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光声成像为体内人体皮肤血管生理学提供了新的见解。

Optoacoustic Imaging Offers New Insights into In Vivo Human Skin Vascular Physiology.

作者信息

Monteiro Rodrigues Luis, Granja Tiago F, de Andrade Sergio Faloni

机构信息

CBIOS-Research Centre for Biosciences and Health Technologies, Universidade Lusófona Av, Campo Grande 376, 1749-024 Lisboa, Portugal.

出版信息

Life (Basel). 2022 Oct 18;12(10):1628. doi: 10.3390/life12101628.

Abstract

Functional imaging with new photoacoustic tomography (PAT) offers improved spatial and temporal resolution quality in in vivo human skin vascular assessments. In the present study, we followed a suprasystolic reactive hyperemia (RH) maneuver with a multi-spectral optoacoustic tomography (MSOT) system. A convenience sample of ten participants, both sexes, mean age of 35.8 ± 13.3 years old, was selected. All procedures were in accordance with the principles of good clinical practice and approved by the institutional ethics committee. Images were obtained at baseline (resting), during occlusion, and immediately after pressure release. Observations of the RH by PAT identified superficial and deeper vascular structures parallel to the skin surface as part of the human skin vascular plexus. Furthermore, PAT revealed that the suprasystolic occlusion impacts both plexus differently, practically obliterating the superficial smaller vessels and evoking stasis at the deeper, larger structures in real-time (live) conditions. This dual effect of RH on the skin plexus has not been explored and is not considered in clinical settings. Thus, RH seems to represent much more than the local microvascular reperfusion as typically described, and PAT offers a vast potential for vascular clinical and preclinical research.

摘要

新型光声断层扫描(PAT)功能成像在体内人体皮肤血管评估中提供了更高的空间和时间分辨率质量。在本研究中,我们使用多光谱光声断层扫描(MSOT)系统进行了超收缩期反应性充血(RH)操作。选取了一个由10名参与者组成的便利样本,男女皆有,平均年龄为35.8±13.3岁。所有程序均符合良好临床实践原则,并获得了机构伦理委员会的批准。在基线(静息)、阻断期间以及压力释放后立即获取图像。通过PAT对RH的观察确定了与皮肤表面平行的浅表和更深层血管结构是人体皮肤血管丛的一部分。此外,PAT显示超收缩期阻断对两个血管丛的影响不同,实际上使浅表较小血管闭塞,并在实时(活体)条件下使更深层、较大的结构出现血流淤滞。RH对皮肤血管丛的这种双重作用尚未得到探索,在临床环境中也未被考虑。因此,RH似乎不仅仅代表通常所描述的局部微血管再灌注,而PAT在血管临床和临床前研究中具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2419/9605317/e18d03968a8f/life-12-01628-g001.jpg

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