Honeycomb effect elimination in differential phase fiber-bundle-based endoscopy

Author:

Wang Jingyi,Chen Cheng1ORCID,You Wu,Jiao Yuheng,Liu Xiaojun,Jiang Xiangqian2,Lu Wenlong3

Affiliation:

1. Chinese Academy of Sciences

2. University of Huddersfield

3. Shenzhen-HUST Research Institute

Abstract

Fiber-bundle-based endoscopy, with its ultrathin probe and micrometer-level resolution, has become a widely adopted imaging modality for in vivo imaging. However, the fiber bundles introduce a significant honeycomb effect, primarily due to the multi-core structure and crosstalk of adjacent fiber cores, which superposes the honeycomb pattern image on the original image. To tackle this issue, we propose an iterative-free spatial pixel shifting (SPS) algorithm, designed to suppress the honeycomb effect and enhance real-time imaging performance. The process involves the creation of three additional sub-images by shifting the original image by one pixel at 0, 45, and 90 degree angles. These four sub-images are then used to compute differential maps in the x and y directions. By performing spiral integration on these differential maps, we reconstruct a honeycomb-free image with improved details. Our simulations and experimental results, conducted on a self-built fiber bundle-based endoscopy system, demonstrate the effectiveness of the SPS algorithm. SPS significantly improves the image quality of reflective objects and unlabeled transparent scattered objects, laying a solid foundation for biomedical endoscopic applications.

Funder

Shenzen Municipal Technical Project

Key Research and development Program of Hubei Province

National Natural Science Foundation of China

National Key Research and Development Program Strategic Cooperation Key Special Project

Innovation Project of Optics Valley Laboratory

Publisher

Optica Publishing Group

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