Specular Highlight Detection Based on Color Distribution for Endoscopic Images

Author:

Yu Baoxian,Chen Wanbing,Zhong Qinghua,Zhang Han

Abstract

Endoscopic imaging systems have been widely used in disease diagnosis and minimally invasive surgery. Practically, specular reflection (a.k.a. highlight) always exists in endoscopic images and significantly affects surgeons’ observation and judgment. Motivated by the fact that the values of the red channel in nonhighlight area of endoscopic images are higher than those of the green and blue ones, this paper proposes an adaptive specular highlight detection method for endoscopic images. Specifically, for each pixel, we design a criterion for specular highlight detection based on the ratio of the red channel to both the green and blue channels. With the designed criteria, we take advantage of image segmentation and then develop an adaptive threshold with respect to the differences between the red channel and the other ones of neighboring pixels. To validate the proposed method, we conduct experiments on clinical data and CVC-ClinicSpec open database. The experimental results demonstrate that the proposed method yields an averaged Precision, Accuracy, and F1-score rate of 88.76%, 99.60% and 72.56%, respectively, and outperforms the state-of-the-art approaches based on color distribution reported for endoscopic highlight detection.

Publisher

Frontiers Media SA

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy,Mathematical Physics,Materials Science (miscellaneous),Biophysics

Reference16 articles.

1. A global optimization method for specular highlight removal from a single image;Xia;IEEE Access,2019

2. Generic and real-time detection of specular reflections in images;Morgand,2014

3. Using color to separate reflection components;Shafer;Color Res Appl,1985

4. Real-time highlight removal using intensity ratio;Shen;Appl Optic,2013

5. Fast and high quality highlight removal from a single image;Suo;IEEE Trans Image Process,2016

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