Polyp detection during colonoscopy using a regression-based convolutional neural network with a tracker
Publication in refereed journal

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摘要A computer-aided detection (CAD) tool for locating and detecting polyps can help reduce the chance of missing polyps during colonoscopy. Nevertheless, state-of-the-art algorithms were either computationally complex or suffered from low sensitivity and therefore unsuitable to be used in real clinical setting. In this paper, a novel regression-based Convolutional Neural Network (CNN) pipeline is presented for polyp detection during colonoscopy. The proposed pipeline was constructed in two parts: 1) to learn the spatial features of colorectal polyps, a fast object detection algorithm named ResYOLO was pre-trained with a large non-medical image database and further fine-tuned with colonoscopic images extracted from videos; and 2) temporal information was incorporated via a tracker named Efficient Convolution Operators (ECO) for refining the detection results given by ResYOLO. Evaluated on 17,574 frames extracted from 18 endoscopic videos of the AsuMayoDB, the proposed method was able to detect frames with polyps with a precision of 88.6%, recall of 71.6% and processing speed of 6.5 frames per second, i.e. the method can accurately locate polyps in more frames and at a faster speed compared to existing methods. In conclusion, the proposed method has great potential to be used to assist endoscopists in tracking polyps during colonoscopy.
出版社接受日期21.05.2018
著者Ruikai Zhang, Yali Zheng, Carmen C.Y. Poon, Dinggang Shen, James Y.W. Lau
期刊名稱Pattern Recognition
出版年份2018
月份11
卷號83
出版社Elsevier
頁次209 - 219
國際標準期刊號0031-3203
電子國際標準期刊號1873-5142
語言美式英語

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