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Method for parametric imaging of attenuation by intravascular optical coherence tomography
- Source :
- Biomed Opt Express
- Publication Year :
- 2021
- Publisher :
- Optical Society of America, 2021.
-
Abstract
- Catheter-based intravascular optical coherence tomography (IVOCT) is a powerful imaging modality for visualization of atherosclerosis with high resolution. Quantitative characterization of various tissue types by attenuation coefficient (AC) extraction has been proven to be a potentially significant application of OCT attenuation imaging. However, existing methods for AC extraction from OCT suffer from the challenge of variability in complex tissue types in IVOCT pullback data such as healthy vessel wall, mixed atherosclerotic plaques, plaques with a single component and stent struts, etc. This challenge leads to the ineffectiveness in the tissue differentiation by AC representation based on single scattering model of OCT signal. In this paper, we propose a novel method based on multiple scattering model for parametric imaging of optical attenuation by AC retrieval from IVOCT images conventionally acquired during cardiac catheterization. The OCT signal characterized by the AC is physically modeled by Monte Carlo simulation. Then, the pixel-wise AC retrieval is achieved by iteratively minimizing an error function regarding the modeled and measured backscattered signal. This method provides a general scheme for AC extraction from IVOCT without the premise of complete attenuation of the incident light through the imaging depths. Results of computer-simulated and clinical images demonstrate that the method can avoid overestimation at the end of the depth profile in comparison with the approaches based on the depth-resolved (DR) model. The energy error depth and structural similarity are improved by about 30% and 10% respectively compared with DR. It provides a useful way to differentiate and characterize arterial tissue types in IVOCT images.
- Subjects :
- 0303 health sciences
medicine.diagnostic_test
Computer science
Attenuation
Monte Carlo method
01 natural sciences
Signal
Atomic and Molecular Physics, and Optics
Article
010309 optics
03 medical and health sciences
Error function
Optical coherence tomography
Attenuation coefficient
0103 physical sciences
Medical imaging
medicine
Energy (signal processing)
030304 developmental biology
Biotechnology
Biomedical engineering
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Biomed Opt Express
- Accession number :
- edsair.doi.dedup.....592a4e5f6b51c3eb587f40c7777fee5e