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METHOD AND APPARATUS FOR HIGH-FIDELITY LENSLESS MULTIMODE FIBER-BASED PHOTOACOUSTIC ENDOMICROSCOPY

发明专利审中
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10权利要求 · 3 独立
§ Ⅰ

卷宗概要

发明人

Puxiang LAI; Tianting ZHONG; Shengfu CHENG; Chi Man WOO

IPC 分类

A61B 5/

CPC 分类

A61B5/95A61B5/742A61B2560/223

A method and implementing apparatus for high-fidelity lensless multimode fiber-based photoacoustic endomicroscopy. The method includes an improved nonconvex optimization method to achieve non-interferometric calibration of multimode optical fiber that is used for laser scanning imaging. Before imaging, the complex-valued transmission matrix is quickly reconstructed directly from the multimode fiber output intensity measurement without the need for a reference beam. During imaging, wavefront shaping technology is used to perform high-speed laser scanning at the end of the multimode fiber, which excites photoacoustic signals on tissues. The photoacoustic signals are detected in a non-focused manner by a high-sensitivity fiber-optic-ultrasonic-sensor outside the sample. The implementing apparatus includes a wavefront shaping module, a fiber imaging probe, and a photoacoustic signal acquisition and processing module.

原文(中文)

A method and implementing apparatus for high-fidelity lensless multimode fiber-based photoacoustic endomicroscopy. The method includes an improved nonconvex optimization method to achieve non-interferometric calibration of multimode optical fiber that is used for laser scanning imaging. Before imaging, the complex-valued transmission matrix is quickly reconstructed directly from the multimode fiber output intensity measurement without the need for a reference beam. During imaging, wavefront shaping technology is used to perform high-speed laser scanning at the end of the multimode fiber, which excites photoacoustic signals on tissues. The photoacoustic signals are detected in a non-focused manner by a high-sensitivity fiber-optic-ultrasonic-sensor outside the sample. The implementing apparatus includes a wavefront shaping module, a fiber imaging probe, and a photoacoustic signal acquisition and processing module.