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A Changeable Lab-on-a-Chip Detector for Marine Nonindigenous Microorganisms in Ship’s Ballast Water

机译:船上压载水中海洋非本地微生物的可变芯片实验室探测器

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The spread and invasion of many nonindigenous species in the ship’s ballast water around the world has been a hazard and threat to ecology, economy, and human health. The rapid and accurate detection of marine invasive species in ship’s ballast water is essential. This article is aimed at analysing ballast water quality by means of a changeable microfluidic chip detector thus comply with the D-2 standard of ship’s ballast water management and sediment convention. The detection system was designed through the integration of microfluidic chip technology, the impedance pulse sensing and LED light induced chlorophyll fluorescence (LED-LICF) detection. This system can measure the number, size, shape, and volume of targeted microorganisms, and it can also determine the chlorophyll fluorescence intensity, which is an important factor in analysing the activity of phytoplankton. The targeted samples were Chlorella volutis , Dunaliella salina , Platymonas subcordiformis , Chrysophytes , Escherichia coli , and Enterococci . The whole detection or operation can be accomplished through online detection in a few minutes with using micron volume of the sample solution. The valid data outputs are simultaneously displayed in terms of both impedance pulse amplitudes and fluorescent intensity signals. The detection system is designed for multi-sizes real time detection through changing the microchannel sizes on the microfluidic chip. Because it can successfully detect the label-free microorganisms, the system can be applicable to in-situ detections with some modifications to the system.
机译:许多非本地物种在该船的压舱水中扩散和入侵,已经对生态,经济和人类健康构成危害和威胁。快速准确地检测船舶压舱水中的海洋入侵物种至关重要。本文旨在通过可变的微流控芯片检测器来分析压载水质量,从而使其符合船舶压载水管理和沉积物惯例的D-2标准。该检测系统是通过微流控芯片技术,阻抗脉冲传感和LED光诱导叶绿素荧光(LED-LICF)检测的集成而设计的。该系统可以测量目标微生物的数量,大小,形状和体积,还可以确定叶绿素荧光强度,这是分析浮游植物活性的重要因素。目标样本是小球藻,盐生杜氏藻,桔梗侧柏,金藻,大肠埃希菌和肠球菌。整个检测或操作可以通过使用微米体积的样品溶液在几分钟内进行在线检测来完成。有效数据输出同时根据阻抗脉冲幅度和荧光强度信号显示。该检测系统旨在通过更改微流控芯片上的微通道尺寸来进行多种尺寸的实时检测。因为它可以成功地检测出无标记微生物,所以该系统可以对系统进行一些修改,从而适用于原位检测。

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