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1
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0024053523
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Determination of particle size in powders by scatter correction in diffuse near-infrared reflectance
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Ilari J.L., Martens M., Isaksson T. Determination of particle size in powders by scatter correction in diffuse near-infrared reflectance. Applied Spectroscopy 1988, 42:722-728.
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Applied Spectroscopy
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Ilari, J.L.1
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2
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0002661030
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Multivariate linearity transformations for near infrared reflectance spectroscopy
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Stokkland Forlag, Stavanger, Norway, O.H.J. Christie (Ed.)
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Martens H., Jensen S.A., Geladi P. Multivariate linearity transformations for near infrared reflectance spectroscopy. Nordic Symposium on Applied Statistics 1983, 205-234. Stokkland Forlag, Stavanger, Norway. O.H.J. Christie (Ed.).
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Nordic Symposium on Applied Statistics
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Martens, H.1
Jensen, S.A.2
Geladi, P.3
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3
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0022059848
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Linearization and scatter-correction for near-infrared reflectance spectra of meat
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Geladi P., Macdougall D., Martens H. Linearization and scatter-correction for near-infrared reflectance spectra of meat. Applied Spectroscopy 1985, 39:491-500.
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Applied Spectroscopy
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Geladi, P.1
Macdougall, D.2
Martens, H.3
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4
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0026351585
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Extended multiplicative signal correction and spectral interference subtraction - new preprocessing methods for near-infrared spectroscopy
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Martens H., Stark E. Extended multiplicative signal correction and spectral interference subtraction - new preprocessing methods for near-infrared spectroscopy. Journal of Pharmaceutical and Biomedical Analysis 1991, 9:625-635.
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Journal of Pharmaceutical and Biomedical Analysis
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Martens, H.1
Stark, E.2
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5
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0037314976
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Light scattering and light absorbance separated by extended multiplicative signal correction. Application to near-infrared transmission analysis of powder mixtures
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Martens H., Nielsen J.P., Engelsen S.B. Light scattering and light absorbance separated by extended multiplicative signal correction. Application to near-infrared transmission analysis of powder mixtures. Analytical Chemistry 2003, 75:394-404.
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Analytical Chemistry
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Martens, H.1
Nielsen, J.P.2
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7
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Scattering correction by use of a priori information
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Ottestad S., Isaksson T., Saeys W., Wold J.P. Scattering correction by use of a priori information. Applied Spectroscopy 2010, 64:795-804.
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Ottestad, S.1
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8
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0036737859
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Near-infrared absorption and scattering separated by extended inverted signal correction (EISC): analysis of near-infrared transmittance spectra of single wheat seeds
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Pedersen D.K., Martens H., Nielsen J.P., Engelsen S.B. Near-infrared absorption and scattering separated by extended inverted signal correction (EISC): analysis of near-infrared transmittance spectra of single wheat seeds. Applied Spectroscopy 2002, 56:1206-1214.
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Applied Spectroscopy
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Pedersen, D.K.1
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Engelsen, S.B.4
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9
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4344601278
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Towards on-line monitoring of the composition of commercial carrageenan powders
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Dyrby M., Petersen R.V., Larsen J., Rudolf B., Norgaard L., Engelsen S.B. Towards on-line monitoring of the composition of commercial carrageenan powders. Carbohydrate Polymers 2004, 57:337-348.
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Dyrby, M.1
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Norgaard, L.5
Engelsen, S.B.6
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10
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Application of extended inverse scatter correction to mid-infrared reflectance spectra of soil
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Gallagher N.B., Blake T.A., Gassman P.L. Application of extended inverse scatter correction to mid-infrared reflectance spectra of soil. Journal of Chemometrics 2005, 19:271-281.
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Gallagher, N.B.1
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11
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33748940403
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Correcting attenuated total reflaction-Fourier transform infrared spectra for water vapour and carbon dioxide
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Bruun S.W., Kohler A., A.I., Sockalingum G.D., Manfait M., Martens H. Correcting attenuated total reflaction-Fourier transform infrared spectra for water vapour and carbon dioxide. Applied Spectroscopy 2006, 60:1029-1039.
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Applied Spectroscopy
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Bruun, S.W.1
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12
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79953174455
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Chemometrics in biospectroscopy
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John Wiley & Sons Ltd., Chichester, UK. J.M. Chalmers, E. Li-Chan, P.R. Griffiths (Eds.)
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Kohler A., Afseth N.K., Martens H. Chemometrics in biospectroscopy. Applications of Vibrational Spectroscopy in Food Science 2010, John Wiley & Sons Ltd., Chichester, UK. J.M. Chalmers, E. Li-Chan, P.R. Griffiths (Eds.).
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Applications of Vibrational Spectroscopy in Food Science
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Kohler, A.1
Afseth, N.K.2
Martens, H.3
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13
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21244450728
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Extended multiplicative signal correction as a tool for separation and characterization of physical and chemical information in Fourier transform infrared microscopy images of cryo-sections of beef loin
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Kohler A., Kirschner C., Oust A., Martens H. Extended multiplicative signal correction as a tool for separation and characterization of physical and chemical information in Fourier transform infrared microscopy images of cryo-sections of beef loin. Applied Spectroscopy 2005, 59:707-716.
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Applied Spectroscopy
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Kohler, A.1
Kirschner, C.2
Oust, A.3
Martens, H.4
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14
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34249303389
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Pre-processing in biochemometrics: correction for path-length and temperature effects of water in FTIR bio-spectroscopy by EMSC
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Martens H., Bruun S.W., Adt I., Sockalingum G.D., Kohler A. Pre-processing in biochemometrics: correction for path-length and temperature effects of water in FTIR bio-spectroscopy by EMSC. Journal of Chemometrics 2006, 20:402-417.
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Journal of Chemometrics
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Martens, H.1
Bruun, S.W.2
Adt, I.3
Sockalingum, G.D.4
Kohler, A.5
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15
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76749118117
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Resonant Mie scattering (RMieS) correction of infrared spectra from highly scattering biological samples
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Bassan P., Kohler A., Martens H., Lee J., Byrne H.J., Dumas P., Gazi E., Brown M., Clarke N., Gardner P. Resonant Mie scattering (RMieS) correction of infrared spectra from highly scattering biological samples. Analyst 2010, 135:268-277.
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Analyst
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Bassan, P.1
Kohler, A.2
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Lee, J.4
Byrne, H.J.5
Dumas, P.6
Gazi, E.7
Brown, M.8
Clarke, N.9
Gardner, P.10
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16
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77957333773
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RMieS-EMSC correction for infrared spectra of biological cells: extension using full Mie theory and GPU computing
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Bassan P., Kohler A., Martens H., Lee J., Jackson E., Lockyer N., Dumas P., Brown M., Clarke N., Gardner P. RMieS-EMSC correction for infrared spectra of biological cells: extension using full Mie theory and GPU computing. Journal of Biophotonics 2010, 3:609-620.
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Journal of Biophotonics
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Bassan, P.1
Kohler, A.2
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Lee, J.4
Jackson, E.5
Lockyer, N.6
Dumas, P.7
Brown, M.8
Clarke, N.9
Gardner, P.10
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17
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Estimating and correcting Mie scattering in synchrotron-based microscopic Fourier transform infrared spectra by extended multiplicative signal correction
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Kohler A., Sule-Suso J., Sockalingum G.D., Tobin M., Bahrami F., Yang Y., Pijanka J., Dumas P., Cotte M., van Pittius D.G., Parkes G., Martens H. Estimating and correcting Mie scattering in synchrotron-based microscopic Fourier transform infrared spectra by extended multiplicative signal correction. Applied Spectroscopy 2008, 62:259-266.
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Kohler, A.1
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Bahrami, F.5
Yang, Y.6
Pijanka, J.7
Dumas, P.8
Cotte, M.9
van Pittius, D.G.10
Parkes, G.11
Martens, H.12
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18
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33845960535
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Raman spectra of biological samples: a study of preprocessing methods
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Afseth N.K., Segtnan V.H., Wold J.P. Raman spectra of biological samples: a study of preprocessing methods. Applied Spectroscopy 2006, 60:1358-1367.
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Fourier transform infrared and Raman spectroscopy for characterization of Listeria monocytogenes strains
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Oust A., Moretro T., Naterstad K., Sockalingum G.D., Adt I., Manfait M., Kohler A. Fourier transform infrared and Raman spectroscopy for characterization of Listeria monocytogenes strains. Applied and Environmental Microbiology 2006, 72:228-232.
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Applied and Environmental Microbiology
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Methods for extracting biochemical information from bacterial Raman spectra: an explorative study on Cupriavidus metallidurans
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De Gelder J., De Gussem K., Vandenabeele P., De Vos P., Moens L. Methods for extracting biochemical information from bacterial Raman spectra: an explorative study on Cupriavidus metallidurans. Analytica Chimica Acta 2007, 585:234-240.
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Effects of pre-processing of Raman spectra on in vivo classification of nutrient status of microalgal cells
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Heraud P., Wood B.R., Beardall J., McNaughton D. Effects of pre-processing of Raman spectra on in vivo classification of nutrient status of microalgal cells. Journal of Chemometrics 2006, 20:193-197.
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A novel approach to correct variations in Raman spectra due to photo-bleachable cellular components
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Maquelin K., Scholtes-Timmerman M., Willemse-Erix H., Schut T.B., van Belkum A., Puppels G. A novel approach to correct variations in Raman spectra due to photo-bleachable cellular components. Analyst 2009, 134:387-393.
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The potential of Raman spectroscopy for characterisation of the fatty acid unsaturation of salmon
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Afseth N.K., Wold J.P., Segtnan V.H. The potential of Raman spectroscopy for characterisation of the fatty acid unsaturation of salmon. Analytica Chimica Acta 2006, 572:85-92.
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Automated method for subtraction of fluorescence from biological Raman spectra
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Heat-induced changes in myofibrillar protein structures and myowater of two pork qualities. A combined FT-IR spectroscopy and low-field NMR relaxometry study
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Bertram H.C., Kohler A., Bocker U., Ofstad R., Andersen H.J. Heat-induced changes in myofibrillar protein structures and myowater of two pork qualities. A combined FT-IR spectroscopy and low-field NMR relaxometry study. Journal of Agricultural and Food Chemistry 2006, 54:1740-1746.
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Reducing inter-replicate variation in Fourier transform infrared spectroscopy by extended multiplicative signal correction
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Kohler A., Bocker U., Warringer J., Blomberg A., Omholt S.W., Stark E., Martens H. Reducing inter-replicate variation in Fourier transform infrared spectroscopy by extended multiplicative signal correction. Applied Spectroscopy 2009, 63:296-305.
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Kohler, A.1
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