Fish Eye Imaging as Water Pollution Bioindicator using Photoacoustic Tomography System

An imaging study of Mujair (Oreochromis mossambicus) fish eye with sodium hypochlorite (NaOCl) treatment has been carried out using a photoacoustic tomography device based on a diode laser and a condenser microphone. Arduino IDE controls the system via LabVIEW software and laptop. Condenser micropho...

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Main Authors: Prasetya, Eta W., Tasmara, Fikhri A., Mitrayana, Mitrayana
Format: Conference or Workshop Item
Language:English
Published: 2023
Subjects:
Online Access:https://repository.ugm.ac.id/281992/1/Prasetya_MIPA.pdf
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author Prasetya, Eta W.
Tasmara, Fikhri A.
Mitrayana, Mitrayana
author_facet Prasetya, Eta W.
Tasmara, Fikhri A.
Mitrayana, Mitrayana
author_sort Prasetya, Eta W.
collection UGM
description An imaging study of Mujair (Oreochromis mossambicus) fish eye with sodium hypochlorite (NaOCl) treatment has been carried out using a photoacoustic tomography device based on a diode laser and a condenser microphone. Arduino IDE controls the system via LabVIEW software and laptop. Condenser microphone characterization and slide scanning using stepper motors are accurate and can be used to collect research data. The results of the optimization system settings for fisheye imaging are 16 kHz, with a 50 percent duty cycle. Changes in sample shape and burning occur at duty cycles above 60 percent. The results of the average sound intensity of the NaOCl immersion time decrease. The photoacoustic tomography system can image samples and significant color differences between concentration and immersion time which can detect patterns and show differences in sound intensity. The difference between the color of the fish's eye and the sound intensity shows the degree of water pollution in a given environment.
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spelling oai:generic.eprints.org:2819922023-11-16T00:30:30Z https://repository.ugm.ac.id/281992/ Fish Eye Imaging as Water Pollution Bioindicator using Photoacoustic Tomography System Prasetya, Eta W. Tasmara, Fikhri A. Mitrayana, Mitrayana Mathematics and Applied Sciences An imaging study of Mujair (Oreochromis mossambicus) fish eye with sodium hypochlorite (NaOCl) treatment has been carried out using a photoacoustic tomography device based on a diode laser and a condenser microphone. Arduino IDE controls the system via LabVIEW software and laptop. Condenser microphone characterization and slide scanning using stepper motors are accurate and can be used to collect research data. The results of the optimization system settings for fisheye imaging are 16 kHz, with a 50 percent duty cycle. Changes in sample shape and burning occur at duty cycles above 60 percent. The results of the average sound intensity of the NaOCl immersion time decrease. The photoacoustic tomography system can image samples and significant color differences between concentration and immersion time which can detect patterns and show differences in sound intensity. The difference between the color of the fish's eye and the sound intensity shows the degree of water pollution in a given environment. 2023-05-31 Conference or Workshop Item PeerReviewed application/pdf en https://repository.ugm.ac.id/281992/1/Prasetya_MIPA.pdf Prasetya, Eta W. and Tasmara, Fikhri A. and Mitrayana, Mitrayana (2023) Fish Eye Imaging as Water Pollution Bioindicator using Photoacoustic Tomography System. In: 8th International Conference on Science and Technology, ICST 2022, 7-8 September 2022, Yogyakarta, Indonesia. https://ieeexplore.ieee.org/document/10136266
spellingShingle Mathematics and Applied Sciences
Prasetya, Eta W.
Tasmara, Fikhri A.
Mitrayana, Mitrayana
Fish Eye Imaging as Water Pollution Bioindicator using Photoacoustic Tomography System
title Fish Eye Imaging as Water Pollution Bioindicator using Photoacoustic Tomography System
title_full Fish Eye Imaging as Water Pollution Bioindicator using Photoacoustic Tomography System
title_fullStr Fish Eye Imaging as Water Pollution Bioindicator using Photoacoustic Tomography System
title_full_unstemmed Fish Eye Imaging as Water Pollution Bioindicator using Photoacoustic Tomography System
title_short Fish Eye Imaging as Water Pollution Bioindicator using Photoacoustic Tomography System
title_sort fish eye imaging as water pollution bioindicator using photoacoustic tomography system
topic Mathematics and Applied Sciences
url https://repository.ugm.ac.id/281992/1/Prasetya_MIPA.pdf
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