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Rapid Quantification of Microalgae Growth with Hyperspectral Camera and Vegetation Indices

机译:用高光谱相机和植被指数快速定量微藻生长

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摘要

Spectral cameras are traditionally used in remote sensing of microalgae, but increasingly also in laboratory-scale applications, to study and monitor algae biomass in cultures. Practical and cost-efficient protocols for collecting and analyzing hyperspectral data are currently needed. The purpose of this study was to test a commercial, easy-to-use hyperspectral camera to monitor the growth of different algae strains in liquid samples. Indices calculated from wavebands from transmission imaging were compared against algae abundance and wet biomass obtained from an electronic cell counter, chlorophyll a concentration, and chlorophyll fluorescence. A ratio of selected wavebands containing near-infrared and red turned out to be a powerful index because it was simple to calculate and interpret, yet it yielded strong correlations to abundances strain-specifically (0.85 < r < 0.96, p < 0.001). When all the indices formulated as A/B, A/(A + B) or (A − B)/(A + B), where A and B were wavebands of the spectral camera, were scrutinized, good correlations were found amongst them for biomass of each strain (0.66 < r < 0.98, p < 0.001). Comparison of near-infrared/red index to chlorophyll a concentration demonstrated that small-celled strains had higher chlorophyll absorbance compared to strains with larger cells. The comparison of spectral imaging to chlorophyll fluorescence was done for one strain of green algae and yielded strong correlations (near-infrared/red, r = 0.97, p < 0.001). Consequently, we described a simple imaging setup and information extraction based on vegetation indices that could be used to monitor algae cultures.
机译:谱相机传统上用于微藻的遥感,但越来越多地在实验室规模应用中,研究和监测藻类生物量在培养物中。目前需要用于收集和分析高光谱数据的实用和成本效益的协议。本研究的目的是测试商业,易于使用的高光谱相机,以监测液体样品中不同藻类菌株的生长。将来自透射成像的波带计算的索引与从电子单元计数器,叶绿素浓度和叶绿素荧光获得的藻类丰度和湿生物质进行比较。含有近红外和红色的选定波段的比率结果是强大的指标,因为它易于计算和解释,但它与丰富的菌株产生强烈的相关性 - 具体(0.85

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