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Deep learning approach based on superpixel segmentation assisted labeling for automatic pressure ulcer diagnosis

A pressure ulcer is an injury of the skin and underlying tissues adjacent to a bony eminence. Patients who suffer from this disease may have difficulty accessing medical care. Recently, the COVID-19 pandemic has exacerbated this situation. Automatic diagnosis based on machine learning (ML) brings pr...

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Autores principales: Chang, Che Wei, Christian, Mesakh, Chang, Dun Hao, Lai, Feipei, Liu, Tom J., Chen, Yo Shen, Chen, Wei Jen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8853507/
https://www.ncbi.nlm.nih.gov/pubmed/35176101
http://dx.doi.org/10.1371/journal.pone.0264139
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author Chang, Che Wei
Christian, Mesakh
Chang, Dun Hao
Lai, Feipei
Liu, Tom J.
Chen, Yo Shen
Chen, Wei Jen
author_facet Chang, Che Wei
Christian, Mesakh
Chang, Dun Hao
Lai, Feipei
Liu, Tom J.
Chen, Yo Shen
Chen, Wei Jen
author_sort Chang, Che Wei
collection PubMed
description A pressure ulcer is an injury of the skin and underlying tissues adjacent to a bony eminence. Patients who suffer from this disease may have difficulty accessing medical care. Recently, the COVID-19 pandemic has exacerbated this situation. Automatic diagnosis based on machine learning (ML) brings promising solutions. Traditional ML requires complicated preprocessing steps for feature extraction. Its clinical applications are thus limited to particular datasets. Deep learning (DL), which extracts features from convolution layers, can embrace larger datasets that might be deliberately excluded in traditional algorithms. However, DL requires large sets of domain specific labeled data for training. Labeling various tissues of pressure ulcers is a challenge even for experienced plastic surgeons. We propose a superpixel-assisted, region-based method of labeling images for tissue classification. The boundary-based method is applied to create a dataset for wound and re-epithelialization (re-ep) segmentation. Five popular DL models (U-Net, DeeplabV3, PsPNet, FPN, and Mask R-CNN) with encoder (ResNet-101) were trained on the two datasets. A total of 2836 images of pressure ulcers were labeled for tissue classification, while 2893 images were labeled for wound and re-ep segmentation. All five models had satisfactory results. DeeplabV3 had the best performance on both tasks with a precision of 0.9915, recall of 0.9915 and accuracy of 0.9957 on the tissue classification; and a precision of 0.9888, recall of 0.9887 and accuracy of 0.9925 on the wound and re-ep segmentation task. Combining segmentation results with clinical data, our algorithm can detect the signs of wound healing, monitor the progress of healing, estimate the wound size, and suggest the need for surgical debridement.
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spelling pubmed-88535072022-02-18 Deep learning approach based on superpixel segmentation assisted labeling for automatic pressure ulcer diagnosis Chang, Che Wei Christian, Mesakh Chang, Dun Hao Lai, Feipei Liu, Tom J. Chen, Yo Shen Chen, Wei Jen PLoS One Research Article A pressure ulcer is an injury of the skin and underlying tissues adjacent to a bony eminence. Patients who suffer from this disease may have difficulty accessing medical care. Recently, the COVID-19 pandemic has exacerbated this situation. Automatic diagnosis based on machine learning (ML) brings promising solutions. Traditional ML requires complicated preprocessing steps for feature extraction. Its clinical applications are thus limited to particular datasets. Deep learning (DL), which extracts features from convolution layers, can embrace larger datasets that might be deliberately excluded in traditional algorithms. However, DL requires large sets of domain specific labeled data for training. Labeling various tissues of pressure ulcers is a challenge even for experienced plastic surgeons. We propose a superpixel-assisted, region-based method of labeling images for tissue classification. The boundary-based method is applied to create a dataset for wound and re-epithelialization (re-ep) segmentation. Five popular DL models (U-Net, DeeplabV3, PsPNet, FPN, and Mask R-CNN) with encoder (ResNet-101) were trained on the two datasets. A total of 2836 images of pressure ulcers were labeled for tissue classification, while 2893 images were labeled for wound and re-ep segmentation. All five models had satisfactory results. DeeplabV3 had the best performance on both tasks with a precision of 0.9915, recall of 0.9915 and accuracy of 0.9957 on the tissue classification; and a precision of 0.9888, recall of 0.9887 and accuracy of 0.9925 on the wound and re-ep segmentation task. Combining segmentation results with clinical data, our algorithm can detect the signs of wound healing, monitor the progress of healing, estimate the wound size, and suggest the need for surgical debridement. Public Library of Science 2022-02-17 /pmc/articles/PMC8853507/ /pubmed/35176101 http://dx.doi.org/10.1371/journal.pone.0264139 Text en © 2022 Chang et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Chang, Che Wei
Christian, Mesakh
Chang, Dun Hao
Lai, Feipei
Liu, Tom J.
Chen, Yo Shen
Chen, Wei Jen
Deep learning approach based on superpixel segmentation assisted labeling for automatic pressure ulcer diagnosis
title Deep learning approach based on superpixel segmentation assisted labeling for automatic pressure ulcer diagnosis
title_full Deep learning approach based on superpixel segmentation assisted labeling for automatic pressure ulcer diagnosis
title_fullStr Deep learning approach based on superpixel segmentation assisted labeling for automatic pressure ulcer diagnosis
title_full_unstemmed Deep learning approach based on superpixel segmentation assisted labeling for automatic pressure ulcer diagnosis
title_short Deep learning approach based on superpixel segmentation assisted labeling for automatic pressure ulcer diagnosis
title_sort deep learning approach based on superpixel segmentation assisted labeling for automatic pressure ulcer diagnosis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8853507/
https://www.ncbi.nlm.nih.gov/pubmed/35176101
http://dx.doi.org/10.1371/journal.pone.0264139
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