首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Analyzing the Response Behavior of Lumbriculus variegatus (Oligochaeta: Lumbriculidae) to Different Concentrations of Copper Sulfate Based on Line Body Shape Detection and a Recurrent Self-Organizing Map
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Analyzing the Response Behavior of Lumbriculus variegatus (Oligochaeta: Lumbriculidae) to Different Concentrations of Copper Sulfate Based on Line Body Shape Detection and a Recurrent Self-Organizing Map

机译:基于线形检测和递归自组织图分析杂草对不同浓度硫酸铜的响应行为

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摘要

Point detection (e.g., the centroid of the body) of species has been conducted in numerous studies. However, line detection (i.e., the line body shape) of elongated species has rarely been investigated under stressful conditions. We analyzed the line movements of an Oligochaeta in response to treatments with a toxic chemical, copper sulfate, at low concentrations (0.01 mg/L and 0.1 mg/L). The automatic line-tracking system was devised to identify the movement of body segments (body length) and the movements of segments (i.e., the speed and angles between segments) were recorded before and after treatment. Total body length was shortened from 31.22 (±5.18) mm to 20.91 (±4.65) mm after the 0.1 mg/L treatment. The Shannon entropy index decreased from 0.44 (±0.1) to 0.28 (±0.08) after treatment. On the other hand, the body and movement segments did not significantly change after the 0.01 mg/L treatment. Sequential movements of test organisms were further analyzed with a recurrent self-organizing map (RSOM) to determine the pattern of time-series line movements. The RSOM made it feasible to classify sequential behaviors of indicator organisms and identify various continuous body movements under stressful conditions.
机译:在许多研究中已经进行了物种的点检测(例如,身体的质心)。然而,很少在压力条件下研究细长物种的线检测(即线体形状)。我们分析了在低浓度(0.01 mg / L和0.1 mg / L)下用有毒化学物质硫酸铜处理时,寡纲的线运动。设计了自动线跟踪系统以识别身体段的运动(身体长度),并且在治疗之前和之后记录段的运动(即段之间的速度和角度)。在0.1 mg / L处理后,总长度从31.22(±5.18)mm缩短到20.91(±4.65)mm。治疗后,香农熵指数从0.44(±0.1)降低至0.28(±0.08)。另一方面,在0.01 mg / L处理后,身体和运动节段没有明显变化。用循环自组织图(RSOM)进一步分析受试生物的顺序运动,以确定时间序列线运动的模式。通过RSOM,可以对指示生物的顺序行为进行分类,并在压力条件下识别各种连续的身体运动。

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