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Mini Reviews in Medicinal Chemistry|February 20, 2007
Breath analysis: the approach towards clinical applicationsAnton Amann, Patrik Spanĕl, David SmithRapid Communications in Mass Spectrometry : RCM|September 25, 2002
Selected ion flow tube studies of the reactions of H3O+, NO+ and O2+ with the anaesthetic gases halothane, isoflurane and sevofluraneTianshu Wang, David Smith, Patrik SpanĕlRapid Communications in Mass Spectrometry : RCM|December 3, 2003
Analysis of ketones by selected ion flow tube mass spectrometryDavid Smith, Tianshu Wang, Patrik SpanĕlRapid Communications in Mass Spectrometry : RCM|August 27, 2004
Quantification of hydrogen cyanide in humid air by selected ion flow tube mass spectrometryPatrik Spanĕl, Tianshu Wang, David SmithPhysiological Measurement|September 7, 2002
On-line, simultaneous quantification of ethanol, some metabolites and water vapour in breath following the ingestion of alcoholDavid Smith, Tianshu Wang, Patrik SpanĕlPhysiological Measurement|January 10, 2006
Generation of volatile compounds on mouth exposure to urea and sucrose: implications for exhaled breath analysisPatrik Spanĕl, Claire Turner, Tianshu Wang, et al.Rapid Communications in Mass Spectrometry : RCM|November 2, 2004
On-line analysis of diesel engine exhaust gases by selected ion flow tube mass spectrometryDavid Smith, Patrik Spanĕl, David Dabill, et al.Journal of Agricultural and Food Chemistry|February 8, 2011
SPME-GC-MS versus Selected Ion Flow Tube Mass Spectrometry (SIFT-MS) analyses for the study of volatile compound generation and oxidation status during dry fermented sausage processingAlicia Olivares, Kseniya Dryahina, José Luis Navarro, et al.International Journal of Mass Spectrometry|April 7, 2015
Product ion distributions for the reactions of NO+ with some physiologically significant aldehydes obtained using a SRI-TOF-MS instrumentPaweł Mochalski, Karl Unterkofler, Patrik Španěl, et al.Rapid Communications in Mass Spectrometry : RCM|July 1, 2014
Product ion distributions for the reactions of NO(+) with some physiologically significant volatile organosulfur and organoselenium compounds obtained using a selective reagent ionization time-of-flight mass spectrometerPaweł Mochalski, Karl Unterkofler, Patrik Španěl, et al.Pageof 116