Balci Beytullah Ahmet, Tonguç Güray, Arslan Muhammed Nurullah, Kurtoğlu İlker Zeki, Sari Tuba
Department of Aquaculture, Faculty of Fisheries, Akdeniz University, Antalya 07070, Türkiye.
Department of Management Information Systems, Faculty of Applied Sciences, Akdeniz University, Antalya 07070, Türkiye.
Animals (Basel). 2025 Mar 21;15(7):900. doi: 10.3390/ani15070900.
In this study, the effect of ammonia on the was investigated using non-invasive methods. Different concentrations (100, 200, and 400 mg·lt) of ammonium chloride (NHCl) were added to the experimental groups to simulate ammonia in aquaculture systems, and the movements of the fish were monitored, recorded, and analyzed using image processing techniques and statistical methods. For image processing operations, the optical flow Farneback object-tracking algorithm and necessary image development algorithms were implemented using Python 3.9.13 Programming language codes in the Visual Studio Code software 1.98.2 development environment. At low concentrations, it was observed that the fish made circular movements, while at high concentrations, their movements were restricted and concentrated in areas close to the water's surface. It was observed that with the increase in ammonia concentration, the movement distances of the fish decreased, and their movements became irregular. This shows that the is sensitive to ammonia concentrations and that these concentrations affect the behavior of the fish. These findings are significant for aquaculture conditions and water quality management of the endangered , which is protected from the threat of extinction.
在本研究中,使用非侵入性方法研究了氨对[此处原文缺失具体研究对象]的影响。向实验组添加不同浓度(100、200和400毫克·升)的氯化铵(NH₄Cl)以模拟水产养殖系统中的氨,并使用图像处理技术和统计方法监测、记录和分析鱼类的运动。对于图像处理操作,在Visual Studio Code软件1.98.2开发环境中使用Python 3.9.13编程语言代码实现了光流法尔内巴克目标跟踪算法和必要的图像开发算法。在低浓度下,观察到鱼做圆周运动,而在高浓度下,它们的运动受到限制并集中在靠近水面的区域。观察到随着氨浓度的增加,鱼的运动距离减小,并且它们的运动变得不规则。这表明[此处原文缺失具体研究对象]对氨浓度敏感,并且这些浓度会影响鱼的行为。这些发现对于濒危[此处原文缺失具体物种名称]的水产养殖条件和水质管理具有重要意义,该物种受到免于灭绝威胁的保护。