Intravascular polarization-sensitive optical coherence tomography based on polarization mode delay

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作者
Yan Li
Sucbei Moon
Yuchen Jiang
Saijun Qiu
Zhongping Chen
机构
[1] University of California,Beckman Laser Institute
[2] Irvine,Department of Physics
[3] Kookmin University,Department of Biomedical Engineering
[4] University of California,The Cardiovascular Innovation and Research Center
[5] Irvine,undefined
[6] University of California,undefined
[7] Irvine,undefined
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Scientific Reports | / 12卷
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摘要
Intravascular polarization-sensitive optical coherence tomography (IV-PSOCT) provides depth-resolved tissue birefringence which can be used to evaluate the mechanical stability of a plaque. In our previous study, we reported a new strategy to construct polarization-sensitive optical coherence tomography in a microscope platform. Here, we demonstrated that this technology can be implemented in an endoscope platform, which has many clinical applications. A conventional intravascular OCT system can be modified for IV-PSOCT by introducing a 12-m polarization-maintaining fiber-based imaging probe. Its two polarization modes separately produce OCT images of polarization detection channels spatially distinguished by an image separation of 2.7 mm. We experimentally validated our IV-PSOCT with chicken tendon, chicken breast, and coronary artery as the image samples. We found that the birefringent properties can be successfully visualized by our IV-PSOCT.
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