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混合多波长非线性光声传感与成像。

Hybrid multi-wavelength nonlinear photoacoustic sensing and imaging.

出版信息

Opt Lett. 2018 Nov 15;43(22):5611-5614. doi: 10.1364/OL.43.005611.

Abstract

Multi-wavelength photoacoustic (PA) imaging has been studied extensively to explore the spectroscopic absorption contrast of biological tissues. To generate strong PA signals, a high-power wavelength tunable pulsed laser source has to be employed, which is bulky and quite expensive. In this Letter, we propose a hybrid multi-wavelength PA imaging (hPAI) method based on the combination of a single-wavelength pulsed laser source and multi-wavelength continuous-wave (CW) laser sources. By carefully controlling the laser illumination sequence (pulse-CW-pulse) and extracting the PA signal difference before and after the heating of CW lasers, the optical absorption property of multi-wavelength light illumination could be obtained. Compared with conventional PA imaging, the proposed hPAI shows a much lower system cost due to the usage of single-wavelength pulsed lasers and multiple inexpensive CW lasers. As the preliminary results show in this Letter, hPAI imaging has the potential to provide another pathway for high spectroscopic optical absorption contrast in PA imaging.

摘要

多波长光声(PA)成像是研究生物组织光谱吸收对比的重要手段。为了产生强的 PA 信号,需要使用大功率波长可调谐脉冲激光源,而这种激光源体积庞大且价格昂贵。在本信中,我们提出了一种基于单波长脉冲激光源和多波长连续波(CW)激光源组合的混合多波长 PA 成像(hPAI)方法。通过仔细控制激光照射顺序(脉冲-CW-脉冲)并提取 CW 激光加热前后的 PA 信号差异,可以获得多波长光照明的光吸收特性。与传统的 PA 成像相比,由于使用单波长脉冲激光器和多个廉价的 CW 激光器,所提出的 hPAI 具有更低的系统成本。初步结果表明,hPAI 成像有可能为 PA 成像中的高光谱光学吸收对比度提供另一种途径。

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