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Titlebook: Image Analysis, Sediments and Paleoenvironments; Pierre Francus Book 2004 Springer Science+Business Media Dordrecht 2004 Image Analysis.La

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Processing Backscattered Electron Digital Images of Thin Sections. Prior to the last few years BSE microscopy has been used primarily for compositional (provenance) studies. Our preliminary work on Paleozoic loessite, as well as previous work on recent sediments (Francus 1998; Francus and Karabanov 2000), suggests that BSE microscopy image analysis is an effecti
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Software Aspects of Automated Recognition of Particles: The Example of Pollen hardware set-up, through the focusing procedure and object detection, to the final classification of the objects. It presented a case study of a pollen classification system that can be trained on a sample of images of pollen grains. The system was based on a flexible neural network architecture: s
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Multiresolution Analysis of Shell Growth Increments to Detect Variations in Natural Cyclesth their associated amplitudes) constituting the original signal, but does not keep the spatial information: it is possible to determine the elementary bricks that compose the signal, but not the way they are ordered along the signal. This limitation of the method has been noticed by Gabor (1946) wh
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From Depth Scale to Time Scale: Transforming Sediment Image Color Data into a High-Resolution Time Soriented models used to predict climate change and other terrestrial processes. The extraction of digital line-scan data from images of laminated sediments provides a tool for the rapid and non-invasive analysis of sedimentary records, including sediment and ice cores, and tree ring growth patterns.
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https://doi.org/10.1007/1-4020-2122-4Image Analysis; Lakes; Limnogeology; Paleoceanography; Paleoenvironments; Paleolimnology; Sediment; Sedimen
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