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In-situ holography microscopy of plankton and particles over the continental shelf of Senegal

机译:塞内加尔大陆架上浮游生物和颗粒的原位全息显微镜

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We present the first results obtained by a newly developed submersible digital holography microscope (DHM), Holoflow@Sea, to enable continuous in-situ monitoring of ocean or fresh water bodies in a less intrusive manner. The microscope features an off-axis configuration with reduced-coherence illumination. The optics is designed to image plankton and particles in the size range 2 μm-200μm within a water volume of 1 mm × 1 mm × 2 mm. The prototype was successfully deployed for the first time over the continental shelf of Senegal during a fisheries survey carried out in March 2013. The objective was to combine several laboratory techniques used for plankton and particle identification (high-performance liquid chromatography, flow cytometry and optical microscopy) on discrete collected samples with DHM images taken in situ at locations with different environmental conditions. Hologram data were acquired inside an upwelling cell, i.e., new water, and along the coast, i.e., old water, as well as off the upwelling cell at the continental shelf border. Preliminary results of holographic reconstruction are encouraging, with the distinctive morphology of some phytoplankton species allowing easy identification to genera level. Challenges are recognised with the identification of small spheroid organisms. Analyses are underway to allow comparison with traditional methods of plankton identification and evaluate the benefit of additional in-situ observations obtained by holography microscopy. The preliminary results already demonstrate the potential of DHM for in-situ studies of plankton and particles.
机译:我们介绍了最新开发的潜水数字全息显微镜(DHM)Holoflow @ Sea所获得的第一批结果,从而能够以较少干扰的方式对海洋或淡水体进行连续原位监测。该显微镜具有离轴配置,并具有相干照明降低的特点。该光学器件设计用于在1毫米×1毫米×2毫米的水量中对2μm至200μm尺寸范围内的浮游生物和颗粒成像。在2013年3月进行的一次渔业调查中,该原型首次成功部署在塞内加尔大陆架上。目标是结合用于浮游生物和颗粒识别的多种实验室技术(高效液相色谱,流式细胞仪和光学显微镜)在不连续收集的样品上,并在不同环境条件下就地采集DHM图像。全息图数据是在上升流单元内(即新水)和沿海沿岸(即旧水)以及大陆架边界处的上升流单元外采集的。全息重建的初步结果令人鼓舞,一些浮游植物物种的独特形态使它们易于鉴定到属水平。识别小型球状生物体是一项挑战。目前正在进行分析,以便与传统的浮游生物识别方法进行比较,并评估通过全息显微镜获得的其他原位观察的好处。初步结果已经证明DHM在浮游生物和颗粒原位研究中的潜力。

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