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热标记光声远程传感流量测量法。

Thermal-tagging photoacoustic remote sensing flowmetry.

出版信息

Opt Lett. 2024 Apr 1;49(7):1725-1728. doi: 10.1364/OL.521564.

Abstract

Ultrasound coupling is one of the critical challenges for traditional photoacoustic (or optoacoustic) microscopy (PAM) techniques transferred to the clinical examination of chronic wounds and open tissues. A promising alternative potential solution for breaking the limitation of ultrasound coupling in PAM is photoacoustic remote sensing (PARS), which implements all-optical non-interferometric photoacoustic measurements. Functional imaging of PARS microscopy was demonstrated from the aspects of histopathology and oxygen metabolism, while its performance in hemodynamic quantification remains unexplored. In this Letter, we present an all-optical thermal-tagging flowmetry approach for PARS microscopy and demonstrate it with comprehensive mathematical modeling and ex vivo and in vivo experimental validations. Experimental results demonstrated that the detectable range of the blood flow rate was from 0 to 12 mm/s with a high accuracy (measurement error:±1.2%) at 10-kHz laser pulse repetition rate. The proposed all-optical thermal-tagging flowmetry offers an effective alternative approach for PARS microscopy realizing non-contact dye-free hemodynamic imaging.

摘要

超声耦合是传统光声(或光声)显微镜(PAM)技术在慢性伤口和开放组织的临床检查中面临的关键挑战之一。对于突破 PAM 中超声耦合限制,光声远程传感(PARS)是一种很有前途的替代解决方案,它实现了全光学非干涉光声测量。从组织病理学和氧代谢的角度证明了 PARS 显微镜的功能成像,而其在血液动力学定量方面的性能仍有待探索。在本研究中,我们提出了一种用于 PARS 显微镜的全光学热标记流量测量方法,并通过全面的数学建模和离体及体内实验验证进行了演示。实验结果表明,在 10-kHz 激光脉冲重复率下,血流速度的可检测范围为 0 至 12 mm/s,具有较高的精度(测量误差:±1.2%)。所提出的全光学热标记流量测量方法为 PARS 显微镜提供了一种有效的替代方法,实现了非接触、无染料的血液动力学成像。

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