Selected ion flow tube mass spectrometry
暂无分享,去创建一个
[1] G. Hanna,et al. Variation in Exhaled Acetone and Other Ketones in Patients Undergoing Bariatric Surgery: a Prospective Cross-sectional Study , 2018, Obesity Surgery.
[2] P. Španěl,et al. What is the real utility of breath ammonia concentration measurements in medicine and physiology? , 2018, Journal of breath research.
[3] Patrik Španěl,et al. Pentane and other volatile organic compounds, including carboxylic acids, in the exhaled breath of patients with Crohn’s disease and ulcerative colitis , 2017, Journal of breath research.
[4] David Smith,et al. On the importance of accurate quantification of individual volatile metabolites in exhaled breath , 2017, Journal of breath research.
[5] V. Shestivska,et al. Evaluation of peroxidative stress of cancer cells in vitro by real-time quantification of volatile aldehydes in culture headspace. , 2017, Rapid communications in mass spectrometry : RCM.
[6] R. Dweik,et al. Molecular breath analysis identifies the breathprint of renal failure , 2017, Journal of breath research.
[7] R. Dweik,et al. A Distinct Colon-Derived Breath Metabolome is Associated with Inflammatory Bowel Disease, but not its Complications , 2016, Clinical and Translational Gastroenterology.
[8] P. Dřevínek,et al. Do linear logistic model analyses of volatile biomarkers in exhaled breath of cystic fibrosis patients reliably indicate Pseudomonas aeruginosa infection? , 2016, Journal of breath research.
[9] P. Španěl,et al. Differentiation of pulmonary bacterial pathogens in cystic fibrosis by volatile metabolites emitted by their in vitro cultures: Pseudomonas aeruginosa, Staphylococcus aureus, Stenotrophomonas maltophilia and the Burkholderia cepacia complex , 2016, Journal of breath research.
[10] David Smith,et al. Status of selected ion flow tube MS: accomplishments and challenges in breath analysis and other areas. , 2016, Bioanalysis.
[11] David Smith,et al. Breath concentration of acetic acid vapour is elevated in patients with cystic fibrosis , 2016, Journal of breath research.
[12] David Smith,et al. Increase of methanol in exhaled breath quantified by SIFT-MS following aspartame ingestion , 2015, Journal of breath research.
[13] K. Southern,et al. Exhaled breath hydrogen cyanide as a marker of early Pseudomonas aeruginosa infection in children with cystic fibrosis , 2015, ERJ Open Research.
[14] G. Hanna,et al. Quantification of phenol in urine headspace using SIFT-MS and investigation of variability with respect to urinary concentration , 2015 .
[15] V. Shestivska,et al. Quantitative analysis of volatile metabolites released in vitro by bacteria of the genus Stenotrophomonas for identification of breath biomarkers of respiratory infection in cystic fibrosis. , 2015, Journal of breath research.
[16] David Smith,et al. Quantification by SIFT-MS of volatile compounds emitted by Aspergillus fumigatus cultures and in co-culture with Pseudomonas aeruginosa, Staphylococcus aureus and Streptococcus pneumoniae , 2014 .
[17] V. Shestivska,et al. Exhaled breath concentrations of acetic acid vapour in gastro-esophageal reflux disease , 2014, Journal of breath research.
[18] M. Patel,et al. The use of a portable breath analysis device in monitoring type 1 diabetes patients in a hypoglycaemic clamp: validation with SIFT-MS data , 2014, Journal of breath research.
[19] David Smith,et al. Breath analysis of ammonia, volatile organic compounds and deuterated water vapor in chronic kidney disease and during dialysis. , 2014, Bioanalysis.
[20] David Smith,et al. Quantification by SIFT-MS of volatile compounds emitted by in vitro cultures of S. aureus, S. pneumoniae and H. influenzae isolated from patients with respiratory diseases , 2014 .
[21] Raed A Dweik,et al. The breathprints in patients with liver disease identify novel breath biomarkers in alcoholic hepatitis. , 2014, Clinical gastroenterology and hepatology : the official clinical practice journal of the American Gastroenterological Association.
[22] R. Dweik,et al. Breath analysis in pulmonary arterial hypertension. , 2014, Chest.
[23] P. Španěl,et al. Hydrogen cyanide, a volatile biomarker of Pseudomonas aeruginosa infection , 2013, Journal of breath research.
[24] Piers R. Boshier,et al. Breath Analysis Using SIFT-MS to Assess Metabolic Status in Patients After Gastro-oesophageal Cancer Surgery- a Pilot Study , 2013 .
[25] G. Hanna,et al. Selected ion flow tube mass spectrometry analysis of exhaled breath for volatile organic compound profiling of esophago-gastric cancer. , 2013, Analytical chemistry.
[26] Raed A Dweik,et al. Single exhaled breath metabolomic analysis identifies unique breathprint in patients with acute decompensated heart failure. , 2013, Journal of the American College of Cardiology.
[27] G. Hanna,et al. Selected ion flow tube mass spectrometry analysis of volatile metabolites in urine headspace for the profiling of gastro-esophageal cancer. , 2013, Analytical chemistry.
[28] David Smith,et al. A quantitative study of the influence of inhaled compounds on their concentrations in exhaled breath , 2013, Journal of breath research.
[29] Josep Sulé-Suso,et al. Quantification by SIFT-MS of acetaldehyde released by lung cells in a 3D model. , 2013, The Analyst.
[30] P. Španěl,et al. Recent SIFT-MS Studies of Volatile Compounds in Physiology, Medicine and Cell Biology , 2013 .
[31] G. Hanna,et al. Selected ion flow tube-MS analysis of headspace vapor from gastric content for the diagnosis of gastro-esophageal cancer. , 2012, Analytical chemistry.
[32] David Smith,et al. Breath acetone concentration; biological variability and the influence of diet , 2011, Physiological measurement.
[33] Claire Turner,et al. Potential of breath and skin analysis for monitoring blood glucose concentration in diabetes , 2011, Expert review of molecular diagnostics.
[34] David Smith,et al. Can volatile compounds in exhaled breath be used to monitor control in diabetes mellitus? , 2011, Journal of breath research.
[35] David Smith,et al. Progress in SIFT-MS: breath analysis and other applications. , 2011, Mass spectrometry reviews.
[36] J. Greenman,et al. Multivariate analysis of bacterial volatile compound profiles for discrimination between selected species and strains in vitro. , 2011, Journal of microbiological methods.
[37] B. Ross,et al. Detection of acetone and isoprene in human breath using a combination of thermal desorption and selected ion flow tube mass spectrometry , 2009 .
[38] B. Ross,et al. Sub-parts per billion detection of trace volatile chemicals in human breath using Selected Ion Flow Tube Mass Spectrometry , 2008, BMC Research Notes.
[39] David Smith,et al. Quantification of acetaldehyde released by lung cancer cells in vitro using selected ion flow tube mass spectrometry. , 2003, Rapid communications in mass spectrometry : RCM.
[40] T. Holland,et al. Selected ion flow tube mass spectrometry of urine headspace. , 1999, Rapid communications in mass spectrometry : RCM.