Texture-based wound tissue classification using multi-SVM / Muhammad Hazim Jaafar Sidik

The current practical method of wound assessment requires the clinicians to measure and classify the wound areas based on visual evaluation by tracing the transparent papers to estimate. Texture based wound classification model is a prototype to classify slough, granular and necrosis wound tissues b...

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Main Author: Muhammad Hazim Jaafar Sidik
Format: Thesis
Language:English
Published: 2017
Online Access:http://ir.uitm.edu.my/id/eprint/18183/2/TD_MUHAMMAD%20HAZIM%20JAAFAR%20SIDIK%20CS%2017_5.pdf
http://ir.uitm.edu.my/id/eprint/18183/
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spelling my.uitm.ir.181832019-02-27T08:14:06Z http://ir.uitm.edu.my/id/eprint/18183/ Texture-based wound tissue classification using multi-SVM / Muhammad Hazim Jaafar Sidik Muhammad Hazim Jaafar Sidik The current practical method of wound assessment requires the clinicians to measure and classify the wound areas based on visual evaluation by tracing the transparent papers to estimate. Texture based wound classification model is a prototype to classify slough, granular and necrosis wound tissues based on the texture properties. However, this is difficult to identify and classify the wound tissues due to their inhomogeneity intensities between the wound tissues. The other problem is the different anatomical of the wound tissues for each images. There are four phases conducted which are data collection, pre-processing (i.e image segmentation), processing (i.e texture extraction and wound classification) and post processing (i.e test and evaluation). The data has been collected from the Medetec Wound Database and Dermatology Image Library. The wound image acquired is segmented by using a free segmentation tool. The segmented wound image is then converted from RGB plane to HSV plane. Then, the results of V plane is used for feature extraction. A set of texture feature describing slough, granular and necrotic tissues in the segmented image are extracted by using the texture properties of mean, standard deviation and smoothness. Finally, multi Support Vector Machine (SVM) is applied to classify all the three tissues of wound tissue images. The experimented results are evaluated by ground truth images labeled by the clinical expert. The multi SVM is identified as promising method with the accuracy rate of 87.5%, 35.16% and 81.82% for slough, granular and necrosis tissues, respectively. Results proved that it significantly works on wound image classification. Hence, this prototype will significantly benefit to the users who are involved in medical areas such as researchers, surgeons and clinicians. 2017 Thesis NonPeerReviewed text en http://ir.uitm.edu.my/id/eprint/18183/2/TD_MUHAMMAD%20HAZIM%20JAAFAR%20SIDIK%20CS%2017_5.pdf Muhammad Hazim Jaafar Sidik (2017) Texture-based wound tissue classification using multi-SVM / Muhammad Hazim Jaafar Sidik. Degree thesis, Universiti Teknologi MARA.
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
description The current practical method of wound assessment requires the clinicians to measure and classify the wound areas based on visual evaluation by tracing the transparent papers to estimate. Texture based wound classification model is a prototype to classify slough, granular and necrosis wound tissues based on the texture properties. However, this is difficult to identify and classify the wound tissues due to their inhomogeneity intensities between the wound tissues. The other problem is the different anatomical of the wound tissues for each images. There are four phases conducted which are data collection, pre-processing (i.e image segmentation), processing (i.e texture extraction and wound classification) and post processing (i.e test and evaluation). The data has been collected from the Medetec Wound Database and Dermatology Image Library. The wound image acquired is segmented by using a free segmentation tool. The segmented wound image is then converted from RGB plane to HSV plane. Then, the results of V plane is used for feature extraction. A set of texture feature describing slough, granular and necrotic tissues in the segmented image are extracted by using the texture properties of mean, standard deviation and smoothness. Finally, multi Support Vector Machine (SVM) is applied to classify all the three tissues of wound tissue images. The experimented results are evaluated by ground truth images labeled by the clinical expert. The multi SVM is identified as promising method with the accuracy rate of 87.5%, 35.16% and 81.82% for slough, granular and necrosis tissues, respectively. Results proved that it significantly works on wound image classification. Hence, this prototype will significantly benefit to the users who are involved in medical areas such as researchers, surgeons and clinicians.
format Thesis
author Muhammad Hazim Jaafar Sidik
spellingShingle Muhammad Hazim Jaafar Sidik
Texture-based wound tissue classification using multi-SVM / Muhammad Hazim Jaafar Sidik
author_facet Muhammad Hazim Jaafar Sidik
author_sort Muhammad Hazim Jaafar Sidik
title Texture-based wound tissue classification using multi-SVM / Muhammad Hazim Jaafar Sidik
title_short Texture-based wound tissue classification using multi-SVM / Muhammad Hazim Jaafar Sidik
title_full Texture-based wound tissue classification using multi-SVM / Muhammad Hazim Jaafar Sidik
title_fullStr Texture-based wound tissue classification using multi-SVM / Muhammad Hazim Jaafar Sidik
title_full_unstemmed Texture-based wound tissue classification using multi-SVM / Muhammad Hazim Jaafar Sidik
title_sort texture-based wound tissue classification using multi-svm / muhammad hazim jaafar sidik
publishDate 2017
url http://ir.uitm.edu.my/id/eprint/18183/2/TD_MUHAMMAD%20HAZIM%20JAAFAR%20SIDIK%20CS%2017_5.pdf
http://ir.uitm.edu.my/id/eprint/18183/
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score 13.211869