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通过激光抖动效应校正和脉冲能量补偿提高声学分辨率光声显微镜的轴向精度和信号增强

Axial accuracy and signal enhancement in acoustic-resolution photoacoustic microscopy by laser jitter effect correction and pulse energy compensation.

作者信息

Asadollahi Amir, Latifi Hamid, Pramanik Manojit, Qazvini Hamed, Rezaei Ali, Nikbakht Hamed, Abedi Abolfazl

机构信息

Laser and Plasma Research Institute, Shahid Beheshti University, Tehran, Iran.

Department of Physics, Shahid Beheshti University, Tehran, Iran.

出版信息

Biomed Opt Express. 2021 Mar 2;12(4):1834-1845. doi: 10.1364/BOE.419564. eCollection 2021 Apr 1.

Abstract

In recent years, photoacoustic imaging has found vast applications in biomedical imaging. Photoacoustic imaging has high optical contrast and high ultrasound resolution allowing deep tissue non-invasive imaging beyond the optical diffusion limit. Q-switched lasers are extensively used in photoacoustic imaging due to the availability of high energy and short laser pulses, which are essential for high-resolution photoacoustic imaging. In most cases, this type of light source suffers from pulse peak-power energy variations and timing jitter noise, resulting in uncertainty in the output power and arrival time of the laser pulses. These problems cause intensity degradation and temporal displacement of generated photoacoustic signals which in turn deteriorate the quality of the acquired photoacoustic images. In this study, we used a high-speed data acquisition system in combination with a fast photodetector and a software-based approach to capture laser pulses precisely in order to reduce the effect of timing jitter and normalization of the photoacoustic signals based on pulse peak-powers simultaneously. In the experiments, maximum axial accuracy enhancement of 14 µm was achieved in maximum-amplitude projected images on XZ and YZ planes with ±13.5 ns laser timing jitter. Furthermore, photoacoustic signal enhancement of 77% was obtained for 75% laser pulses peak-power stability.

摘要

近年来,光声成像在生物医学成像领域有了广泛应用。光声成像具有高光学对比度和高超声分辨率,能够实现超越光学扩散极限的深部组织无创成像。调Q激光器由于可提供高能量和短激光脉冲,而被广泛应用于光声成像,这些对于高分辨率光声成像至关重要。在大多数情况下,这类光源存在脉冲峰值功率能量变化和定时抖动噪声问题,导致激光脉冲输出功率和到达时间存在不确定性。这些问题会使产生的光声信号强度降低和时间偏移,进而降低所采集光声图像的质量。在本研究中,我们使用高速数据采集系统,结合快速光电探测器和基于软件的方法来精确捕获激光脉冲,以便同时降低定时抖动的影响,并基于脉冲峰值功率对光声信号进行归一化处理。在实验中,对于XZ和YZ平面上的最大振幅投影图像,在激光定时抖动为±13.5 ns的情况下,轴向精度最大提高了14 µm。此外,在激光脉冲峰值功率稳定性为75%时,光声信号增强了77%。

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