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激光辐照时间对光声技术影响机制的研究进展

Influence mechanism of the temporal duration of laser irradiation on photoacoustic technique: a review.

机构信息

Chinese Academy of Sciences, Shenzhen Institute of Advanced Technology, Research Center for Biomedical Optics and Molecular Imaging, Key Laboratory of Biomedical Imaging Science and System, Shenzhen, China.

Qufu Normal University, School of Cyberspace Security, Qufu, China.

出版信息

J Biomed Opt. 2024 Jan;29(Suppl 1):S11530. doi: 10.1117/1.JBO.29.S1.S11530. Epub 2024 Apr 17.

Abstract

SIGNIFICANCE

In the photoacoustic (PA) technique, the laser irradiation in the time domain (i.e., laser pulse duration) governs the characteristics of PA imaging-it plays a crucial role in the optical-acoustic interaction, the generation of PA signals, and the PA imaging performance.

AIM

We aim to provide a comprehensive analysis of the impact of laser pulse duration on various aspects of PA imaging, encompassing the signal-to-noise ratio, the spatial resolution of PA imaging, the acoustic frequency spectrum of the acoustic wave, the initiation of specific physical phenomena, and the photothermal-PA (PT-PA) interaction/conversion.

APPROACH

By surveying and reviewing the state-of-the-art investigations, we discuss the effects of laser pulse duration on the generation of PA signals in the context of biomedical PA imaging with respect to the aforementioned aspects.

RESULTS

First, we discuss the impact of laser pulse duration on the PA signal amplitude and its correlation with the lateral resolution of PA imaging. Subsequently, the relationship between the axial resolution of PA imaging and the laser pulse duration is analyzed with consideration of the acoustic frequency spectrum. Furthermore, we examine the manipulation of the pulse duration to trigger physical phenomena and its relevant applications. In addition, we elaborate on the tuning of the pulse duration to manipulate the conversion process and ratio from the PT to PA effect.

CONCLUSIONS

We contribute to the understanding of the physical mechanisms governing pulse-width-dependent PA techniques. By gaining insight into the mechanism behind the influence of the laser pulse, we can trigger the pulse-with-dependent physical phenomena for specific PA applications, enhance PA imaging performance in biomedical imaging scenarios, and modulate PT-PA conversion by tuning the pulse duration precisely.

摘要

意义

在光声(PA)技术中,时域中的激光照射(即激光脉冲持续时间)控制着 PA 成像的特性——它在光声相互作用、PA 信号的产生以及 PA 成像性能中起着至关重要的作用。

目的

我们旨在全面分析激光脉冲持续时间对 PA 成像各个方面的影响,包括信号与噪声比、PA 成像的空间分辨率、声波的声谱、特定物理现象的触发以及光热-PA(PT-PA)相互作用/转换。

方法

通过调查和回顾最先进的研究,我们讨论了激光脉冲持续时间对生物医学 PA 成像中 PA 信号产生的影响,涉及上述各个方面。

结果

首先,我们讨论了激光脉冲持续时间对 PA 信号幅度的影响及其与 PA 成像横向分辨率的相关性。随后,分析了轴向分辨率与激光脉冲持续时间的关系,同时考虑了声谱。此外,我们研究了操纵脉冲持续时间以触发物理现象及其相关应用的情况。此外,我们详细阐述了通过调整脉冲持续时间来操纵从 PT 到 PA 效应的转换过程和比例。

结论

我们为理解激光脉冲宽度依赖的 PA 技术的物理机制做出了贡献。通过深入了解激光脉冲影响背后的机制,我们可以为特定的 PA 应用触发脉冲宽度依赖的物理现象,增强生物医学成像场景中的 PA 成像性能,并通过精确调整脉冲持续时间来调节 PT-PA 转换。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/199d/11021737/d4db7d13fd19/JBO-029-S11530-g001.jpg

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