There are over 1000 foraminiferal species presently living in marine environments, but relatively few of these can be used as direct indicators of sea level. We detail here certain assemblages occupying marsh environments that can be used for that purpose. Marsh foraminiferal assemblages have been shown to occur worldwide within narrowly defined vertical zones some of which extend less than 10 cm in total vertical range. These assemblage zones, once known, can be relocated in paleo-marsh deposits and accurately related to paleo-sea level. The key to success of these organisms as sea-level indicators is that their primary controlling factor appears to be elevation above mean sea level. Other foraminiferal assemblages are controlled by a s...
International audienceIn the present study we investigate the ecology and distribution of living ben...
Foraminifera from salt-marsh environments have been used extensively in quantitative relative sea-le...
We collected contemporary foraminiferal training sets from two salt marshes to enable more precise a...
Salt-marsh foraminifera are routinely used as sea-level indicators since their vertical distribution...
none6Foraminiferal assemblages preserved within salt-marsh sediment can provide an accurate and prec...
Foraminiferal assemblages preserved within salt-marsh sediment can provide an accurate and precise m...
Foraminiferal assemblages preserved within salt-marsh sediment can provide an accurate and precise m...
Geological reconstructions of relative sea-level change have been greatly enhanced by continuous hig...
Salt-marsh foraminifera have been used to reconstruct Holocene sea-level changes from coastlines aro...
Geological reconstructions of relative sea-level change have been greatly enhanced by continuous hig...
We investigated foraminiferal distributions from two salt-marsh sites at Thunderbolt and Georgetown,...
Foraminiferal assemblages are useful for producing high resolution sea-level curves, interpreting an...
We present a quantitative technique to reconstruct sea level from assemblages of salt-marsh foramini...
We present a quantitative technique to reconstruct sea level from assemblages of salt-marsh foramini...
Salt-marsh foraminifera are used as precise sea-level change indicators as surface assemblages vary ...
International audienceIn the present study we investigate the ecology and distribution of living ben...
Foraminifera from salt-marsh environments have been used extensively in quantitative relative sea-le...
We collected contemporary foraminiferal training sets from two salt marshes to enable more precise a...
Salt-marsh foraminifera are routinely used as sea-level indicators since their vertical distribution...
none6Foraminiferal assemblages preserved within salt-marsh sediment can provide an accurate and prec...
Foraminiferal assemblages preserved within salt-marsh sediment can provide an accurate and precise m...
Foraminiferal assemblages preserved within salt-marsh sediment can provide an accurate and precise m...
Geological reconstructions of relative sea-level change have been greatly enhanced by continuous hig...
Salt-marsh foraminifera have been used to reconstruct Holocene sea-level changes from coastlines aro...
Geological reconstructions of relative sea-level change have been greatly enhanced by continuous hig...
We investigated foraminiferal distributions from two salt-marsh sites at Thunderbolt and Georgetown,...
Foraminiferal assemblages are useful for producing high resolution sea-level curves, interpreting an...
We present a quantitative technique to reconstruct sea level from assemblages of salt-marsh foramini...
We present a quantitative technique to reconstruct sea level from assemblages of salt-marsh foramini...
Salt-marsh foraminifera are used as precise sea-level change indicators as surface assemblages vary ...
International audienceIn the present study we investigate the ecology and distribution of living ben...
Foraminifera from salt-marsh environments have been used extensively in quantitative relative sea-le...
We collected contemporary foraminiferal training sets from two salt marshes to enable more precise a...