地磁场影响下圆虾虎鱼(neogobius melanostomus pallas, 1814)的运动活动

Y. V. Karavansky, V. V. Zamorov, M. A. Shvandt
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引用次数: 0

摘要

介绍。鱼类的行为特征是其对外部刺激反应的重要表现。运动活动反映了特定因素对鱼类行为的影响及其在鱼类生活中所起的作用。其中研究最少的因素是地磁场波动及其对圆形虾虎鱼Neogobius melanostomus Pallas运动活动的影响,1814。的目标。本研究的目的是研究地磁场波动对黑海具有重要商业价值的底栖鱼群——圆形虾虎鱼Neogobius melanostomus Pallas的运动活动的影响。方法。鱼类材料是在敖德萨国立大学(ONU)进行的一项科学研究调查期间在敖德萨湾沿岸水域收集的,范围从北敖德萨角到Velikyi Fontan角。实验室调查是在敖德萨国立梅奇尼科夫大学水生生物和一般生态系的水族室内进行的。作为研究的结果,记录和分析了鱼类运动活动的每小时变化。在指定的观测期内,确定了地磁活动增加的时期,并将其与活动在正常范围内的时期进行了比较。采用了一种独创的“计算机视觉方法”来处理视觉数据和跟踪实验动物。结果。观测期间地磁活动的最大值为2022年2月3日的6 ~ 12 h,以及2022年2月4日和10日的15 ~ 21 h,为G1级一级磁暴。将这些时间间隔内的鱼类运动活动水平与地磁活动最少的日子(2022年2月8日、9日和15日)的活动水平进行比较,可以观察到磁暴期间个体运动活动减少了27%至42%。结论。在地磁活动增加到磁暴水平时,圆虾虎鱼运动活动的波动表明这种物种有能力感知磁场并对其特性的变化做出反应。具体而言,当kp指数值对应于一强度地磁风暴(G1)时,与地磁活动最小日的相同时间间隔内的活动相比,观察到鱼类运动活动减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MOVEMENT ACTIVITY OF ROUND GOBY (NEOGOBIUS MELANOSTOMUS PALLAS, 1814) UNDER THE INFLUENCE OF GEOMAGNETIC FIELDS
Introduction. Behavioral traits of fish are an important manifestation of their response to external stimuli. Locomotor activity reflects the influence of specific factors on fish behavior and the role they play in their lives. Among the least studied factors are fluctuations in the geomagnetic field and their impact on the locomotor activity of the round goby Neogobius melanostomus Pallas, 1814. Aim. The aim of this study was to investigate the influence of fluctuations in the geomagnetic field on the locomotor activity of the commercially important speciesof benthic ichthyofauna, the round goby Neogobius melanostomus Pallas, 1814, in the Black Sea. Methods. The ichthyological material was collected in the coastal waters of the Odesa Bay, ranging from Cape Northern Odesa to Cape Velikyi Fontan, during a scientific research survey conducted by the I.I. Mechnikov Odesa National University (ONU). Laboratory investigations were conducted in the aquarium room of the Aquatic Biology and General Ecology Department of the I.I. Mechnikov Odesa National University. Hourly changes in fish locomotor activity were recorded and analyzed as a result of the study. During the specified observation period, periods of increased geomagnetic activity were identified and compared to periods when this activity was within normal range. An original methodology called “Computer Vision Method” was employed for processing the visual data and tracking of the laboratory animals. Results. The maximum values of geomagnetic activity during the observation period, classified as a first intensity magnetic storm of class G1, were observed on February 3, 2022, from 6 to 12 hours, and on February 4 and 10, 2022, from 15 to 21 hours. When comparing the levels of fish locomotor activity during these time intervals with their activity during the time intervals on days with minimal geomagnetic activity (February 8, 9, and 15, 2022), a decrease in locomotor activity of individuals during magnetic storms of 27% to 42% can be observed. Conclusion. The fluctuations in locomotor activity of the round goby during increased geomagnetic activity up to the level of magnetic storms indicate the ability of this species to perceive magnetic fields and respond to changes in its properties. Specifically, when the Kp-index values corresponded to a first intensity geomagnetic storm (G1), a decrease in fish locomotor activity was observed compared to the activity during the same time intervals on days with minimal geomagnetic activity.
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