We characterize the evolutionary radiation of planktic foraminifera by the test size distributions of entire assemblages in more than 500 Cenozoic marine sediment samples, including more than 1 million tests. Calibration of Holocene size patterns with environmental parameters and comparisons with Cenozoic paleoproxy data show a consistently positive correlation between test size and surface-water stratification intensity. We infer that the observed macroevolutionary increase in test size of planktic foraminifera through the Cenozoic was an adaptive response to intensifying surface-water stratification in low latitudes, which was driven by polar cooling
Foraminifera are marine protists that evolved and diversified throughout the Phanerozoic Eon. These...
A high-resolution analysis of sediments recovered at ODP Site 1209B (Shatsky Rise – NW Pacific Ocean...
The Paleogene evolutionary records of planktonic foraminifera and larger benthic foraminifera show p...
We characterize the evolutionary radiation of planktic foraminifera by the test size distributions o...
The size of any organism is influenced by the surrounding ecological conditions. In this study, we i...
The iterative evolutionary radiation of planktic foraminifers is a well-documented macroevolutionary...
The Earth is currently experiencing rates of environmental change unprecedented in the last 66 milli...
In this study, I have examined the micro- and macroevolutionary changes in planktonic foraminifera a...
The size of any organism is influenced by the surrounding ecological conditions. In this study, we i...
Humans are changing the Earth. What is unknown is how biotic communities and ecosystems will react ...
Extant planktonic foraminifera display positive covariance between δ13C signals and test size. As do...
The Pliocene-Recent is associated with many important climatic and paleoceanographic changes, which ...
This dissertation statistically investigated putative biotic and abiotic drivers of ecological chara...
The Cenozoic planktonic foraminifera (PF) (calcareous zooplankton) have arguably the most detailed f...
In this dissertation, I investigate macroevolutionary patterns and dynamics in planktonic foraminife...
Foraminifera are marine protists that evolved and diversified throughout the Phanerozoic Eon. These...
A high-resolution analysis of sediments recovered at ODP Site 1209B (Shatsky Rise – NW Pacific Ocean...
The Paleogene evolutionary records of planktonic foraminifera and larger benthic foraminifera show p...
We characterize the evolutionary radiation of planktic foraminifera by the test size distributions o...
The size of any organism is influenced by the surrounding ecological conditions. In this study, we i...
The iterative evolutionary radiation of planktic foraminifers is a well-documented macroevolutionary...
The Earth is currently experiencing rates of environmental change unprecedented in the last 66 milli...
In this study, I have examined the micro- and macroevolutionary changes in planktonic foraminifera a...
The size of any organism is influenced by the surrounding ecological conditions. In this study, we i...
Humans are changing the Earth. What is unknown is how biotic communities and ecosystems will react ...
Extant planktonic foraminifera display positive covariance between δ13C signals and test size. As do...
The Pliocene-Recent is associated with many important climatic and paleoceanographic changes, which ...
This dissertation statistically investigated putative biotic and abiotic drivers of ecological chara...
The Cenozoic planktonic foraminifera (PF) (calcareous zooplankton) have arguably the most detailed f...
In this dissertation, I investigate macroevolutionary patterns and dynamics in planktonic foraminife...
Foraminifera are marine protists that evolved and diversified throughout the Phanerozoic Eon. These...
A high-resolution analysis of sediments recovered at ODP Site 1209B (Shatsky Rise – NW Pacific Ocean...
The Paleogene evolutionary records of planktonic foraminifera and larger benthic foraminifera show p...