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    Resolving Spectral Mixtures

    With Applications from Ultrafast Time-Resolved Spectroscopy to Super-Resolution Imaging

    AvCyril Ruckebusch

    Inbunden, Engelska, 2016

    Del 30 i serien Data Handling in Science and Technology

    1 722 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Resolving Spectral Mixtures: With Applications from Ultrafast Time-Resolved Spectroscopy to Superresolution Imaging offers a comprehensive look into the most important models and frameworks essential to resolving the spectral unmixing problem-from multivariate curve resolution and multi-way analysis to Bayesian positive source separation and nonlinear unmixing. Unravelling total spectral data into the contributions from individual unknown components with limited prior information is a complex problem that has attracted continuous interest for almost four decades.

    Spectral unmixing is a topic of interest in statistics, chemometrics, signal processing, and image analysis. For decades, researchers from these fields were often unaware of the work in other disciplines due to their different scientific and technical backgrounds and interest in different objects or samples. This led to the development of quite different approaches to solving the same problem. This multi-authored book will bridge the gap between disciplines with contributions from a number of well-known and strongly active chemometric and signal processing research groups.

    Among chemists, multivariate curve resolution methods are preferred to extract information about the nature, amount, and location in time (process) and space (imaging and microscopy) of chemical constituents in complex samples. In signal processing, assumptions are usually around statistical independence of the extracted components. However, the chapters include the complexity of the spectral data to be unmixed as well as dimensionality and size of the data sets. Advanced spectroscopy is the key thread linking the different chapters. Applications cover a large part of the electromagnetic spectrum. Time-resolution ranges from femtosecond to second in process spectroscopy and spatial resolution covers the submicronic to macroscopic scale in hyperspectral imaging.



    • Demonstrates how and why data analysis, signal processing, and chemometrics are essential to the spectral unmixing problem
    • Guides the reader through the fundamentals and details of the different methods
    • Presents extensive plots, graphical representations, and illustrations to help readers understand the features of different techniques and to interpret results
    • Bridges the gap between disciplines with contributions from a number of well-known and highly active chemometric and signal processing research groups

    Produktinformation

    • Utgivningsdatum:2016-09-08
    • Mått:152 x 229 x 37 mm
    • Vikt:830 g
    • Format:Inbunden
    • Språk:Engelska
    • Serie:Data Handling in Science and Technology
    • Antal sidor:674
    • Förlag:Elsevier Science
    • Medarbetare:Cyril Ruckebusch
    • ISBN:9780444636386

    Utforska kategorier

    • Övrig teknik och tillämpad vetenskap inom Naturvetenskap och teknik
    • Analytisk kemi inom Naturvetenskap och teknik

    Mer om författaren

    Cyril Ruckebusch is currently a Professor at Ecole PolytechLille, Université de Lille - Sciences et Technologies. He is doing his research at LASIR, a mixed CNRS-University Lille research unit. Cyril was previously Associate Professor at University of Lille since 2008 when he obtained the qualification for full-professorship (habilitation in physical chemistry). He received his PhD in Engineering Science in 2000. His current research focuses mainly on the development and application of chemometrics in advanced spectroscopy and imaging. He has published over 70 papers in international journals and coordinated international scientific collaboration research programs and industrial and technological projects. He is Associate Editor for reviews of the Journal of Chemometrics and Editorial Adviser of Analytica Chimica Acta.

    Innehållsförteckning

    • 1. Introduction2. Multivariate Curve Resolution-Alternating Least Squares for Spectroscopic Data3. Spectral Unmixing Using the Concept of Pure Variables4. Ambiguities in Multivariate Curve Resolution5. On the Analysis and Computation of the Area of Feasible Solutions for Two-, Three-, and Four-Component Systems6. Linear and Nonlinear Unmixing in Hyperspectral Imaging7. Independent Components Analysis: Theory and Applications8. Bayesian Positive Source Separation for Spectral Mixture Analysis9. Multivariate Curve Resolution of Wavelet Compressed Data10. Chemometric Resolution of Complex Higher Order Chromatographic Data with Spectral Detection11. Multivariate Curve Resolution of (Ultra)Fast Photoinduced Process Spectroscopy Data12. Experimental and Data Analytical Approaches to Automating Multivariate Curve Resolution in the Analysis of Hyperspectral Images13. Multiresolution Analysis and Chemometrics for Pattern Enhancement and Resolution in Spectral Signals and Images14. A Smoothness Constraint in Multivariate Curve Resolution-Alternating Least Squares of Spectroscopy Data15. Super-Resolution in Vibrational Spectroscopy: From Multiple Low-Resolution Images to High-Resolution Images16. Multivariate Curve Resolution for Magnetic Resonance Image Analysis: Applications in Prostate Cancer Biomarkers Development17. Endmember Library Approaches to Resolve Spectral Mixing Problems in Remotely Sensed Data: Potential, Challenges, and Applications18. Spectral–Spatial Unmixing Approaches in Hyperspectral VNIR/SWIR Imaging19. Sparse-Based Modeling of Hyperspectral Data