Rapid and quantitative analysis and bioprocesses using pyrolysis mass spectrometry and neural networks: application to indole production

[1]  J. T. Magee,et al.  Epidemiological typing of Streptococcus pyogenes by pyrolysis mass spectrometry. , 1989, Journal of medical microbiology.

[2]  D. Signorini,et al.  Neural networks , 1995, The Lancet.

[3]  R. Schmitt,et al.  Tn1721 derivatives for transposon mutagenesis, restriction mapping and nucleotide sequence analysis. , 1986, Gene.

[4]  R. E. Aries,et al.  Evaluation of a low-cost, automated pyrolysis-mass spectrometer , 1986 .

[5]  R. Kajioka,et al.  Curie-point pyrolysis—mass spectrometry of Legionella species , 1984 .

[6]  Kurt Hornik,et al.  Universal approximation of an unknown mapping and its derivatives using multilayer feedforward networks , 1990, Neural Networks.

[7]  J. Fry,et al.  Bacterial Genetics in Natural Environments , 1990, Springer Netherlands.

[8]  N. Nie,et al.  Statistical Package for the Social Sciences , 1970 .

[9]  David E. Rumelhart,et al.  MSnet: A Neural Network which Classifies Mass Spectra , 1990 .

[10]  Philip D. Wasserman,et al.  Neuralsource: The Bibliographic Guide to Artificial Neural Networks , 1990 .

[11]  James L. McClelland,et al.  Explorations in parallel distributed processing: a handbook of models, programs, and exercises , 1988 .

[12]  R. Freeman,et al.  Pyrolysis-mass spectrometry (Py-MS) for the rapid epidemiological typing of clinically significant bacterial pathogens. , 1990, Journal of medical microbiology.

[13]  H. Meuzelaar,et al.  Pyrolysis mass spectrometry: a new method to differentiate between the mycobacteria of the 'tuberculosis complex' and other mycobacteria. , 1981, Journal of general microbiology.

[14]  Anders Krogh,et al.  Introduction to the theory of neural computation , 1994, The advanced book program.

[15]  Halbert White,et al.  Connectionist nonparametric regression: Multilayer feedforward networks can learn arbitrary mappings , 1990, Neural Networks.

[16]  Royston Goodacre,et al.  Detection of small genotypic changes in Escherichia coli by pyrolysis mass spectroscopy , 1990 .

[17]  W. J. Irwin,et al.  Analytical pyrolysis : a comprehensive guide , 1982 .

[18]  D. Drucker Chapter III. Gas-Liquid Chromatographic Chemotaxonomy , 1976 .

[19]  S Mangrulkar,et al.  Artificial neural systems. , 1990, ISA transactions.

[20]  L. Larsson,et al.  Gas chromatography/mass spectrometry: applications in microbiology. , 1984 .

[21]  Philip D. Wasserman,et al.  Neural computing - theory and practice , 1989 .

[22]  W. Windig,et al.  Nonsupervised numerical component extraction from pyrolysis mass spectra of complex mixtures. , 1984, Analytical chemistry.

[23]  C. Gutteridge 6 Characterization of Microorganisms by Pyrolysis Mass Spectrometry , 1988 .

[24]  Edmund R. Malinowski,et al.  Factor Analysis in Chemistry , 1980 .

[25]  Gregory A. Mack,et al.  Chemometrics: A Textbook , 1990 .

[26]  H. Degn,et al.  The parasitic flagellates Trichomonas vaginalis and Tritrichomonas foetus produce indole and dimethyl disulphide: direct characterization by membrane inlet tandem mass spectrometry. , 1991, Journal of general microbiology.

[27]  James L. McClelland Explorations In Parallel Distributed Processing , 1988 .

[28]  Kurt Hornik,et al.  Multilayer feedforward networks are universal approximators , 1989, Neural Networks.

[29]  W. Windig,et al.  Chemical interpretation of differences in pyrolysis—mass spectra of simulated mixtures of biopolymers by factor analysis with graphical rotation , 1982 .

[30]  C. Gutteridge,et al.  Curie-point pyrolysis mass spectrometry applied to characterization and identification of selected Bacillus species. , 1984, Journal of general microbiology.

[31]  M. McIllmurray,et al.  7 Labelled-Antibody Methods for Detection and Identification of Microorganisms , 1988 .

[32]  K. Lindström,et al.  Detection of Rhizobia by DNA-DNA-hybridization from soil samples: problems and perspectives. , 1990 .

[33]  James L. McClelland,et al.  Parallel distributed processing: explorations in the microstructure of cognition, vol. 1: foundations , 1986 .