Page 194 - Advances in Forensic Applications of Mass Spectrometry - Jehuda Yinon
P. 194

1522_C04.fm  Page 177  Thursday, November 13, 2003  9:54 AM









                               35. Leckrone, K.J. and Hayes, J.M.,  Water-induced errors in continuous-flow
                                   carbon isotope ratio mass spectrometry, Anal. Chem., 70, 2737, 1998.
                               36. Matucha, M. et al., Isotope effect in gas-liquid-chromatography of labeled
                                   compounds, J. Chromatogr, 588, 251, 1991.
                               37. Matucha, M., Isotope effects (IEs) in gas chromatography (GC) of labelled
                                   compounds (LCs), in Synthesis and Applications of Isotopically Labelled Com-
                                   pounds, Allen, J., Ed., John Wiley & Sons, New York, 1995, p. 489.
                               38. Meier-Augenstein, W. et al., Influence of gas-chromatographic parameters on
                                   measurement of C-13/C-12 isotope ratios by gas-liquid-chromatography
                                   combustion isotope ratio mass-spectrometry. 1, J. Chromatogr. A, 752, 233,
                                   1996.
                               39. Prosser, S.J. and Scrimgeour, C.M., High-precision determination of H-2/H-
                                   1 in H  and H O by continuous-flow isotope ratio mass-spectrometry, Anal.
                                              2
                                        2
                                   Chem., 67, 1992, 1995.
                               40. Scrimgeour, C.M. et al., Measurement of deuterium incorporation into fatty
                                   acids by gas chromatography isotope ratio mass spectrometry, Rapid Com-
                                   mun. Mass Spectrom., 13, 271, 1999.
                               41. Corso, T.N. and Brenna, J.T., High-precision position-specific isotope anal-
                                   ysis, Proc. Natl. Acad. Sci. U.S.A., 94, 1049, 1997.
                               42. Meier-Augenstein, W. et al., Bridging the information gap between isotope
                                   ratio mass-spectrometry and conventional mass-spectrometry,  Biol. Mass
                                   Spectrom., 23, 376, 1994.
                               43. Meier-Augenstein, W., Online recording of C-13/C-12 ratios and mass-spec-
                                   tra in one gas-chromatographic analysis., J. High Res. Chromatogr., 18, 28,
                                   1995.
                                                                         13
                               44. Meier-Augenstein, W. et al., Determination of  C enrichment by conven-
                                   tional GC-MS and GC-(MS)-C-IRMS, Isotopes Environ. Health Stud., 31, 261,
                                   1995.
                               45. Chang, W.-T., Smith, J., and Liu, R.H., Isotopic analogs as internal standards
                                   for quantitative GC/MS analysis — molecular abundance and retention time
                                   difference as interference factors, J. Forensic Sci., 47, 873, 2002.
                                                                           12
                               46. Smith, B.N. and Epstein, S., Two categories of  C/ C ratios of higher plants,
                                                                       13
                                   Plant Physiol., 47, 308, 1971.
                                                              12
                               47. Dellens, E., La discrimination du  C et des trois types de metabolisme des
                                   plantes, Physiol. Veget., 14, 641, 1976.
                                                                                             18
                               48. Rittenberg, D. and Ponticorvo, L., A method for the determination of the  O
                                   concentration of the oxygen of organic compounds, Int. J. Appl. Radiat. Isot.,
                                   1, 208, 1956.
                               49. Parker, P.L., The chemical basis of the use of  C/ C ratios to detect the
                                                                         13
                                                                             12
                                   addition of sweeteners to fruit juice concentrates, in  Proc. Symp.  Technol.
                                   Probl. Fruit Juice Concentrates, Oregon State University, Portland, OR, 1981,
                                   p. 50.

                             © 2004 by CRC Press LLC
   189   190   191   192   193   194   195   196   197   198   199