Abstract Boron isotopic and elemental analysis of coral aragonite can give important insights into the calcification strategies employed in coral skeletal construction. Traditional methods of analysis have limited spatial (and thus temporal) resolution, hindering attempts to unravel skeletal heterogeneity. Laser ablation mass spectrometry allows a much more refined view, and here we employ these techniques to explore boron isotope and co-varying elemental ratios in the tropical coral Siderastrea siderea. We generate two-dimensional maps of the carbonate parameters within the calcification medium that deposited the skeleton, which reveal large heterogeneities in carbonate chemistry across the macro-structure of a coral polyp. These differenc...
Following the development of mass spectrometry techniques, proxies based on isotopic composition are...
Using the CRPG-CNRS Cameca 1270 ion microprobe facility, we have measured boron isotopic composition...
Deep-sea corals were discovered over a century ago, but it is only over recent years that focused ef...
Boron isotopic and elemental analysis of coral aragonite can give important insights into the calcif...
Coral calcification is a complex biologically controlled process of hard skeleton formation, and it ...
Coral calcification is a complex biologically controlled process of hard skeleton formation, and it ...
Boron isotopic and elemental systematics are used to define the vital effects for the temperate shal...
Coral skeletal growth is sensitive to environmental change and may be adversely impacted by an acidi...
International audienceEarly-life stages of reef-building corals are vital to coral existence and ree...
The purpose of this study is to investigate the relationship between minor element in coral skeleton...
International audience[1] Using the CRPG-CNRS Cameca 1270 ion microprobe facility, we have measured ...
Coral skeletal boron isotopes have been established as a proxy for seawater pH, yet it remains uncle...
Coral skeletal boron isotopes have been established as a proxy for seawater pH, yet it remains uncle...
Early-life stages of reef-building corals are vital to coral existence and reef maintenance. It is t...
Following the development of mass spectrometry techniques, proxies based on isotopic composition are...
Using the CRPG-CNRS Cameca 1270 ion microprobe facility, we have measured boron isotopic composition...
Deep-sea corals were discovered over a century ago, but it is only over recent years that focused ef...
Boron isotopic and elemental analysis of coral aragonite can give important insights into the calcif...
Coral calcification is a complex biologically controlled process of hard skeleton formation, and it ...
Coral calcification is a complex biologically controlled process of hard skeleton formation, and it ...
Boron isotopic and elemental systematics are used to define the vital effects for the temperate shal...
Coral skeletal growth is sensitive to environmental change and may be adversely impacted by an acidi...
International audienceEarly-life stages of reef-building corals are vital to coral existence and ree...
The purpose of this study is to investigate the relationship between minor element in coral skeleton...
International audience[1] Using the CRPG-CNRS Cameca 1270 ion microprobe facility, we have measured ...
Coral skeletal boron isotopes have been established as a proxy for seawater pH, yet it remains uncle...
Coral skeletal boron isotopes have been established as a proxy for seawater pH, yet it remains uncle...
Early-life stages of reef-building corals are vital to coral existence and reef maintenance. It is t...
Following the development of mass spectrometry techniques, proxies based on isotopic composition are...
Using the CRPG-CNRS Cameca 1270 ion microprobe facility, we have measured boron isotopic composition...
Deep-sea corals were discovered over a century ago, but it is only over recent years that focused ef...