Proposed Confidence Scale and ID Score in the Identification of Known-Unknown Compounds Using High Resolution MS Data
暂无分享,去创建一个
[1] B. Le Bizec,et al. European analytical criteria: past, present, and future. , 2011, Journal of AOAC International.
[2] N. E. Holden,et al. Atomic weights of the elements 1983 , 1984 .
[3] Christoph Steinbeck,et al. The role of reporting standards for metabolite annotation and identification in metabolomic studies , 2013, GigaScience.
[4] C. Baessmann,et al. Evaluation of a High Resolving Power Time-of-Flight Mass Spectrometer for Drug Analysis in Terms of Resolving Power and Acquisition Rate , 2011, Journal of the American Society for Mass Spectrometry.
[5] H. Mol,et al. Simultaneous quantitative determination, identification and qualitative screening of pesticides in fruits and vegetables using LC-Q-Orbitrap™-MS , 2015, Food additives & contaminants. Part A, Chemistry, analysis, control, exposure & risk assessment.
[6] Mark R. Viant,et al. MI-Pack: Increased confidence of metabolite identification in mass spectra by integrating accurate masses and metabolic pathways , 2010 .
[7] Yuan-Qing Xia,et al. It is time for a paradigm shift in drug discovery bioanalysis: from SRM to HRMS. , 2011, Journal of mass spectrometry : JMS.
[8] M. Meyer,et al. Current position of high-resolution MS for drug quantification in clinical & forensic toxicology. , 2014, Bioanalysis.
[9] T. Croley,et al. Mass Accuracy and Isotopic Abundance Measurements for HR-MS Instrumentation: Capabilities for Non-Targeted Analyses , 2014, Journal of The American Society for Mass Spectrometry.
[10] Steven J. Lehotay,et al. Identification and confirmation of chemical residues in food by chromatography-mass spectrometry and other techniques , 2008 .
[11] Oliver Fiehn,et al. Metabolomic database annotations via query of elemental compositions: Mass accuracy is insufficient even at less than 1 ppm , 2006, BMC Bioinformatics.
[12] P. De Bièvre,et al. Atomic weights of the elements. Review 2000 (IUPAC Technical Report) , 2009 .
[13] B. Chowdhry,et al. Ion mobility spectrometry-mass spectrometry (IMS-MS) of small molecules: separating and assigning structures to ions. , 2013, Mass spectrometry reviews.
[14] Kiyoko F. Aoki-Kinoshita,et al. From genomics to chemical genomics: new developments in KEGG , 2005, Nucleic Acids Res..
[15] Bernhard O. Palsson,et al. Ion Mobility Derived Collision Cross Sections to Support Metabolomics Applications , 2014, Analytical chemistry.
[16] Christophe Junot,et al. Evaluation of accurate mass and relative isotopic abundance measurements in the LTQ-orbitrap mass spectrometer for further metabolomics database building. , 2010, Analytical chemistry.
[17] Ralf J. M. Weber,et al. Characterization of isotopic abundance measurements in high resolution FT-ICR and Orbitrap mass spectra for improved confidence of metabolite identification. , 2011, Analytical chemistry.
[18] P. De Bièvre,et al. ATOMIC WEIGHTS OF THE ELEMENTS: REVIEW 2000 , 2003 .
[19] Emma L. Schymanski,et al. Prioritizing Unknown Transformation Products from Biologically-Treated Wastewater Using High-Resolution Mass Spectrometry, Multivariate Statistics, and Metabolic Logic. , 2015, Analytical chemistry.
[20] Stacy D. Brown,et al. Identification of “Known Unknowns” Utilizing Accurate Mass Data and Chemical Abstracts Service Databases , 2011, Journal of the American Society for Mass Spectrometry.
[21] Bertrand Rochat,et al. The future key role of LC-high-resolution-MS analyses in clinical laboratories: a focus on quantification. , 2012, Bioanalysis.
[22] Damià Barceló,et al. Advances in liquid chromatography–high-resolution mass spectrometry for quantitative and qualitative environmental analysis , 2015, Analytical and Bioanalytical Chemistry.
[23] Editorial: ChemSpider--a tool for Natural Products research. , 2015, Natural product reports.
[24] Stephen J. Bruce,et al. Analysis and quantification of vitamin D metabolites in serum by ultra-performance liquid chromatography coupled to tandem mass spectrometry and high-resolution mass spectrometry--a method comparison and validation. , 2013, Rapid communications in mass spectrometry : RCM.
[25] Oliver Fiehn,et al. Seven Golden Rules for heuristic filtering of molecular formulas obtained by accurate mass spectrometry , 2007, BMC Bioinformatics.
[26] B. Rochat. Is there a future for metabotyping in clinical laboratories? , 2015, Bioanalysis.
[27] E. Claude,et al. Applications of ion-mobility mass spectrometry for lipid analysis , 2015, Analytical and Bioanalytical Chemistry.
[28] Gang Fu,et al. PubChem Substance and Compound databases , 2015, Nucleic Acids Res..
[29] A. Grange,et al. Automated determination of precursor ion, product ion, and neutral loss compositions and deconvolution of composite mass spectra using ion correlation based on exact masses and relative isotopic abundances. , 2008, Rapid communications in mass spectrometry : RCM.
[30] A. Kaufmann,et al. Quantitative and confirmative performance of liquid chromatography coupled to high-resolution mass spectrometry compared to tandem mass spectrometry. , 2011, Rapid communications in mass spectrometry : RCM.
[31] Thomas Hartung,et al. Review: Toxicometabolomics , 2013, Journal of applied toxicology : JAT.
[32] Michael Darsow,et al. ChEBI: a database and ontology for chemical entities of biological interest , 2007, Nucleic Acids Res..
[33] M. Shah,et al. Hallucinogens Causing Seizures? A Case Report of the Synthetic Amphetamine 2,5-Dimethoxy-4-Chloroamphetamine , 2015, The Neurohospitalist.
[34] Thomas Letzel,et al. Non-target screening with high-resolution mass spectrometry: critical review using a collaborative trial on water analysis , 2015, Analytical and Bioanalytical Chemistry.
[35] B. Colsch,et al. High resolution mass spectrometry based techniques at the crossroads of metabolic pathways. , 2014, Mass spectrometry reviews.
[36] Clary B. Clish,et al. Metabolomics: an emerging but powerful tool for precision medicine , 2015, Cold Spring Harbor molecular case studies.
[37] D. Wishart. Advances in metabolite identification. , 2011, Bioanalysis.
[38] Thomas Hankemeier,et al. Fragmentation trees for the structural characterisation of metabolites , 2012, Rapid communications in mass spectrometry : RCM.
[39] A. Kaufmann,et al. Accuracy of relative isotopic abundance and mass measurements in a single-stage orbitrap mass spectrometer. , 2012, Rapid communications in mass spectrometry : RCM.
[40] R. Subramanian,et al. Comparison of information-dependent acquisition, SWATH, and MS(All) techniques in metabolite identification study employing ultrahigh-performance liquid chromatography-quadrupole time-of-flight mass spectrometry. , 2014, Analytical chemistry.
[41] Emma L. Schymanski,et al. Identifying small molecules via high resolution mass spectrometry: communicating confidence. , 2014, Environmental science & technology.
[42] D. Wishart. Emerging applications of metabolomics in drug discovery and precision medicine , 2016, Nature Reviews Drug Discovery.
[43] K. Veselkov,et al. A guide to the identification of metabolites in NMR-based metabonomics/metabolomics experiments , 2016, Computational and structural biotechnology journal.
[44] Nigel W. Hardy,et al. Proposed minimum reporting standards for chemical analysis , 2007, Metabolomics.
[45] R. Grabic,et al. Comparison of the quantitative performance of a Q-Exactive high-resolution mass spectrometer with that of a triple quadrupole tandem mass spectrometer for the analysis of illicit drugs in wastewater. , 2013, Rapid communications in mass spectrometry : RCM.
[46] A. Kaufmann,et al. Reliability of veterinary drug residue confirmation: high resolution mass spectrometry versus tandem mass spectrometry. , 2015, Analytica chimica acta.
[47] R. Abagyan,et al. METLIN: A Metabolite Mass Spectral Database , 2005, Therapeutic drug monitoring.
[48] Navdeep Jaitly,et al. MultiAlign: a multiple LC-MS analysis tool for targeted omics analysis , 2013, BMC Bioinformatics.
[49] D. Watson. A Rough Guide to Metabolite Identification Using High Resolution Liquid Chromatography Mass Spectrometry in Metabolomic Profiling in Metazoans , 2013, Computational and structural biotechnology journal.
[50] Herbert Oberacher,et al. Applying ‘Sequential Windowed Acquisition of All Theoretical Fragment Ion Mass Spectra’ (SWATH) for systematic toxicological analysis with liquid chromatography-high-resolution tandem mass spectrometry , 2014, Analytical and Bioanalytical Chemistry.
[51] Bertrand Rochat,et al. From targeted quantification to untargeted metabolomics: Why LC-high-resolution-MS will become a key instrument in clinical labs , 2016 .
[52] H. Mol,et al. Identification in residue analysis based on liquid chromatography with tandem mass spectrometry: Experimental evidence to update performance criteria. , 2015, Analytica chimica acta.
[53] Hugues Henry,et al. Comparison between a high-resolution single-stage Orbitrap and a triple quadrupole mass spectrometer for quantitative analyses of drugs. , 2012, Rapid communications in mass spectrometry : RCM.
[54] F. Borrull,et al. Comparison of triple quadrupole mass spectrometry and Orbitrap high-resolution mass spectrometry in ultrahigh performance liquid chromatography for the determination of veterinary drugs in sewage: benefits and drawbacks. , 2014, Journal of Mass Spectrometry.
[55] M. Nielen,et al. Screening and confirmation criteria for hormone residue analysis using liquid chromatography accurate mass time-of-flight, Fourier transform ion cyclotron resonance and orbitrap mass spectrometry techniques. , 2007, Analytica chimica acta.
[56] M. Nielen,et al. The Assessment of Selectivity in Different Quadrupole-Orbitrap Mass Spectrometry Acquisition Modes , 2015, Journal of The American Society for Mass Spectrometry.
[57] Valery Tkachenko,et al. Identification of “Known Unknowns” Utilizing Accurate Mass Data and ChemSpider , 2011, Journal of The American Society for Mass Spectrometry.
[58] Ralf J. M. Weber,et al. Mass appeal: metabolite identification in mass spectrometry-focused untargeted metabolomics , 2012, Metabolomics.
[59] Bertrand Rochat,et al. A Close Look at the Fate of Compounds we are Exposed to. , 2014, Chimia.
[60] K. Héberger. Quantitative structure-(chromatographic) retention relationships. , 2007, Journal of chromatography. A.
[61] William DeMaio,et al. Spectral accuracy of molecular ions in an LTQ/Orbitrap mass spectrometer and implications for elemental composition determination , 2009, Journal of the American Society for Mass Spectrometry.
[62] B. Milman. Identification of chemical compounds , 2005 .
[63] Ilkka Ojanperä,et al. Combined drug screening and confirmation by liquid chromatography time-of-flight mass spectrometry with reverse database search , 2012, Analytical and Bioanalytical Chemistry.
[64] Alan H B Wu,et al. High-Resolution Mass Spectrometry for Untargeted Drug Screening. , 2016, Methods in molecular biology.
[65] D. Vuckovic. Current trends and challenges in sample preparation for global metabolomics using liquid chromatography–mass spectrometry , 2012, Analytical and Bioanalytical Chemistry.
[66] J. Gangoiti,et al. Validation of a dual LC–HRMS platform for clinical metabolic diagnosis in serum, bridging quantitative analysis and untargeted metabolomics , 2013, Metabolomics.
[67] S. Stein,et al. On the risk of false positive identification using multiple ion monitoring in qualitative mass spectrometry: Large-scale intercomparisons with a comprehensive mass spectral library , 2006, Journal of the American Society for Mass Spectrometry.
[68] Claude Roux,et al. Forensic applications of isotope ratio mass spectrometry--a review. , 2006, Forensic science international.
[69] D. Bier,et al. Collision-induced dissociation studies of caffeine in positive electrospray ionisation mass spectrometry using six deuterated isotopomers and one N1-ethylated homologue. , 2013, Rapid communications in mass spectrometry : RCM.
[70] David S. Wishart,et al. HMDB 3.0—The Human Metabolome Database in 2013 , 2012, Nucleic Acids Res..
[71] S. Neumann,et al. PredRet: prediction of retention time by direct mapping between multiple chromatographic systems. , 2015, Analytical chemistry.
[72] A. Wu,et al. Comparison of Information-Dependent Acquisition on a Tandem Quadrupole TOF vs a Triple Quadrupole Linear Ion Trap Mass Spectrometer for Broad-Spectrum Drug Screening. , 2016, Clinical chemistry.