisition time per 2D image is <1 s and the pulse energies are below the legal Maximum Permissible Exposure (MPE) on human skin. We present the depth and resolution capabilities of the setup on several self-designed agar phantoms and demonstrate in vivo imaging on human skin. The setup also features an unobstructed optical window from the top, allowing for simple integration with other optical modalities. The perspective towards clinical application is demonstrated.
准确评估浸润的大小和深度对于有效治疗和切除皮肤癌,尤其是黑色素瘤至关重要。然而,现有的方法如皮肤活检和组织学检查具有侵入性、耗时,并且可能无法提供准确的深度结果。我们提出了一种用于同时进行共定位超声和光声成像的新型系统,用于非侵入性测量皮肤病变的大小和深度。所开发的系统集成了一个放置在超声换能器上的声学镜,该换能器可在柔性水箱内移动。这允许进行三维(C模式)成像,有助于绘制皮肤结构并确定包括皮肤癌在内的病变的浸润大小和深度。为了高效重建光声图像,我们应用了开源的MUST库。每幅二维图像的采集时间小于1秒,脉冲能量低于人体皮肤的法定最大允许暴露量(MPE)。我们展示了该装置在几个自行设计的琼脂模型上的深度和分辨率能力,并在人体皮肤上进行了体内成像。该装置还具有从顶部无阻碍的光学窗口,便于与其他光学模态简单集成。展示了其临床应用前景。