Lead isotopic analysis of infant bone tissue dating from the Roman era via multicollector ICP–mass spectrometry
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F. Vanhaecke | D. Muynck | C. Cloquet | L. Moens | G. Quitté | E. Smits | F. Wolff
[1] F. Albarède,et al. Pb–Pb dating constraints on the accretion and cooling history of chondrites , 2007 .
[2] C. Pérez-Sirvent,et al. Diagenesis, not biogenesis: Two late Roman skeletal examples. , 2006, The Science of the total environment.
[3] D. Weiss,et al. Use of isotope ratios to assess sources of Pb and Zn dispersed in the environment during mining and ore processing within the Orlovka–Spokoinoe mining site (Russia) , 2006 .
[4] A. Millard. Comment on Martínez-García et al. "Heavy metals in human bones in different historical epochs". , 2006, The Science of the total environment.
[5] M. Porti,et al. Heavy metals in human bones in different historical epochs. , 2005, The Science of the total environment.
[6] N. Bower,et al. Lead isotope analysis of intra-skeletal variation in a 19th century mental asylum cemetery: diagenesis versus migration , 2005 .
[7] F. Albarède,et al. Precise and accurate isotopic measurements using multiple-collector ICPMS 1 1 Associate editor: Y. Amelin , 2004 .
[8] D. Vance,et al. Mass discrimination correction in multiple-collector plasma source mass spectrometry: an example using Cu and Zn isotopes , 2004 .
[9] M. Rehkämper,et al. Investigation of the mass discrimination of multiple collector ICP-MS using neodymium isotopes and the generalised power law , 2003 .
[10] B. Sharp,et al. Instrument response functions, mass bias and matrix effects in isotope ratio measurements and semi-quantitative analysis by single and multi-collector ICP-MS , 2003 .
[11] Sergio Piomelli,et al. Childhood lead poisoning , 2009 .
[12] Francis Albarède,et al. High-precision analysis of Pb isotope ratios by multi-collector ICP-MS , 2000 .
[13] M. Gloor,et al. Sphagnum mosses as archives of recent and past atmospheric lead deposition in Switzerland , 1999 .
[14] M. Frank,et al. A new variable dispersion double-focusing plasma mass spectrometer with performance illustrated for Pb isotopes , 1998 .
[15] P. Farías. Determinants of bone and blood lead levels among teenagers living in urban areas with high lead exposure. , 1998, Environmental health perspectives.
[16] M. Rehkämper,et al. Applications of Multiple Collector-ICPMS to Cosmochemistry, Geochemistry, and Paleoceanography , 1998 .
[17] P. D. P. Taylor,et al. Isotopic compositions of the elements 1997 (Technical Report) , 1998 .
[18] J. Hoppin,et al. In vivo bone lead measurement in suburban teenagers. , 1997, Pediatrics.
[19] A. J. Walder,et al. Recent developments in inductively coupled plasma magnetic sector multiple collector mass spectrometry , 1995 .
[20] S. Taylor,et al. The geochemical evolution of the continental crust , 1995 .
[21] B. Gerson,et al. Lead poisoning--Part II. Effects and assay. , 1994, Clinics in laboratory medicine.
[22] B. Gerson,et al. Lead poisoning--Part I. Incidence, etiology, and toxicokinetics. , 1994, Clinics in laboratory medicine.
[23] A. J. Walder,et al. High-Precision Lead Isotope Ratio Measurement by Inductively Coupled Plasma Multiple Collector Mass Spectrometry , 1993 .
[24] K. Reinhard,et al. Evaluation of lead concentrations in 18th-century Omaha Indian skeletons using ICP-MS. , 1992, American journal of physical anthropology.
[25] Howard Hu,et al. Knowledge of diagnosis and reproductive history among survivors of childhood plumbism. , 1991, American journal of public health.
[26] M. Rabinowitz,et al. Toxicokinetics of bone lead. , 1991, Environmental health perspectives.
[27] F. Elbaz-Poulichet,et al. Lead cycling in estuaries, illustrated by the Gironde estuary, France , 1984, Nature.
[28] J. Nriagu. Saturnine gout among Roman aristocrats. Did lead poisoning contribute to the fall of the Empire? , 1983, The New England journal of medicine.
[29] Alan L. Gray,et al. Inductively coupled argon plasma as an ion source for mass spectrometric determination of trace elements , 1980 .
[30] G. Wetherill,et al. Kinetic analysis of lead metabolism in healthy humans. , 1976, The Journal of clinical investigation.
[31] F. Vanhaecke,et al. Development of a new method for Pb isotopic analysis of archaeological artefacts using single-collector ICP-dynamic reaction cell-MS , 2008 .
[32] M. Ketterer,et al. Human lead exposure in a late 19th century mental asylum population. , 2007, The Science of the total environment.
[33] G. Libourel,et al. Atmospheric pollutant dispersion around an urban area using trace metal concentrations and Pb isotopic compositions in epiphytic lichens , 2006 .
[34] E. Knipping,et al. Insights from the BRAVO study on nesting global models to specify boundary conditions in regional air quality modeling simulations , 2006 .
[35] F. Albarède,et al. Analytical Methods for Non-Traditional Isotopes , 2004 .
[36] F. Vanhaecke,et al. Overcoming spectral overlap in isotopic analysis via single- and multi-collector ICP–mass spectrometry , 2004, Analytical and bioanalytical chemistry.
[37] T. Walczyk. TIMS versus multicollector-ICP-MS: coexistence or struggle for survival? , 2004, Analytical and bioanalytical chemistry.
[38] M. Rehkämper,et al. Investigation of matrix effects for Pb isotope ratio measurements by multiple collector ICP-MS: verification and application of optimized analytical protocols , 2000 .
[39] S. Galer,et al. Practical application of lead triple spiking for correction of instrumental mass discrimination , 1998 .
[40] A. J. Walder,et al. Communication. Isotopic ratio measurement using a double focusing magnetic sector mass analyser with an inductively coupled plasma as an ion source , 1992 .
[41] A. L. Gray. The evolution of the ICP as an ion source for mass spectrometry , 1986 .
[42] I. Thornton,et al. Trace Elements in Soils and Plants , 1980 .
[43] Rutilius Taurus Aemilianus. Palladius,et al. De re rustica , 1980 .