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首页> 外文期刊>Biotechnology Progress >Rapid Algal Culture Diagnostics for Open Ponds Using Multispectral Image Analysis
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Rapid Algal Culture Diagnostics for Open Ponds Using Multispectral Image Analysis

机译:使用多光谱图像分析的开放式池塘快速藻类培养诊断

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This article presents a multispectral image analysis approach for probing the spectral backscattered irradiance from algal cultures. It was demonstrated how this spectral information can be used to measure algal biomass concentration, detect invasive species, and monitor culture health in real time. To accomplish this, a conventional RGB camera was used as a three band photodetector for imaging cultures of the green alga Chlorella sp. and the cyanobacterium Anabaena variabilis. A novel floating reference platform was placed in the culture, which enhanced the sensitivity of image color intensity to biomass concentration. Correlations were generated between the RGB color vector of culture images and the biomass concentrations for monocultures of each strain. These correlations predicted the biomass concentrations of independently prepared cultures with average errors of 22 and 14%, respectively. Moreover, the difference in spectral signatures between the two strains was exploited to detect the invasion of Chlorella sp. cultures by A. variabilis. Invasion was successfully detected for A. variabilis to Chlorella sp. mass ratios as small as 0.08. Finally, a method was presented for using multispectral imaging to detect thermal stress in A. variabilis. These methods can be extended to field applications to provide delay free process control feedback for efficient operation of large scale algae cultivation systems.
机译:本文提出了一种用于探测藻类培养物的光谱反向散射辐照度的多光谱图像分析方法。演示了如何将此光谱信息用于测量藻类生物质浓度,检测入侵物种并实时监控培养健康。为此,将传统的RGB相机用作三波段光电探测器,对绿藻小球藻的培养物进行成像。和蓝藻鱼腥藻。在培养物中放置了一个新型的浮动参考平台,该平台提高了图像颜色强度对生物质浓度的敏感性。在培养图像的RGB颜色向量与每种菌株的单培养物生物量浓度之间产生了相关性。这些相关性预测独立制备的培养物的生物量浓度,平均误差分别为22%和14%。此外,利用两个菌株之间的光谱特征差异来检测小球藻的入侵。变种的文化。已成功检测到变异小曲霉入侵小球藻。质量比小至0.08。最后,提出了一种使用多光谱成像检测变异果曲霉热应力的方法。这些方法可以扩展到现场应用,以提供无延迟的过程控制反馈,以有效地运行大型藻类培养系统。

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