Photoacoustic viscoelasticity imaging of thin-cap fibroatheromas: Implications for detecting vulnerable plaques
Abstract
Viscoelasticity is a key mechanical property for assessing the vulnerability of atherosclerotic plaques. In this Letter, we propose photoacoustic viscoelasticity imaging (PAVEI) to provide morphological information on necrotic-core fibroatheromas together with correlative viscoelastic contrast. Gelatin–collagen mixtures with different concentrations were used to simulate fibroatheromas with distinct viscoelastic properties and to validate the sensitivity of PAVEI. Pilot experiments were further performed on ex vivo murine artery specimens from an apolipoprotein E-knockout mouse. Thin-cap fibroatheromas exhibited significantly greater photoacoustic time delays than other atherosclerotic lesions. These results demonstrate that PAVEI can provide valuable viscoelastic information for detecting vulnerable plaques and evaluating the risk of plaque rupture.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (7)
Guanghang Jin
School of Physics and Optoelectronic Engineering, Shandong University of Technology 1 , Zibo 255049,
Yaxuan Li
Ziwei He
Yantao Xu
Ruikang Yin
School of Physics and Optoelectronic Engineering, Shandong University of Technology 1 , Zibo 255049,
Zehua Yuan
School of Electronic Information Central South University 2 , Changsha 410083,
Yue Zhao