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Use of fluorescence information for automated phytoplankton investigation by image analysis

机译:利用荧光信息通过图像分析自动进行浮游植物调查

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摘要

Automated identification and quantification of algae in microscopic images is a tool that allows high taxonomic resolution with reasonable technical efforts. However, in samples containing various non-algal objects, this is still not a satisfactorily solved problem. We show that autofluorescence information improves discrimination of algae from non-algal objects as well as phycoerythrin (PE) containing algae from others. We analyse the stability of the autofluorescence to estimate its constraints. Cold and dark storage of glutaraldehyde fixed samples maintains autofluorescence sufficiently for 3 weeks. Under repeated excitations, chlorophyll a (Chl a) or PE autofluorescence show an exponential decrease followed by an intermediate maximum. A peak also occurs in emission wavelength ranges without chlorophyll and PE fluorescence. The unspecific autofluorescence causing the peaks is at least partly identical with the blue-green fluorescence (BGF) in plant cells. BGF interferes with identification of algae, thus correction of pigment autofluorescence with such unspecific fluorescence allows a more reliable algal discrimination procedure. A classification scheme for discrimination of Chl a and PE-containing algae shows a high performance in a test with natural samples. Integration of fluorescence and bright-field image information provides a powerful tool for phytoplankton analysis in complex samples.
机译:显微图像中藻类的自动识别和定量是一种工具,可以通过合理的技术努力实现高分类学分辨率。但是,在包含各种非藻类物体的样品中,这仍然不是令人满意的解决问题。我们表明自体荧光信息改善了对来自非藻类对象以及藻红蛋白(PE)的藻类的分辨能力。我们分析了自发荧光的稳定性,以估计其约束。戊二醛固定样品的冷库和暗库可充分保持自身荧光3周。在反复激发下,叶绿素a(Chl a)或PE自发荧光显示出指数下降,然后出现中间最大值。在没有叶绿素和PE荧光的发射波长范围内也会出现一个峰值。引起峰的非特异性自发荧光至少部分与植物细胞中的蓝绿色荧光(BGF)相同。 BGF干扰了藻类的鉴定,因此用这种非特异性荧光校正色素自发荧光可以实现更可靠的藻类鉴别程序。区分Chla和PE藻类的分类方案在使用天然样品的测试中表现出很高的性能。荧光和明场图像信息的集成为复杂样品中的浮游植物分析提供了强大的工具。

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