We have explored laser depth profiling to obtain data sets for U-series as well as Sr analyses. Laser probing with an 81 gm spot size allows for the exploration of low uranium domains of up to 400 gm below the outer surface in tooth enamel. These low U domains will contain Sr isotope compositions of the individual, that are least affected by diagenetic Sr overprints. The small holes drilled for U surveying are not visible to the naked eye. Using larger spot sizes of around 233 gm, laser drilling can be used to obtain reliable U-series isotope data to a depth of approximately 1000 gm in enamel and around 1300 gm in bone. Furthermore, meaningful Sr-87/Sr-86 isotope data can also be obtained with this spot size. Using our sampling strategy, th...
The use of LA–MC–ICPMS in anthropological research is an innovative approach for measuring strontium...
This paper reviews the possible approaches for dating of human bones and teeth, older than 500,000. ...
We present the Sr isotopic composition of enamel of the most ancient deciduous tooth ever discovered...
We have explored laser depth profiling to obtain data sets for U-series as well as Sr analyses. Lase...
Over the past decade, we have applied laser ablation ICP mass spectrometry U-series analysis to a la...
U and Th concentration profiles in fossil hominid and faunal teeth have been measured by laser ablat...
U and Th concentration profiles in fossil hominid and faunal teeth have been measured by laser ablat...
Strontium isotope ratios measured in fossil human teeth are a powerful tool to investigate past mobi...
We have mapped U (238U) and Th (232Th) elemental concentrations as well as U-series isotope distribu...
We have mapped U (238U) and Th (232Th) elemental concentrations as well as U-series isotope distribu...
High resolution analysis of uranium and thorium concentration as well as U-series isotope distributi...
We have mapped U (238U) and Th (232Th) elemental concentrations as well as U-series isotope distribu...
To understand human evolution, archaeologists require precise chronologies to compare and contrast t...
International audienceTo overcome the problems associated with the traditional U-series dating proto...
To evaluate the possibility of obtaining detailed individual mobility data from archaeological teeth...
The use of LA–MC–ICPMS in anthropological research is an innovative approach for measuring strontium...
This paper reviews the possible approaches for dating of human bones and teeth, older than 500,000. ...
We present the Sr isotopic composition of enamel of the most ancient deciduous tooth ever discovered...
We have explored laser depth profiling to obtain data sets for U-series as well as Sr analyses. Lase...
Over the past decade, we have applied laser ablation ICP mass spectrometry U-series analysis to a la...
U and Th concentration profiles in fossil hominid and faunal teeth have been measured by laser ablat...
U and Th concentration profiles in fossil hominid and faunal teeth have been measured by laser ablat...
Strontium isotope ratios measured in fossil human teeth are a powerful tool to investigate past mobi...
We have mapped U (238U) and Th (232Th) elemental concentrations as well as U-series isotope distribu...
We have mapped U (238U) and Th (232Th) elemental concentrations as well as U-series isotope distribu...
High resolution analysis of uranium and thorium concentration as well as U-series isotope distributi...
We have mapped U (238U) and Th (232Th) elemental concentrations as well as U-series isotope distribu...
To understand human evolution, archaeologists require precise chronologies to compare and contrast t...
International audienceTo overcome the problems associated with the traditional U-series dating proto...
To evaluate the possibility of obtaining detailed individual mobility data from archaeological teeth...
The use of LA–MC–ICPMS in anthropological research is an innovative approach for measuring strontium...
This paper reviews the possible approaches for dating of human bones and teeth, older than 500,000. ...
We present the Sr isotopic composition of enamel of the most ancient deciduous tooth ever discovered...