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低频信号在功能与分子光声计算机断层成像中的重要性

On the importance of low-frequency signals in functional and molecular photoacoustic computed tomography.

作者信息

Vu Tri, Klippel Paul, Canning Aidan J, Ma Chenshuo, Zhang Huijuan, Kasatkina Ludmila A, Tang Yuqi, Xia Jun, Verkhusha Vladislav V, Vo-Dinh Tuan, Jing Yun, Yao Junjie

机构信息

Photoacoustic Imaging Laboratory, Duke University, Durham, NC 27708 USA.

Graduate Program in Acoustics, Penn State University, University Park, PA 16802.

出版信息

ArXiv. 2023 Aug 1:arXiv:2308.00870v1.

Abstract

In photoacoustic computed tomography (PACT) with short-pulsed laser excitation, wideband acoustic signals are generated in biological tissues with frequencies related to the effective shapes and sizes of the optically absorbing targets. Low-frequency photoacoustic signal components correspond to slowly varying spatial features and are often omitted during imaging due to the limited detection bandwidth of the ultrasound transducer, or during image reconstruction as undesired background that degrades image contrast. Here we demonstrate that low-frequency photoacoustic signals, in fact, contain functional and molecular information, and can be used to enhance structural visibility, improve quantitative accuracy, and reduce spare-sampling artifacts. We provide an in-depth theoretical analysis of low-frequency signals in PACT, and experimentally evaluate their impact on several representative PACT applications, such as mapping temperature in photothermal treatment, measuring blood oxygenation in a hypoxia challenge, and detecting photoswitchable molecular probes in deep organs. Our results strongly suggest that low-frequency signals are important for functional and molecular PACT.

摘要

在采用短脉冲激光激发的光声计算机断层扫描(PACT)中,生物组织会产生宽带声学信号,其频率与光吸收目标的有效形状和尺寸相关。低频光声信号分量对应于缓慢变化的空间特征,由于超声换能器的检测带宽有限,在成像过程中这些分量常被忽略,或者在图像重建过程中被视为会降低图像对比度的有害背景而被舍弃。在此我们证明,低频光声信号实际上包含功能和分子信息,可用于增强结构可见性、提高定量准确性并减少欠采样伪影。我们对PACT中的低频信号进行了深入的理论分析,并通过实验评估了它们对几种代表性PACT应用的影响,例如在光热治疗中绘制温度图、在缺氧挑战中测量血液氧合以及在深部器官中检测光开关分子探针。我们的结果有力地表明,低频信号对于功能性和分子性PACT至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db2c/10418541/dfcc5a48ac20/nihpp-2308.00870v1-f0001.jpg

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