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Using in-situ holographic microscopy for ocean particle characterization

机译:使用原位全息显微镜表征海洋颗粒

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Optical scattering in all but the clearest natural waters is dominated by the local particle dynamics. The link between the suspended particle field and the bulk scattering properties of natural waters is poorly known because adequate technology is lacking to fully characterize all the parameters of the particle field required to compute the bulk optical properties (especially for ephemeral bubbles and aggregates). Holography provides non-intrusive, non-destructive, high-resolution 3-D imaging of particles (including bubbles) in their natural environment at a resolution and sample volume size that no other instrument can currently achieve. The ability to optically section holograms (image planes) during reconstruction allows the extraction of all individual particle characteristics (at the same lateral resolution), their 3-D spatial distribution, and motion (in short pulsed serial holograms). As part of a USA NOPP project to commercialize an in-situ Digital Holographic Microscope (DHM), field data with a prototype in-situ DHM and several bench-top DHMs were collected in East Sound, WA, USA; an environment that had both zooplankton and phytoplankton thin layers and notable particle dynamics. Preliminary results from this study and a project overview will be presented.
机译:除了最清澈的天然水以外,所有其他地方的光学散射都由局部粒子动力学决定。悬浮粒子场与天然水的整体散射特性之间的联系鲜为人知,因为缺乏足够的技术来完全表征计算整体光学特性(尤其是短暂气泡和聚集体)所需的粒子场的所有参数。全息技术可在自然环境中对粒子(包括气泡)进行非侵入式,非破坏性的高分辨率3D成像,其分辨率和样品体积大小目前是其他仪器无法实现的。在重建过程中光学剖析全息图(图像平面)的能力允许提取所有单个粒子特征(以相同的横向分辨率),其3-D空间分布和运动(短脉冲序列全息图)。作为美国NOPP项目的一项原位数字全息显微镜(DHM)商业化项目的一部分,在美国华盛顿州East Sound收集了具有原位DHM和几个台式DHM的现场数据。具有浮游动物和浮游植物薄层且粒子动力学显着的环境。这项研究的初步结果和项目概述将被介绍。

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