Join our Flash Communication:
Orbitrap IDX - Tirer le meilleur parti de la technologie Orbitrap pour vos analyses structurales
18 September 2019 | 10.20 - 10.30 | Room TBA
Thermo Scientific Orbitrap Tribrid mass spectrometers are an essential tool for high-end life science research. Equipped with a quadrupole mass filter, high-field Orbitrap and linear ion trap mass analyzers, this unique hardware combination provides superior analytical performance that enables multiple modes of analysis due to the parallel isolation and detection mechanisms not available with previous generation Orbitrap Hybrid mass spectrometer series.
The most difficult analyses including identification of low-abundance metabolites in human plasma, isotopomer mixture analysis, characterization of isomeric flavonoid or lipid species in biological extracts, and obtaining high quality MSn spectral reference libraries are fully achieved on the versatile Orbitrap ID-X Tribrid mass spectrometer. The Orbitrap ID-X Tribrid mass spectrometer is optimized for small molecules and can perform multiple fragmentation techniques (higher energy collision dissociation (HCD) in a high pressure coJllision cell or collisional induced dissociation (CID) in an ion trap plus stepwise MSn) for annotating unknown metabolite structures in untargeted metabolomics and lipidomics experiments. The Orbitrap ID-X Tribrid mass spectrometer provides up to 500,000 resolution at m/z 200, high sensitivity, and rapid acquisition rates needed for obtaining high quality data for demanding applications such as isotopic tracer studies. The Orbitrap ID-X Tribrid mass spectrometer system extends the dynamic range for metabolite detection, compound annotation and quantitation needed to achieve a broad range of metabolome coverage, by combining the versatility of Tribrid architecture, selectivity of Orbitrap technology and high-quality MSn spectra. The integration of Thermo Scientific™ AcquireX intelligent data dependent acquisition methods and the use of advanced scan filters to target specific compound classes provide unparalleled flexibility in designing experiments that meet the real world challenges in metabolomics and lipidomics today.
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