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Strontium isotope ratios of human hair record intra-city variations in tap water source.


ABSTRACT: The oxygen (18O/16O) isotope analysis of hair is commonly applied to reconstruct an individual's residence history. However, region-of-origin as determined from oxygen isotope values (?18O) alone is often spatially indistinct. Adding additional geochemical recorders can refine region-of-origin estimates. In this capacity, strontium (87Sr/86Sr) isotope analysis has attracted increased interest. While 87Sr/86Sr reflects the influences of local geology, 87Sr/86Sr of hair includes both external environmental signals as well as the internal dietary indicators. To better understand the impact of these contributions to the spatial signal encoded within 87Sr/86Sr of hair, human hair was collected from three locations within Salt Lake City, Utah along with the donor's sex. The 87Sr/86Sr and ?18O of hair and local tap water were measured. There were no significant relationships between sex and either ?18O or 87Sr/86Sr of hair, nor between collection location and the ?18O of hair. However, we found significant associations between collection location and 87Sr/86Sr of hair. These findings suggest that interactions with local water may be an important source of Sr to human hair and that the 87Sr/86Sr of hair may have the capacity to record differences in 87Sr/86Sr of tap waters on small spatial scales.

SUBMITTER: Tipple BJ 

PROVIDER: S-EPMC5820339 | biostudies-literature | 2018 Feb

REPOSITORIES: biostudies-literature

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Strontium isotope ratios of human hair record intra-city variations in tap water source.

Tipple Brett J BJ   Valenzuela Luciano O LO   Ehleringer James R JR  

Scientific reports 20180220 1


The oxygen (<sup>18</sup>O/<sup>16</sup>O) isotope analysis of hair is commonly applied to reconstruct an individual's residence history. However, region-of-origin as determined from oxygen isotope values (δ<sup>18</sup>O) alone is often spatially indistinct. Adding additional geochemical recorders can refine region-of-origin estimates. In this capacity, strontium (<sup>87</sup>Sr/<sup>86</sup>Sr) isotope analysis has attracted increased interest. While <sup>87</sup>Sr/<sup>86</sup>Sr reflects t  ...[more]

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