On the imaging depth limit of photoacoustic tomography in the visible and first near-infrared windows

Author:

Liu Songde1ORCID,Wang Tong1ORCID,Zheng Xinye1,Zhu Yunhao2,Tian Chao123ORCID

Affiliation:

1. University of Science and Technology of China

2. Institute of Artificial Intelligence

3. Anhui Province Key Laboratory of Biomedical Imaging and Intelligent Processing

Abstract

It is well known that photoacoustic tomography (PAT) can circumvent the photon scattering problem in optical imaging and achieve high-contrast and high-resolution imaging at centimeter depths. However, after two decades of development, the long-standing question of the imaging depth limit of PAT in biological tissues remains unclear. Here we propose a numerical framework for evaluating the imaging depth limit of PAT in the visible and the first near-infrared windows. The established framework simulates the physical process of PAT and consists of seven modules, including tissue modelling, photon transportation, photon to ultrasound conversion, sound field propagation, signal reception, image reconstruction, and imaging depth evaluation. The framework can simulate the imaging depth limits in general tissues, such as the human breast, the human abdomen-liver tissues, and the rodent whole body and provide accurate evaluation results. The study elucidates the fundamental imaging depth limit of PAT in biological tissues and can provide useful guidance for practical experiments.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Anhui Provincial Department of Science and Technology

Natural Science Foundation of Anhui Province

University of Science and Technology of China

Institute of Artificial Intelligence at Hefei Comprehensive National Science Center

Publisher

Optica Publishing Group

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