New technique towards operator independent kidney ultrasound scanning

Ultrasound imaging has been widely used as the primary screening of the kidney as it is non-invasive and affordable. Ultrasound can be used to measure the size and appearance of the kidneys and to detect tumors, congenital anomalies, swelling and blockage of urine flow. However, this scanning proced...

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Main Authors: Supriyanto, Eko, Wan M. Hafizah, Wan M. Hafizah, Tahir, Nurul A., Arooj, Adeela, Syed M. Nooh, Syed M. Nooh
Format: Article
Published: North Atlantic University Union 2012
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Online Access:http://eprints.utm.my/id/eprint/31092/
http://www.naun.org/main/NAUN/computers/17-740.pdf
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spelling my.utm.310922019-01-28T03:47:02Z http://eprints.utm.my/id/eprint/31092/ New technique towards operator independent kidney ultrasound scanning Supriyanto, Eko Wan M. Hafizah, Wan M. Hafizah Tahir, Nurul A. Arooj, Adeela Syed M. Nooh, Syed M. Nooh T Technology Ultrasound imaging has been widely used as the primary screening of the kidney as it is non-invasive and affordable. Ultrasound can be used to measure the size and appearance of the kidneys and to detect tumors, congenital anomalies, swelling and blockage of urine flow. However, this scanning procedure is a time taking method because of the ultrasound image is full of speckle noise. Thus, the user eventually notices that it is hard to detect the boundary of the kidney in the US image, even it’s done by the trained sonographers. In addition, human error might occur during the interpretation of ultrasound image by untrained sonographer, especially when taking measurement. Therefore, in order to reduce the dependability to the sonographers’ expertise, some image processing can be done which can automatically detect the centroid of human kidney. The software was developed using MATLAB consist of speckle noise reduction, Gaussian filter, texture filter and morphological operators which were used for image segmentation in order to extract important features. For the result, median filter has been chosen as speckle noise reduction techniques as it is faster and detect kidney centroid better compared to wiener filter, wavelet filter and speckle noise anistrophic diffusion (SRAD) filter. This software can achieve until 96.43% of accuracy in detecting the centroid. The detected centroid can be implemented in the existing ultrasound machine that will be used as segmentation tool to reduce human errors and time. North Atlantic University Union 2012 Article PeerReviewed Supriyanto, Eko and Wan M. Hafizah, Wan M. Hafizah and Tahir, Nurul A. and Arooj, Adeela and Syed M. Nooh, Syed M. Nooh (2012) New technique towards operator independent kidney ultrasound scanning. International Journal of Computers, 6 (1). pp. 73-82. ISSN 1998-4308 http://www.naun.org/main/NAUN/computers/17-740.pdf
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic T Technology
spellingShingle T Technology
Supriyanto, Eko
Wan M. Hafizah, Wan M. Hafizah
Tahir, Nurul A.
Arooj, Adeela
Syed M. Nooh, Syed M. Nooh
New technique towards operator independent kidney ultrasound scanning
description Ultrasound imaging has been widely used as the primary screening of the kidney as it is non-invasive and affordable. Ultrasound can be used to measure the size and appearance of the kidneys and to detect tumors, congenital anomalies, swelling and blockage of urine flow. However, this scanning procedure is a time taking method because of the ultrasound image is full of speckle noise. Thus, the user eventually notices that it is hard to detect the boundary of the kidney in the US image, even it’s done by the trained sonographers. In addition, human error might occur during the interpretation of ultrasound image by untrained sonographer, especially when taking measurement. Therefore, in order to reduce the dependability to the sonographers’ expertise, some image processing can be done which can automatically detect the centroid of human kidney. The software was developed using MATLAB consist of speckle noise reduction, Gaussian filter, texture filter and morphological operators which were used for image segmentation in order to extract important features. For the result, median filter has been chosen as speckle noise reduction techniques as it is faster and detect kidney centroid better compared to wiener filter, wavelet filter and speckle noise anistrophic diffusion (SRAD) filter. This software can achieve until 96.43% of accuracy in detecting the centroid. The detected centroid can be implemented in the existing ultrasound machine that will be used as segmentation tool to reduce human errors and time.
format Article
author Supriyanto, Eko
Wan M. Hafizah, Wan M. Hafizah
Tahir, Nurul A.
Arooj, Adeela
Syed M. Nooh, Syed M. Nooh
author_facet Supriyanto, Eko
Wan M. Hafizah, Wan M. Hafizah
Tahir, Nurul A.
Arooj, Adeela
Syed M. Nooh, Syed M. Nooh
author_sort Supriyanto, Eko
title New technique towards operator independent kidney ultrasound scanning
title_short New technique towards operator independent kidney ultrasound scanning
title_full New technique towards operator independent kidney ultrasound scanning
title_fullStr New technique towards operator independent kidney ultrasound scanning
title_full_unstemmed New technique towards operator independent kidney ultrasound scanning
title_sort new technique towards operator independent kidney ultrasound scanning
publisher North Atlantic University Union
publishDate 2012
url http://eprints.utm.my/id/eprint/31092/
http://www.naun.org/main/NAUN/computers/17-740.pdf
_version_ 1643648663725015040
score 13.211869