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Video and acoustic camera techniques for studying fish under ice: areview and comparison

机译:视频和声学相机技术在冰下研究鱼类:回顾与比较

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Researchers attempting to study the presence, abundance, size, and behavior of fish species in northern and arctic climates during winter face many challenges, including the presence of thick ice cover, snow cover, and, sometimes, extremely low temperatures. This paper describes and compares the use of video and acoustic cameras for determining fish presence and behavior in lakes, rivers, and streams with ice cover. Methods are provided for determining fish density and size, identifying species, and measuring swimming speed and successful applications of previous surveys of fish under the ice are described. These include drilling ice holes, selecting batteries and generators, deploying pan and tilt cameras, and using paired colored lasers to determine fish size and habitat associations. We also discuss use of infrared and white light to enhance image-capturing capabilities, deployment of digital recording systems and time-lapse techniques, and the use of imaging software. Data are presented from initial surveys with video and acoustic cameras in the Sagavanirktok River Delta, Alaska, during late winter 2004. These surveys represent the first known successful application of a dual-frequency identification sonar (DIDSON super(TM)) acoustic camera under the ice that achieved fish detection and sizing at camera ranges up to 16 m. Feasibility tests of video and acoustic cameras for determining fish size and density at various turbidity levels are also presented. Comparisons are made of the different techniques in terms of suitability for achieving various fisheries research objectives. This information is intended to assist researchers in choosing the equipment that best meets their study needs.
机译:试图研究冬季北部和北极气候中鱼类物种的存在,丰度,大小和行为的研究人员面临许多挑战,包括存在厚厚的冰盖,积雪和有时甚至极低的温度。本文介绍并比较了使用视频摄像机和声学摄像机确定在冰盖的湖泊,河流和溪流中鱼类的存在和行为的情况。提供了确定鱼的密度和大小,鉴定种类和测量游泳速度的方法,并介绍了先前在冰下进行的鱼类调查的成功应用。其中包括钻冰洞,选择电池和发电机,部署摇摄和俯仰摄像头,以及使用成对的彩色激光确定鱼的大小和栖息地关联。我们还将讨论使用红外和白光增强图像捕获功能,数字记录系统和延时技术的部署以及成像软件的使用。数据来自2004年冬末在阿拉斯加Sagavanirktok三角洲的视频和声像机的初步调查。这些调查代表了双频识别声纳(DIDSON super(TM))声像机首次成功应用。在照相机处实现鱼的检测和定型的冰块最大可达16 m。还介绍了视频和声像机在各种浊度水平下确定鱼的大小和密度的可行性测试。在实现各种渔业研究目标的适用性方面对不同技术进行了比较。该信息旨在帮助研究人员选择最能满足其研究需求的设备。

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