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评估成像-在流系统(FlowCAM)用于系统压载水管理。

Assessment of imaging-in-flow system (FlowCAM) for systematic ballast water management.

机构信息

University of Cadiz, Environmental Technologies Department, Faculty of Sea and Environmental Sciences, Av. República Saharaui, 11510 Puerto Real, Cádiz, Spain.

Royal Netherlands Institute for Sea Research, NIOZ, Department of Biological Oceanography, P.O. Box 59, NL-1790 AB Den Burg, Texel, The Netherlands.

出版信息

Sci Total Environ. 2017 Dec 15;603-604:550-561. doi: 10.1016/j.scitotenv.2017.06.070. Epub 2017 Jun 20.

Abstract

Assessing the disinfection of ballast water and its compliance with international standards requires determining the size, viability, and concentration of planktonic organisms. The FlowCAM (Flow Cytometer and Microscope) is an Imaging Flow Cytometry designed to obtain the particle concentration, images, and quantitative morphologic information. The objective in this paper is to establish the basis for transforming the FlowCAM from being a laboratory analyzer into a tool for systematic monitoring of ballast water. The capacity of the FlowCAM was evaluated by analyzing artificial microbeads, phytoplankton monocultures, and real seawater samples. Microbead analyses reported high accuracy and precision in size and concentration measurements. Monoculture analyses showed the effect of disinfection treatments in cell appearance and growth. Low concentration and heterogeneity of particles in real seawater analyses require the comprehensive observation of images by experts. Additionally, some physical characteristics of the device must be improved. The optimization of device configuration enables the quick transferring of files and information between parties involved in ballast water management. FlowCAM may become a feasible technology for this after the device and protocols are adapted.

摘要

评估压载水的消毒情况及其是否符合国际标准,需要确定浮游生物的大小、活力和浓度。FlowCAM(流式细胞仪和显微镜)是一种成像流式细胞仪,旨在获取颗粒浓度、图像和定量形态信息。本文的目的是为将 FlowCAM 从实验室分析仪器转变为压载水系统监测工具奠定基础。通过分析人工微珠、浮游植物单培养物和实际海水样本来评估 FlowCAM 的性能。微珠分析报告在尺寸和浓度测量方面具有高精度和高重现性。单培养物分析显示了消毒处理对细胞外观和生长的影响。实际海水中颗粒浓度低且存在异质性,需要专家对图像进行全面观察。此外,还需要改进设备的一些物理特性。优化设备配置可以使参与压载水管理的各方之间快速传输文件和信息。在设备和协议得到调整后,FlowCAM 可能成为一种可行的技术。

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