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应用光声介观成像技术在体评估人体皮肤的热诱导血管舒张。

Assessing hyperthermia-induced vasodilation in human skin in vivo using optoacoustic mesoscopy.

机构信息

Chair of Biological Imaging, Technische Universität München, Munich, Germany.

Institute of Biological and Medical Imaging, Helmholtz Zentrum München, Neuherberg, Germany.

出版信息

J Biophotonics. 2018 Nov;11(11):e201700359. doi: 10.1002/jbio.201700359. Epub 2018 Jul 18.

Abstract

The aim of this study was to explore the unique imaging abilities of optoacoustic mesoscopy to visualize skin structures and microvasculature with the view of establishing a robust approach for monitoring heat-induced hyperemia in human skin in vivo. Using raster-scan optoacoustic mesoscopy (RSOM), we investigated whether optoacoustic (photoacoustic) mesoscopy can identify changes in skin response to local heating at microvasculature resolution in a cross-sectional fashion through skin in the human forearm. We visualized the heat-induced hyperemia for the first time with single-vessel resolution throughout the whole skin depth. We quantified changes in total blood volume in the skin and their correlation with local heating. In response to local heating, total blood volume increased 1.83- and 1.76-fold, respectively, in the volar and dorsal aspects of forearm skin. We demonstrate RSOM imaging of the dilation of individual vessels in the skin microvasculature, consistent with hyperemic response to heating at the skin surface. Our results demonstrate great potential of RSOM for elucidating the morphology, functional state and reactivity of dermal microvasculature, with implications for diagnostics and disease monitoring. Image: Cross-sectional view of skin microvasculature dilated in response to hyperthermia.

摘要

本研究旨在探索光声介观成像的独特成像能力,以可视化皮肤结构和微血管,以期建立一种强大的方法来监测人体皮肤中热诱导的充血。使用光栅扫描光声介观成像(RSOM),我们研究了光声(光声)介观成像是否可以在横截面方式下通过人体前臂皮肤以微血管分辨率识别皮肤对局部加热的反应变化。我们首次以单血管分辨率可视化整个皮肤深度的热诱导充血。我们量化了皮肤中总血量的变化及其与局部加热的相关性。局部加热时,前臂皮肤的掌侧和背侧的总血量分别增加了 1.83 倍和 1.76 倍。我们证明了 RSOM 对皮肤微血管中单个血管扩张的成像,与皮肤表面加热的充血反应一致。我们的结果表明 RSOM 具有阐明皮肤微血管形态、功能状态和反应性的巨大潜力,这对诊断和疾病监测具有重要意义。图像:皮肤微血管对热疗扩张的横截面视图。

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