Photoacoustic Tensile Imaging
Daohuai Jiang, Xuanxuan Ye, Hengrong Lan, Xianzeng Zhang, Fei Gao

TL;DR
This paper introduces photoacoustic tensile imaging (PATI), a novel method that uses nonlinear PA responses to quantitatively measure tensile stress in biological tissues, expanding PA imaging capabilities.
Contribution
The study presents a new PA imaging modality that enables quantitative tensile stress assessment using dual-pulse laser excitation and nonlinear PA signals.
Findings
Strong correlation between nonlinear PA signal and tensile force in phantom experiments
Feasibility demonstrated for tensile force monitoring in biomedical applications
Potential for vascular pressure monitoring using PATI
Abstract
Photoacoustic (PA) imaging combines the high optical absorption contrast of optical imaging with the deep tissue penetration of ultrasound detection, offering great potential for functional imaging and disease diagnosis. However, current PA imaging methods mainly explore optical absorption properties of biological tissue. To the best of our knowledge, tensile measurement based on PA effect is still an untapped area to be explored. In this work, we propose photoacoustic tensile imaging (PATI), a new PA imaging modality enabling quantitative assessment of tensile stress in biological samples. PATI exploits the nonlinear PA response induced by dual-pulse laser excitation to establish a mapping between the applied tension and the increment of the nonlinear PA signal. By varying the temporal delay between the heating and detecting laser pulses, the relationship between tensile force and…
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Taxonomy
TopicsPhotoacoustic and Ultrasonic Imaging · Thermography and Photoacoustic Techniques · Ultrasonics and Acoustic Wave Propagation
