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联合超声和光声断层扫描对人体黑色素病变的无创 3D 成像:一项初步研究。

Non-invasive 3D imaging of human melanocytic lesions by combined ultrasound and photoacoustic tomography: a pilot study.

机构信息

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.

出版信息

Sci Rep. 2024 Feb 2;14(1):2768. doi: 10.1038/s41598-024-53220-y.

Abstract

The accurate determination of the size and depth of infiltration is critical to the treatment and excision of melanoma and other skin cancers. However, current techniques, such as skin biopsy and histological examination, pose invasiveness, time-consumption, and have limitations in measuring at the deepest level. Non-invasive imaging techniques like dermoscopy and confocal microscopy also present limitations in accurately capturing contrast and depth information for various skin types and lesion locations. Thus, there is a pressing need for non-invasive devices capable of obtaining high-resolution 3D images of skin lesions. In this study, we introduce a novel device that combines 18 MHz ultrasound and photoacoustic tomography into a single unit, enabling the acquisition of colocalized 3D images of skin lesions. We performed in vivo measurements on 25 suspicious human skin nevi that were promptly excised following measurements. The combined ultrasound/photoacoustic tomography imaging technique exhibited a strong correlation with histological Breslow thickness between 0.2 and 3 mm, achieving a coefficient of determination (R[Formula: see text]) of 0.93, which is superior to the coefficients from the individual modalities. The results procured in our study underscore the potential of combined ultrasound and photoacoustic tomography as a promising non-invasive 3D imaging approach for evaluating human nevi and other skin lesions. Furthermore, the system allows for integration of other optical modalities such as optical coherence tomography, microscopy, or Raman spectroscopy in future applications.

摘要

准确确定黑色素瘤和其他皮肤癌的浸润深度和大小对于治疗和切除至关重要。然而,目前的技术,如皮肤活检和组织学检查,具有侵入性、耗时且在测量最深层时存在局限性。非侵入性成像技术,如皮肤镜检查和共聚焦显微镜,在准确捕捉各种皮肤类型和病变位置的对比度和深度信息方面也存在局限性。因此,迫切需要能够获得皮肤病变高分辨率 3D 图像的非侵入性设备。在这项研究中,我们引入了一种将 18MHz 超声和光声断层扫描结合到单个单元中的新型设备,能够获取皮肤病变的共定位 3D 图像。我们对 25 个可疑的人类皮肤痣进行了体内测量,并在测量后立即切除。联合超声/光声断层扫描成像技术与 0.2 至 3 毫米之间的组织学 Breslow 厚度之间具有很强的相关性,决定系数(R²)为 0.93,优于单独模态的系数。我们研究中的结果突显了联合超声和光声断层扫描作为评估人类痣和其他皮肤病变的有前途的非侵入性 3D 成像方法的潜力。此外,该系统允许在未来的应用中集成其他光学模式,如光学相干断层扫描、显微镜或拉曼光谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/028c/10837440/9e95c5fae46a/41598_2024_53220_Fig1_HTML.jpg

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