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Wide Field-of-View Fluorescence Imaging of Coral Reefs

机译:珊瑚礁的宽视场荧光成像

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Coral reefs globally are declining rapidly because of both local and global stressors. Improved monitoring tools are urgently needed to understand the changes that are occurring at appropriate temporal and spatial scales. Coral fluorescence imaging tools have the potential to improve both ecological and physiological assessments. Although fluorescence imaging is regularly used for laboratory studies of corals, it has not yet been used for large-scale in situ assessments. Current obstacles to effective underwater fluorescence surveying include limited field-of-view due to low camera sensitivity, the need for nighttime deployment because of ambient light contamination, and the need for custom multispectral narrow band imaging systems to separate the signal into meaningful fluorescence bands. Here we describe the Fluorescence Imaging System (FluorIS), based on a consumer camera modified for greatly increased sensitivity to chlorophyll-a fluorescence, and we show high spectral correlation between acquired images and in situ spectrometer measurements. This system greatly facilitates underwater wide field-of-view fluorophore surveying during both night and day, and potentially enables improvements in semi-automated segmentation of live corals in coral reef photographs and juvenile coral surveys.
机译:由于本地和全球压力源,全球珊瑚礁正在迅速下降。迫切需要改进的监视工具,以了解在适当的时空尺度上发生的变化。珊瑚荧光成像工具具有改善生态和生理评估的潜力。尽管荧光成像通常用于珊瑚的实验室研究,但尚未用于大规模的原位评估。当前有效的水下荧光测量的障碍包括:由于相机灵敏度低而导致视野受限,由于环境光污染而需要夜间部署以及需要定制的多光谱窄带成像系统将信号分离为有意义的荧光带。在此,我们描述了一种荧光成像系统(FluorIS),该系统基于对消费者相机进行了修改,从而大大提高了对叶绿素a荧光的敏感性,并且显示了采集的图像与原位光谱仪测量之间的高光谱相关性。该系统极大地方便了白天和黑夜的水下宽视场荧光团勘测,并有可能改善珊瑚礁照片和未成年珊瑚勘测中活珊瑚的半自动分割。

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