Trends in hard X-ray fluorescence mapping: environmental applications in the age of fast detectors
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D. Paterson | C. Ryan | D. Paterson | M. D. Jonge | E. Donner | E. Lombi | E. Lombi | E. Donner | C. G. Ryan | Erica Donner | Enzo Lombi | David L. Paterson | Chris G. Ryan
[1] Enzo Lombi,et al. Megapixel imaging of (micro)nutrients in mature barley grains , 2010, Journal of experimental botany.
[2] D. Sparks,et al. Hyperaccumulator Alyssum murale relies on a different metal storage mechanism for cobalt than for nickel. , 2007, The New phytologist.
[3] K. Scheckel,et al. In situ analysis of metal(loid)s in plants: State of the art and artefacts , 2011 .
[4] A. Somogyi,et al. Microanalysis (Micro-XRF, Micro-XANES, and Micro-XRD) of a Tertiary Sediment Using Microfocused Synchrotron Radiation , 2007, Microscopy and Microanalysis.
[5] C. G. Ryan,et al. Quantitative trace element imaging using PIXE and the nuclear microprobe , 2000, Int. J. Imaging Syst. Technol..
[6] D. Salt,et al. Quantitative, chemically specific imaging of selenium transformation in plants. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[7] G. Silversmit,et al. Removal of some elements from washed and cooked rice studied by inductively coupled plasma mass spectrometry and synchrotron based confocal micro-X-ray fluorescence , 2010 .
[8] Jerry Kaplan,et al. Localization of Iron in Arabidopsis Seed Requires the Vacuolar Membrane Transporter VIT1 , 2006, Science.
[9] D. P. Siddons,et al. The Maia Spectroscopy Detector System: Engineering for Integrated Pulse Capture, Low-Latency Scanning and Real-Time Processing , 2010 .
[10] F. Brenker,et al. Spatially resolved 3D micro-XANES by a confocal detection scheme. , 2010, Physical chemistry chemical physics : PCCP.
[11] G. De Geronimo,et al. Letter. Reduced As components in highly oxidized environments: Evidence from full spectral XANES imaging using the Maia massively parallel detector , 2010 .
[12] D. P. Siddons,et al. Elemental X-ray imaging using the Maia detector array: The benefits and challenges of large solid-angle , 2009 .
[13] D. Sparks. Elucidating the fundamental chemistry of soils: past and recent achievements and future frontiers , 2001 .
[14] Laurence Lemelle,et al. 3D chemical imaging based on a third-generation synchrotron source , 2010 .
[15] Enzo Lombi,et al. In vivo synchrotron study of thallium speciation and compartmentation in Iberis intermedia. , 2004, Environmental science & technology.
[16] Anders Baun,et al. The known unknowns of nanomaterials: Describing and characterizing uncertainty within environmental, health and safety risks , 2009 .
[17] Y. Terada,et al. In vivo analysis of metal distribution and expression of metal transporters in rice seed during germination process by microarray and X-ray Fluorescence Imaging of Fe, Zn, Mn, and Cu , 2009, Plant and Soil.
[18] K. Scheckel,et al. Speciation and distribution of arsenic and localization of nutrients in rice grains. , 2009, The New phytologist.
[19] Avinash C. Kak,et al. Principles of computerized tomographic imaging , 2001, Classics in applied mathematics.
[20] I. Cakmak. Enrichment of cereal grains with zinc: Agronomic or genetic biofortification? , 2007, Plant and Soil.
[21] J. Dixon,et al. X-ray microspectroscopy and chemical reactions in soil microsites. , 2011, Journal of environmental quality.
[22] J. A. Ryan,et al. μ-XANES and μ-XRF Investigations of Metal Binding Mechanisms in Biosolids , 2006 .
[23] Enzo Lombi,et al. Grain Unloading of Arsenic Species in Rice1[W] , 2009, Plant Physiology.
[24] M. D. de Jonge,et al. Marine Polyphosphate: A Key Player in Geologic Phosphorus Sequestration , 2008, Science.
[25] D. P. Siddons,et al. High-throughput X-ray fluorescence imaging using a massively parallel detector array, integrated scanning and real-time spectral deconvolution , 2009 .
[26] Pritha Bagchi,et al. In situ imaging of metals in cells and tissues. , 2009, Chemical reviews.
[27] R. Hegerl,et al. Influence of Electron Noise on Three-dimensional Image Reconstruction , 1976 .
[28] D. P. Siddons,et al. The new Maia detector system : Methods for High Definition Trace Element Imaging of natural material , 2010 .
[29] Stefan Vogt,et al. Hard X-ray fluorescence tomography--an emerging tool for structural visualization. , 2010, Current opinion in structural biology.
[30] R. Ortega,et al. Imaging and speciation of trace elements in biological environment. , 2006, Biochimie.
[31] M. D. de Jonge,et al. Quantitative 3D elemental microtomography of Cyclotella meneghiniana at 400-nm resolution , 2010, Proceedings of the National Academy of Sciences.