Fish Eye Imaging as Water Pollution Bioindicator using Photoacoustic Tomography System

Eta W. Prasetya, F. A. Tasmara, Mitrayana
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Abstract

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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光声层析成像系统中鱼眼成像作为水污染生物指标的研究
利用基于二极管激光和聚光镜传声器的光声层析成像装置,研究了次氯酸钠(NaOCl)对Mujair (Oreochromis mossambicus)鱼眼的成像效果。Arduino IDE通过LabVIEW软件和笔记本电脑控制系统。使用步进电机的电容麦克风表征和滑动扫描是准确的,可以用来收集研究数据。鱼眼成像的优化系统设置的结果是16千赫,占空比为50%。在占空比超过60%时,试样形状和燃烧发生变化。结果表明,NaOCl浸泡时间的平均声强减小。光声层析成像系统可以成像样品和浓度和浸泡时间之间的显着颜色差异,可以检测模式并显示声强差异。鱼眼睛的颜色和声音强度之间的差异表明了给定环境中水污染的程度。
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