The Identification of Parasite Babesia Form on Cow Blood by Using Active Contour Model

<p class="BasicParagraph">Babesia parasite is one of the parasites that infect the cow blood and it can cause death. Observation of blood data sample in the laboratory used a microscope equipped by optilab cameras. The form of microscopic observation of a blood must be supported by t...

Full description

Bibliographic Details
Main Authors: Eka Dwi Nurcahya, Andy Triyanto Pujo Raharjo
Format: Article
Language:Indonesian
Published: Universitas Sultan Agneg Tirtayasa 2017-10-01
Series:Volt: Jurnal Ilmiah Pendidikan Teknik Elektro
Subjects:
Online Access:http://jurnal.untirta.ac.id/index.php/VOLT/article/view/2136
_version_ 1818229088762986496
author Eka Dwi Nurcahya
Andy Triyanto Pujo Raharjo
author_facet Eka Dwi Nurcahya
Andy Triyanto Pujo Raharjo
author_sort Eka Dwi Nurcahya
collection DOAJ
description <p class="BasicParagraph">Babesia parasite is one of the parasites that infect the cow blood and it can cause death. Observation of blood data sample in the laboratory used a microscope equipped by optilab cameras. The form of microscopic observation of a blood must be supported by the skill of the observer to determine whether the blood is parasitic or not. This study aims to find the method of automatic search of parasite Babesia sp form by using the method of active contour model (ACM). Parasite in the blood is very likely to be detected by utilizing the science of image processing. One of the science image processing is Active Contour Model. Initial data in the form of image file was the result from the shoot using camera optilab and it had RGB color. The first data processing was done by doing the color conversion to be homogeneous and facilitated the Active Contour Model works. The preprocessing process invented the RGB-HSV-grayscale-binary/ BW conversion method. HSV was used to remove colors considered as noise. To reinforce the parasite object, the background was converted to grayscale, then the removed image of the noise color and the grayscale back-ground were converted to binary imagery. This research finds the method of Active Contour Model which can do maximum cropping on the binary image. In the grayscale image, there were still constraints with the edges of the contrast blood form with the background. The result of the implementation of Active Contour Model had accuracy 0.997, Sensitivity 0.99, Specificity 74%.</p>
first_indexed 2024-12-12T10:13:03Z
format Article
id doaj.art-b7b721e68a984e57ad76160a4c92d505
institution Directory Open Access Journal
issn 2528-5688
2528-5696
language Indonesian
last_indexed 2024-12-12T10:13:03Z
publishDate 2017-10-01
publisher Universitas Sultan Agneg Tirtayasa
record_format Article
series Volt: Jurnal Ilmiah Pendidikan Teknik Elektro
spelling doaj.art-b7b721e68a984e57ad76160a4c92d5052022-12-22T00:27:44ZindUniversitas Sultan Agneg TirtayasaVolt: Jurnal Ilmiah Pendidikan Teknik Elektro2528-56882528-56962017-10-012214915610.30870/volt.v2i2.21362194The Identification of Parasite Babesia Form on Cow Blood by Using Active Contour ModelEka Dwi Nurcahya0Andy Triyanto Pujo Raharjo1Universitas Muhammadiyah PonorogoUniversitas Muhammadiyah Ponorogo<p class="BasicParagraph">Babesia parasite is one of the parasites that infect the cow blood and it can cause death. Observation of blood data sample in the laboratory used a microscope equipped by optilab cameras. The form of microscopic observation of a blood must be supported by the skill of the observer to determine whether the blood is parasitic or not. This study aims to find the method of automatic search of parasite Babesia sp form by using the method of active contour model (ACM). Parasite in the blood is very likely to be detected by utilizing the science of image processing. One of the science image processing is Active Contour Model. Initial data in the form of image file was the result from the shoot using camera optilab and it had RGB color. The first data processing was done by doing the color conversion to be homogeneous and facilitated the Active Contour Model works. The preprocessing process invented the RGB-HSV-grayscale-binary/ BW conversion method. HSV was used to remove colors considered as noise. To reinforce the parasite object, the background was converted to grayscale, then the removed image of the noise color and the grayscale back-ground were converted to binary imagery. This research finds the method of Active Contour Model which can do maximum cropping on the binary image. In the grayscale image, there were still constraints with the edges of the contrast blood form with the background. The result of the implementation of Active Contour Model had accuracy 0.997, Sensitivity 0.99, Specificity 74%.</p>http://jurnal.untirta.ac.id/index.php/VOLT/article/view/2136acm, babesia, hsv, parasit, rgb
spellingShingle Eka Dwi Nurcahya
Andy Triyanto Pujo Raharjo
The Identification of Parasite Babesia Form on Cow Blood by Using Active Contour Model
Volt: Jurnal Ilmiah Pendidikan Teknik Elektro
acm, babesia, hsv, parasit, rgb
title The Identification of Parasite Babesia Form on Cow Blood by Using Active Contour Model
title_full The Identification of Parasite Babesia Form on Cow Blood by Using Active Contour Model
title_fullStr The Identification of Parasite Babesia Form on Cow Blood by Using Active Contour Model
title_full_unstemmed The Identification of Parasite Babesia Form on Cow Blood by Using Active Contour Model
title_short The Identification of Parasite Babesia Form on Cow Blood by Using Active Contour Model
title_sort identification of parasite babesia form on cow blood by using active contour model
topic acm, babesia, hsv, parasit, rgb
url http://jurnal.untirta.ac.id/index.php/VOLT/article/view/2136
work_keys_str_mv AT ekadwinurcahya theidentificationofparasitebabesiaformoncowbloodbyusingactivecontourmodel
AT andytriyantopujoraharjo theidentificationofparasitebabesiaformoncowbloodbyusingactivecontourmodel
AT ekadwinurcahya identificationofparasitebabesiaformoncowbloodbyusingactivecontourmodel
AT andytriyantopujoraharjo identificationofparasitebabesiaformoncowbloodbyusingactivecontourmodel