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首页> 外文期刊>The Science of the Total Environment >Using a new high-throughput video-tracking platform to assess behavioural changes in Daphnia magna exposed to neuro-active drugs
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Using a new high-throughput video-tracking platform to assess behavioural changes in Daphnia magna exposed to neuro-active drugs

机译:使用新的高通量视频跟踪平台评估暴露于神经活性药物的大型蚤中的行为变化

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Recent advances in imaging allow to monitor in real time the behaviour of individuals under a given stress. Light is a common stressor that alters the behaviour of fish larvae and many aquatic invertebrate species. The water flea Daphnia magna exhibits a vertical negative phototaxis, swimming against light trying to avoid fish predation. The aim of this study was to develop a high-throughput image analysis system to study changes in the vertical negative phototaxis of D. magna first reproductive adult females exposed to 0.1 and 1 mu g/L of four neuro-active drugs: diazepam, fluoxetine, propranolol and carbamazepine. Experiments were conducted using a custom designed experimental chamber containing four independent arenas and infrared illumination. The apical-located visible light and the GigE camera located in front of the arenas were controlled by the Ethovision XT 11.5 sofware (Noldus Information Technology, Leesburg, VA). Total distance moved, time spent per zone (bottom vs upper zones) and distance among individuals were analyzed in dark and light conditions, and the effect of different intensities of the apical-located visible light was also investigated. Results indicated that light intensity increased the locomotor activity and low light intensities allowed to better discriminate individual responses to the studied drugs. The four tested drugs decreased the response of exposed organisms to light: individuals moved less, were closer to the bottom and at low light intensities were closer each other. At high light intensities, however, exposed individuals were less aggregated. Propranolol, carbamazepine and fluoxetine induced the most severe behavioural effects. The tested drugs at environmental relevant concentrations altered locomotor activity, geotaxis, phototaxis and aggregation in D. magna individuals in the lab. Therefore the new image analysis system presented here was proven to be sensitive and versatile enough to detect changes in diel vertical migration across light intensities and low concentration levels of neuro-active drugs. (C) 2019 Elsevier B.V. All rights reserved.
机译:成像技术的最新进展允许在给定压力下实时监视个体的行为。光是改变鱼幼体和许多水生无脊椎动物物种行为的常见应激源。跳蚤水蚤(Daphnia magna)表现出垂直的负趋光性​​,为了避开鱼类的捕食而在光线下游泳。这项研究的目的是开发一种高通量图像分析系统,以研究暴露于0.1和1μg / L四种神经活性药物(地西epa,氟西汀)的D. magna第一代成年雌性的垂直负趋光性的变化。 ,心得安和卡马西平。使用定制的实验室进行实验,该实验室包含四个独立的舞台和红外照明。位于顶端的可见光和位于竞技场前面的GigE摄像机由Ethovision XT 11.5软件(Noldus Information Technology,Leesburg,VA)控制。在黑暗和明亮的条件下,分析了总移动距离,每个区域所花费的时间(底部区域与上部区域)以及个体之间的距离,并且还研究了位于顶端的可见光的不同强度的影响。结果表明,光强度增加了运动活性,而低光强度则可以更好地区分个体对研究药物的反应。四种测试药物降低了暴露的生物对光的反应:个体移动较少,靠近底部,而在低光照强度下彼此靠近。然而,在高光强度下,暴露的个体聚集较少。普萘洛尔,卡马西平和氟西汀引起最严重的行为影响。在实验室中,与环境有关的浓度下测试的药物改变了大果蝇(D. magna)个体的自发活动,趋轴性,趋光性和聚集。因此,事实证明,这里介绍的新图像分析系统灵敏且用途广泛,足以检测光强度和低浓度神经活性药物在diel垂直迁移中的变化。 (C)2019 Elsevier B.V.保留所有权利。

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