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Simulation Platform of Multi-Pulse Photoacoustic Microscopy Based on K-Space Pseudospectral Method

机译:基于K空间伪谱法的多脉冲光声显微镜仿真平台

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摘要

Photoacoustic imaging has emerged in the past decades. Compared with the traditional medical imaging mode, it has better imaging performance and has great development potential in the field of biological imaging. In traditional photoacoustic microscopy, a single laser pulse is generally used to irradiate the sample to produce photoacoustic signal. And sig-nal-to-noise ratio (SNR) is a very important indicator for photoacoustic im-aging. In order to obtain the image with high SNR, multiple acquisition or increasing laser pulse energy is usually adopted. The former will lead to slower imaging speed, and the latter will lead to photobleaching or pho-totoxicity. Here, we propose multi-pulse photoacoustic microscopy, the photoacoustic signals were stimulated sequentially using multiple laser pulses in each A line data acquisition. In order to verify the feasibility of this method, a multi-pulse photoacoustic imaging simulation platform is established using k-Wave toolbox. The performance of multi-pulse photo-acoustic imaging is verified through the three scanning modes of photoa-coustic microscopy A-scan, B-scan, and C-scan. The results indicate that the SNR is proportion to the number of laser pulses used, high SNR can be achieved by low-energy laser pulse. This work will help to expand the ap-plication of photoacoustic imaging.
机译:过去几十年来的光声成像已经出现。与传统的医学成像模式相比,它具有更好的成像性能,在生物成像领域具有更大的发展潜力。在传统的光声显微镜中,通常用于照射样品以产生光声信号的单个激光脉冲。并且Sig-nal-噪声比(SNR)是光声式IM衰老的一个非常重要的指标。为了获得高SNR的图像,通常采用多次采集或增加激光脉冲能量。前者会导致成像速度较慢,后者会导致光漂白或Pho-totoxicity。这里,我们提出了多脉冲光声显微镜,光声信号在每个线数据采集中使用多个激光脉冲顺序地刺激。为了验证该方法的可行性,使用K-Wave工具箱建立了多脉冲光声成像仿真平台。通过Photoa-Coustic显微镜A-SCAN,B扫描和C扫描的三种扫描模式验证了多脉冲光声成像的性能。结果表明,SNR与使用的激光脉冲数量的比例,通过低能量激光脉冲可以实现高SNR。这项工作将有助于扩展光声成像的APPlic。

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