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Quantitative evaluation of skin photoaging mechanisms using multi- wavelength analysis of photoacoustic images

机译:光声图像多波长分析的皮肤光手册机制的定量评价

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In recent years, skin aging caused by ultraviolet light exposure has garnered attention in the fields of beauty and health care because photoaging accelerates skin aging. Elastin is closely related to photoaging. In conventional methods for evaluating the elastin degeneration of photoaging skin, Elastica van Gieson staining images of skin section were evaluated using Kligman criteria. However, this diagnosis entails some shortcomings. For example, it is invasive and has no metabolic function. Moreover, its mechanism has not been fully clarified. For this study, photoacoustic imaging was used for evaluating skin photoaging mechanisms with acoustic resolution photoacoustic microscopy (AR-PAM). An ultrasonically focused transducer (50 MHz, 6.7 mm focal length) attached to the imaging head detected photoacoustic waves. Photoacoustic signal distributions of various skin aging sections that were a 25-μm-thick human cheek and buttock skin sections of six types were measured at 20 μm intervals using AR-PAM. This study was conducted to ascertain whether elastin parts are distinguishable from collagen parts in photoacoustic images. A difference was found between the photoacoustic spectrum of elastin and that of the collagen at 420-520 nm wavelengths. To examine the distinguishability between elastin and collagen, the signal intensity ratio of 420/450 nm wavelengths was calculated. The signal intensity ratio of the collagen part is higher than that of the elastin part. These results verified the possibility of discriminating elastin from collagen using multi-wavelength analysis of photoacoustic images.
机译:近年来,紫外线曝光引起的皮肤衰老在美容和医疗保健领域造成了关注,因为拍照加速皮肤老化。弹性蛋白与光学手册密切相关。在评估光学皮肤皮肤的弹性素变性的常规方法中,使用Kligman标准评估皮肤部分的Elastica van Gieson染色图像。但是,这种诊断需要一些缺点。例如,它是侵入性的并且没有代谢功能。此外,其机制尚未完全澄清。对于该研究,光声成像用于评估具有声学分辨率光声显微镜(AR-PAM)的皮肤光手册机构。连接到成像头的超声波聚焦的换能器(50MHz,6.7mm焦距)检测到的光声波。使用AR-PAM以20μm间隔测量为25μm厚的人颊和臀部皮肤部分的各种皮肤老化部分的光声信号分布。进行该研究以确定Elastin部件是否可与光声图像中的胶原蛋白部分区分开。在弹性蛋白的光声光谱和420-520nm波长下,弹性蛋白的光声光谱和胶原蛋白的光声光谱之间发现了差异。为了检查弹性蛋白和胶原蛋白之间的区分性,计算了420/450nm波长的信号强度比。胶原部分的信号强度比高于弹性蛋白部分的信号强度比。这些结果验证了使用光声图像的多波长分析来验证从胶原蛋白区分弹性蛋白的可能性。

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