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Progress In Developing A New Detection Method For The Harmful Algal Bloom Species, Karenia Brevis, Through Multiwavelength Spectroscopy

机译:通过多波长光谱法开发一种新的有害藻华物种Karenia Brevis检测方法的进展

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摘要

Multiwavelength spectroscopy is a rapid analytical technique that can be applied to detect, identify, and quantify microorganisms such as Karenia brevis, the species known for frequent red-tide blooms in Florida's coastal waters. This research will report on a model-based interpretation of UV-vis spectra of K. brevis. The spectroscopy models are based on light scattering and absorption theories, and the approximation of the frequency-dependant optical properties of the basic constituents of living organisms. Absorption and scattering properties of K. brevis, such as cell size/shape, internal structure, and chemical composition, are shown to predict the spectral features observed in the measured spectra. The parameters for the interpretation model were based upon both reported literature values, and experimental values obtained from live cultures and pigment standards. Measured and mathematically derived spectra were compared to determine the adequacy of the model, contribute new spectral information, and to establish the proposed spectral interpretation approach as a new detection method for K. brevis.
机译:多波长光谱法是一种快速分析技术,可用于检测,鉴定和定量微生物,例如短小红叶锦葵(Karenia brevis),该种以在佛罗里达州沿海水域经常出现红潮而闻名。这项研究将报告关于短毛K.UV光谱的基于模型的解释。光谱模型基于光散射和吸收理论,以及生物体基本成分的频率相关光学特性的近似值。示出了K. brevis的吸收和散射特性,例如细胞大小/形状,内部结构和化学组成,可预测在测量光谱中观察到的光谱特征。解释模型的参数基于既有文献报道的值,又是从活体培养物和色素标准品获得的实验值。比较了测得的光谱和从数学上得出的光谱,以确定模型的适当性,贡献新的光谱信息,并建立了拟议的光谱解释方法,将其作为短毛K.visvis的新检测方法。

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