Published in Sensors (Basel) on November 23, 2016
Electronic nose: current status and future trends. Chem Rev (2008) 4.97
Analysis of discrimination mechanisms in the mammalian olfactory system using a model nose. Nature (1982) 3.83
Applications and advances in electronic-nose technologies. Sensors (Basel) (2009) 2.98
Meta-analyses of studies of the human microbiota. Genome Res (2013) 2.35
Fecal microbiome and volatile organic compound metabolome in obese humans with nonalcoholic fatty liver disease. Clin Gastroenterol Hepatol (2013) 2.20
Volatile organic compounds from feces and their potential for diagnosis of gastrointestinal disease. FASEB J (2007) 1.77
Detection of precancerous gastric lesions and gastric cancer through exhaled breath. Gut (2015) 1.48
Microbes in the neonatal intensive care unit resemble those found in the gut of premature infants. Microbiome (2014) 1.45
GC-MS analysis of breath odor compounds in liver patients. J Chromatogr B Analyt Technol Biomed Life Sci (2008) 1.40
Intestinal microbial ecology and environmental factors affecting necrotizing enterocolitis. PLoS One (2013) 1.36
Species variation in the fecal metabolome gives insight into differential gastrointestinal function. J Proteome Res (2007) 1.30
Increased breath biomarkers of oxidative stress in diabetes mellitus. Clin Chim Acta (2004) 1.25
Current breathomics--a review on data pre-processing techniques and machine learning in metabolomics breath analysis. J Breath Res (2014) 1.22
The effects of freezing on faecal microbiota as determined using MiSeq sequencing and culture-based investigations. PLoS One (2015) 1.17
Suitability of different polymer bags for storage of volatile sulphur compounds relevant to breath analysis. J Chromatogr B Analyt Technol Biomed Life Sci (2008) 1.15
Breath isoprene--aspects of normal physiology related to age, gender and cholesterol profile as determined in a proton transfer reaction mass spectrometry study. Clin Chem Lab Med (2008) 1.15
Using a dog's superior olfactory sensitivity to identify Clostridium difficile in stools and patients: proof of principle study. BMJ (2012) 1.08
Metabolite analysis of human fecal water by gas chromatography/mass spectrometry with ethyl chloroformate derivatization. Anal Biochem (2009) 1.03
Electronic nose can discriminate colorectal carcinoma and advanced adenomas by fecal volatile biomarker analysis: proof of principle study. Int J Cancer (2013) 1.02
Breathomics in lung disease. Chest (2015) 1.00
The many faeces of colorectal cancer screening embarrassment: preliminary psychometric development and links to screening outcome. Br J Health Psychol (2011) 0.95
Noninvasive detection of lung cancer using exhaled breath. Cancer Med (2013) 0.93
Development of a novel method for detection of Clostridium difficile using HS-SPME-GC-MS. J Appl Microbiol (2014) 0.92
Rectal swabs for analysis of the intestinal microbiota. PLoS One (2014) 0.88
Intestinal microbiota of preterm infants differ over time and between hospitals. Microbiome (2014) 0.88
Exhaled Molecular Fingerprinting in Diagnosis and Monitoring: Validating Volatile Promises. Trends Mol Med (2015) 0.87
Detection of cancer through exhaled breath: a systematic review. Oncotarget (2015) 0.84
Development of an untargeted metabolomics method for the analysis of human faecal samples using Cryptosporidium-infected samples. Mol Biochem Parasitol (2012) 0.84
Quantification of pentane in exhaled breath, a potential biomarker of bowel disease, using selected ion flow tube mass spectrometry. Rapid Commun Mass Spectrom (2013) 0.83
Diagnosis of bovine tuberculosis using a metal oxide-based electronic nose. Lett Appl Microbiol (2015) 0.83
Optimized Sample Handling Strategy for Metabolic Profiling of Human Feces. Anal Chem (2016) 0.82
Faecal gas analysis by electronic nose as novel, non-invasive method for assessment of active and quiescent paediatric inflammatory bowel disease: Proof of principle study. J Crohns Colitis (2014) 0.82
Geographical variation in the exhaled volatile organic compounds. J Breath Res (2013) 0.81
Center Variation in Intestinal Microbiota Prior to Late-Onset Sepsis in Preterm Infants. PLoS One (2015) 0.81
Investigation of faecal volatile organic metabolites as novel diagnostic biomarkers in inflammatory bowel disease. Aliment Pharmacol Ther (2016) 0.80
Temperature-dependent release of volatile organic compounds of eucalypts by direct analysis in real time (DART) mass spectrometry. Rapid Commun Mass Spectrom (2009) 0.80
An overview of fecal sample preparation for global metabolic profiling. J Pharm Biomed Anal (2015) 0.79
Effect of transportation and storage using sorbent tubes of exhaled breath samples on diagnostic accuracy of electronic nose analysis. J Breath Res (2012) 0.79
Detection of Sepsis in Preterm Infants by Fecal Volatile Organic Compounds Analysis: A Proof of Principle Study. J Pediatr Gastroenterol Nutr (2016) 0.78
A dual center study to compare breath volatile organic compounds from smokers and non-smokers with and without COPD. J Breath Res (2016) 0.78
Early Detection of Necrotizing Enterocolitis by Fecal Volatile Organic Compounds Analysis. J Pediatr (2015) 0.77
Variation in Gas and Volatile Compound Emissions from Human Urine as It Ages, Measured by an Electronic Nose. Biosensors (Basel) (2016) 0.77
How long may a breath sample be stored for at -80 °C? A study of the stability of volatile organic compounds trapped onto a mixed Tenax:Carbograph trap adsorbent bed from exhaled breath. J Breath Res (2016) 0.77
Sampling the Body Odor of Primates: Cotton Swabs Sample Semivolatiles Rather Than Volatiles. Chem Senses (2016) 0.77
Analysis of the effects of microbiome-related confounding factors on the reproducibility of the volatolomic test. J Breath Res (2016) 0.77
Rapid, accurate, and on-site detection of C. difficile in stool samples. Am J Gastroenterol (2015) 0.77
Diagnosing gastrointestinal illnesses using fecal headspace volatile organic compounds. World J Gastroenterol (2016) 0.76
Effect of age and storage conditions on the volatile organic compound profile of blood. Forensic Sci Med Pathol (2014) 0.76
Sniffing Out Paediatric Gastro-intestinal Diseases: the Potential of Volatile Organic Compounds as Biomarkers for Disease. J Pediatr Gastroenterol Nutr (2016) 0.76