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A Multiscale Vibrational Spectroscopic Approach for Identification and Biochemical Characterization of PollenVibrational microspectroscopy enables chemical characterization of single pollen grains as well as comparative analysis of plant species based on pollen ultrastructure.Whole Grain Consumption Increases Gastrointestinal Content of Sulfate-Conjugated Oxylipins in Pigs - A Multicompartmental Metabolomics Study.Analysis of Allergenic Pollen by FTIR Microspectroscopy.A high-throughput FTIR spectroscopy approach to assess adaptive variation in the chemical composition of pollen.Recovery of absorbance spectra of micrometer-sized biological and inanimate particles.Observation of Mie ripples in the synchrotron Fourier transform infrared spectra of spheroidal pollen grainsMonitoring of plant-environment interactions by high-throughput FTIR spectroscopy of pollenMatrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) shows adaptation of grass pollen compositionEnterotoxin Production of Isolates From Biopesticides, Foods, and OutbreaksInfrared refractive index dispersion of polymethyl methacrylate spheres from Mie ripples in Fourier-transform infrared microscopy extinction spectra
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description
researcher ORCID ID = 0000-0003-0575-9246
@en
wetenschapper
@nl
name
Murat Bağcıoğlu
@ast
Murat Bağcıoğlu
@en
Murat Bağcıoğlu
@nl
type
label
Murat Bağcıoğlu
@ast
Murat Bağcıoğlu
@en
Murat Bağcıoğlu
@nl
prefLabel
Murat Bağcıoğlu
@ast
Murat Bağcıoğlu
@en
Murat Bağcıoğlu
@nl
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499147907522079210008
P31
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0000-0003-0575-9246
P7859
viaf-499147907522079210008