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首页> 外文期刊>Applied optics >Spectral characteristics of coralline algae: a multi-instrumental approach, with emphasis on underwater hyperspectral imaging
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Spectral characteristics of coralline algae: a multi-instrumental approach, with emphasis on underwater hyperspectral imaging

机译:珊瑚藻类的光谱特性:一种多乐谱方法,重点对水下高光谱成像

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摘要

Coralline algae constitute a cosmopolitan group of calcifying rhodophytes (red algae) that display characteristic optical fingerprints due to light absorption by specific light-harvesting pigments. The spectrally conspicuous nature of coralline algae makes them potential candidates for optical remote sensing surveys. Recently, underwater hyperspectral imaging (UHI), which we believe is a novel optical remote sensing technique, also has become the subject of marine research. The aim of the study was to characterize the spectral properties of different coralline algal species and to assess the potential of UHI as a coralline algal identification and mapping tool. Four species of coralline algae were investigated: Corallina officinalis, Lithothamnion glaciale, Phymatolithon lenormandii, and Phymatolithon tenue. Important coralline algal pigments were identified using spectrophotometry and high-performance liquid chromatography (HPLC). Reflectance spectra of all species were obtained using both a spectrometer and UHI. Multivariate statistical analyses were performed on the reflectance data to identify spectral differences between the species and the instruments. Supervised classification of coralline algae in UHI transects recorded both in vivo and in situ was also carried out. R-phycoerythrin and chlorophyll a were found to be the most dominant coralline algal pigments. The analyzed species of coralline algae displayed highly similar reflectance spectra, and dips in reflectance corresponding to the absorbance peaks of R-phycoerythrin and chlorophyll a were identified in all spectra. Wavelengths corresponding to R-phycoerythrin light absorbance were the greatest contributors to interspecific spectral differences, but the investigated coralline algal species could not be spectrally distinguished with great accuracy. Optical signatures recorded using different instruments were comparable, but inter-instrumental spectral differences were found to be greater than interspecific differences. Supervised UHI classification was unable to accurately map different coralline algal species due to the similarity of the optical fingerprints; however, as a group, coralline algae could easily be identified. In the future, large-scale UHI surveys of coralline algal habitats should be carried out using platforms such as remotely operated vehicles (ROVs) and autonomous underwater vehicles (AUVs) to enhance our understanding of this widespread and ecologically important organism group. (C) 2017 Optical Society of America
机译:Coralline藻类构成了一种钙化菱形(红藻类)的大都会,其由于特定光收获颜料的光吸收而显示特征光学指纹。 Coralline藻类的光谱显着性质使它们成为光学遥感调查的潜在候选者。最近,我们认为是一种新型光学遥感技术的水下高光谱成像(UHI)也已成为海洋研究的主题。该研究的目的是表征不同珊瑚藻类物种的光谱特性,并评估UHI作为珊瑚藻识别和测绘工具的潜力。调查了四种珊瑚藻类:Corallina Officinalis,Lithothamnion Glaciale,Phymatichon Lenormandii和Phymatolithon Tenue。使用分光光度法和高性能液相色谱(HPLC)鉴定重要的珊瑚藻颜料。使用光谱仪和UHI获得所有物种的反射光谱。对反射率数据进行多变量统计分析,以识别物种与仪器之间的光谱差异。还进行了在体内记录的UHI横断面的珊瑚藻类进行了监督分类。 r-phycoerythrin和叶绿素A被发现是最占主导地位的珊瑚藻类颜料。在所有光谱中鉴定了对应于高度相似的反射光谱的珊瑚藻类的分析的珊瑚藻类物种,以及对应于R-Phycoerythrin和叶绿素A的吸光度峰的反射率。对应于R-Phycooerythrin光吸收的波长是贡献谱差异的最大贡献者,但研究的珊瑚藻类物种不能以极高的准确度谱分辨。使用不同仪器记录的光学签名是可比的,但发现局部谱差异大于间隙差异。由于光学指纹的相似性,监督UHI分类无法准确地映射不同的珊瑚藻类物种;然而,作为一个组,可以很容易地识别珊瑚藻类。将来,应使用远程操作车辆(ROVS)和自主水下车辆(AUV)等平台进行珊瑚藻类栖息地的大规模UHI调查,以增强我们对这种普遍和生态重要的生物体组的理解。 (c)2017年光学学会

著录项

  • 来源
    《Applied optics》 |2017年第36期|共19页
  • 作者单位

    Norwegian Univ Sci &

    Technol NTNU Dept Biol Ctr Autonomous Marine Operat &

    Syst Trondheim Biol Stn NO-7491 Trondheim Norway;

    Norwegian Univ Sci &

    Technol NTNU Dept Biol Ctr Autonomous Marine Operat &

    Syst Trondheim Biol Stn NO-7491 Trondheim Norway;

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  • 正文语种 eng
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