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Data Extraction from Underwater Holograms of Marine Organisms

机译:来自海洋生物的水下全息图的数据提取

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A digital holographic camera (eHoloCam) has been developed by us for in situ underwater studies of the distribution and dynamics of plankton and other marine organisms and particles. The eHoloCam uses a frequency-doubled Nd-YAG pulsed laser to freeze-frame rapidly moving particles and a CMOS imaging sensor for high-resolution image capture. Digital holograms are recorded at rates from 5Hz to 25Hz as holographic videos over a period of several hours. Data is stored in the camera on an embedded computer. eHoloCam is capable of recording all organisms and particles located in a water volume of 36.8cm{sup}3 in a single hologram frame. The recorded holographic videos may subsequently be recreated numerically, using a variety of reconstruction algorithms, at a desired image plane. The vast amounts of data stored in holographic videos presents a major challenge for the automation of image extraction, identification of species and hence analysis of the holograms. In this paper, we describe some of the algorithms we use to optimise hologram reconstruction and, subsequently, image quality. We discuss the problems of automating the data extraction, the implementation of auto-focus methods and the definition of regions of interest in the eholovideo reconstruction procedures. In covering each of these and their amalgamation into a single algorithm, we will describe a complete image auto-extraction algorithm capable of scanning eholovideos and generating a directory of extracted, focussed bitmap-images. We go on to discuss possible analysis techniques that could be applied to resulting images in order to aid the extraction of particle information such as particles-per-volume and particle size ranges, and finally discuss the future implementation of particle auto-recognition to perform species-specific analysis of eholovideos.
机译:我们已经开发了一种数字全息摄像头(EHOLOMAM),我们已经开发出对浮游生物和其他海洋生物和颗粒的分布和动态的原位水下研究。 EHOLOMAM使用频率加倍的ND-YAG脉冲激光器来冷冻框架快速移动的颗粒和用于高分辨率图像捕获的CMOS成像传感器。数字全息图以5Hz至25Hz的速度记录在几个小时内全息视频。数据存储在嵌入式计算机上的相机中。 EHOLOMAM能够在单个全息图框架中记录位于36.8cm {sup} 3的水体积中的所有生物和颗粒。随后可以使用各种重建算法在期望的图像平面下进行数字地重新创建记录的全息视频。存储在全息视频中的大量数据对于图像提取,物种鉴定以及全息图的分析来提出了一项重大挑战。在本文中,我们描述了我们用于优化全息图重建的一些算法,随后,图像质量。我们讨论了自动化数据提取的问题,实现了自动焦点方法的实施以及ELOHOVIDEO重建程序的兴趣区域的定义。在将这些和它们的融合中的每一个中覆盖成单个算法时,我们将描述一种能够扫描Ethended,并生成提取的聚焦位图图像的目录的完整图像自动提取算法。我们继续讨论可以应用于结果图像的可能的分析技术,以便帮助提取粒子信息,例如粒子尺寸范围,并且最后讨论粒子自动识别的未来实现以执行物种Ethific分析Eolovideos。

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