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Multiscale confocal photoacoustic dermoscopy to evaluate skin health

机译:多尺度共聚焦光声皮肤镜检查评估皮肤健康

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Background: Photoacoustic dermoscopy (PAD) is a promising branch of photoacoustic microscopy (PAM) that can provide a range of functional and morphologic information for clinical assessment and diagnosis of dermatological conditions. However, most PAM setups are unsuitable for clinical dermatology because their single-scale mode and narrow frequency band result in insufficient imaging depth or poor spatiotemporal resolution when visualizing the internal texture of the skin. Methods: We developed a multiscale confocal photoacoustic dermoscopy (MC-PAD) with a multifunction opto-sono objective that could achieve high quality dermatological imaging. Using the objective to coordinate the spatial resolution and penetration depth, the MC-PAD was used to visualize pathophysiological biomarkers and vascular morphology from the epidermis (EP) to the dermis, which enabled us to quantify skin abnormalities without using exogenous contrast agents for human skin. Results: The MC-PAD was shown to have the ability to differentiate between different types of cells (such as red blood cells and melanoma cells), image and quantify pigment of the skin, and visualize skin morphology and blood capillary landmarks. The MC-PAD detected a significant difference in the structures of some pigmented and vascular lesions of skin diseases compared with that of healthy skin (P<0.01). The cafe au lait macule (CALM) skin type was found to have a relatively higher melanin concentration and thicker stratum basale (SB) in the EP than healthy skin. The dermal vascular network of skin that had a port wine stain (PWS) had greater diameters and a denser distribution than healthy skin, as reported in clinical trials. Conclusions: The MC-PAD has a broad range of applications for the diagnosis of human skin diseases and evaluation of the curative effect of treatments, and it can offer new perspectives in biomedical sciences.
机译:背景:光声皮肤镜 (PAD) 是光声显微镜 (PAM) 的一个很有前途的分支,可以为皮肤病的临床评估和诊断提供一系列功能和形态学信息。然而,大多数 PAM 设置不适合临床皮肤病学,因为它们的单标度模式和窄频带导致成像深度不足或时空分辨率差,从而在可视化皮肤内部纹理时。方法:我们开发了一种具有多功能光声物镜的多尺度共聚焦光声皮肤镜(MC-PAD),可实现高质量的皮肤病学成像。利用物镜协调空间分辨率和穿透深度,MC-PAD用于可视化从表皮(EP)到真皮的病理生理生物标志物和血管形态,这使我们能够量化皮肤异常,而无需使用人体皮肤的外源性造影剂。结果:MC-PAD具有区分不同类型细胞(如红细胞和黑色素瘤细胞)的能力,对皮肤色素进行成像和量化,并可视化皮肤形态和毛细血管标志。MC-PAD检测出皮肤病部分色素沉着和血管病变的结构与健康皮肤相比有显著差异(P<0.01)。与健康皮肤相比,牛奶咖啡斑疹 (CALM) 皮肤类型在 EP 中的黑色素浓度相对较高,基底层 (SB) 较厚。正如临床试验所报道的那样,与健康皮肤相比,具有葡萄酒色斑 (PWS) 的皮肤真皮血管网络具有更大的直径和更密集的分布。结论:MC-PAD在人体皮肤病诊断和治疗疗效评估方面具有广泛的应用,可为生物医学科学提供新的视角。

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