Patterns of time since last meal revealed by sparse PCA in an observational LC–MS based metabolomics study
暂无分享,去创建一个
E. Acar | A. Tjønneland | M. Rasmussen | J. Christensen | L. Dragsted | A. Olsen | Gözde Gürdeniz | L. Hansen | T. Barri | G. Gürdeniz
[1] R. Tibshirani,et al. Sparse Principal Component Analysis , 2006 .
[2] Paul Geladi,et al. Principal Component Analysis , 1987, Comprehensive Chemometrics.
[3] E. Schleicher,et al. Changes of the plasma metabolome during an oral glucose tolerance test: is there more than glucose to look at? , 2009, American journal of physiology. Endocrinology and metabolism.
[4] J. Aoki,et al. Emerging lysophospholipid mediators, lysophosphatidylserine, lysophosphatidylthreonine, lysophosphatidylethanolamine and lysophosphatidylglycerol. , 2009, Prostaglandins & other lipid mediators.
[5] Rasmus Bro,et al. A tutorial on the Lasso approach to sparse modeling , 2012 .
[6] R. Kleemann,et al. Plasma metabolomics and proteomics profiling after a postprandial challenge reveal subtle diet effects on human metabolic status , 2011, Metabolomics.
[7] T. Skov,et al. The Effect of LC-MS Data Preprocessing Methods on the Selection of Plasma Biomarkers in Fed vs. Fasted Rats , 2012, Metabolites.
[8] Jianhua Z. Huang,et al. Sparse principal component analysis via regularized low rank matrix approximation , 2008 .
[9] P. Meikle,et al. Plasma Lysophosphatidylcholine Levels Are Reduced in Obesity and Type 2 Diabetes , 2012, PloS one.
[10] E. Mariman,et al. Metabolomics of prolonged fasting in humans reveals new catabolic markers , 2010, Metabolomics.
[11] Serge Rudaz,et al. UPLC-TOF-MS for plant metabolomics: a sequential approach for wound marker analysis in Arabidopsis thaliana. , 2008, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[12] Tom F. Wilderjans,et al. A flexible framework for sparse simultaneous component based data integration , 2011, BMC Bioinformatics.
[13] B. Beaufrère,et al. Slow and fast dietary proteins differently modulate postprandial protein accretion. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[14] A. Smilde,et al. Large-scale human metabolomics studies: a strategy for data (pre-) processing and validation. , 2006, Analytical chemistry.
[15] V. Mootha,et al. Metabolite profiles and the risk of developing diabetes , 2011, Nature Network Boston.
[16] Kun Wook Chung,et al. Lysophosphatidylcholine as an effector of fatty acid-induced insulin resistance[S] , 2011, Journal of Lipid Research.
[17] Rasmus Bro,et al. Coupled Matrix Factorization with Sparse Factors to Identify Potential Biomarkers in Metabolomics , 2012, Int. J. Knowl. Discov. Bioinform..
[18] A. Tjønneland,et al. Study design, exposure variables, and socioeconomic determinants of participation in Diet, Cancer and Health: A population-based prospective cohort study of 57,053 men and women in Denmark , 2007, Scandinavian journal of public health.
[19] Matej Oresic,et al. MZmine 2: Modular framework for processing, visualizing, and analyzing mass spectrometry-based molecular profile data , 2010, BMC Bioinformatics.
[20] D. Matthews,et al. Insulin-mediated reduction of whole body protein breakdown. Dose-response effects on leucine metabolism in postabsorptive men. , 1985, The Journal of clinical investigation.
[21] R. Wurtman,et al. Daily rhythms in the concentrations of various amino acids in human plasma. , 1968, The New England journal of medicine.
[22] G. Schmitz,et al. Metabolism and atherogenic disease association of lysophosphatidylcholine. , 2010, Atherosclerosis.
[23] S. Robins,et al. Origin of plasma lysophosphatidylcholine: evidence for direct hepatic secretion in the rat. , 1985, The Journal of laboratory and clinical medicine.
[24] Fabian J Theis,et al. The dynamic range of the human metabolome revealed by challenges , 2012, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[25] L. Dragsted,et al. Metabolic fingerprinting of high-fat plasma samples processed by centrifugation- and filtration-based protein precipitation delineates significant differences in metabolite information coverage. , 2012, Analytica chimica acta.
[26] S. Keleş,et al. Sparse partial least squares regression for simultaneous dimension reduction and variable selection , 2010, Journal of the Royal Statistical Society. Series B, Statistical methodology.
[27] Genevera I. Allen,et al. Sparse non-negative generalized PCA with applications to metabolomics , 2011, Bioinform..
[28] Ru Wei,et al. Metabolic profiling of the human response to a glucose challenge reveals distinct axes of insulin sensitivity , 2008, Molecular systems biology.