Geologist at sea: aspects of ocean history.
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Summary
Ocean history is largely read from deep-sea sediments, using microscopic fossils, notably foraminifers, which provided for a new geologic understanding of climate change and evolution in the sea.
- Type
- article
- Published
- 2011-01-01
- Cited by
- 25
- References
- 146
- OpenAlex
- https://openalex.org/W21329197
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:21201892
Keywords
Computer science
References
- Ice Ages And Astronomical Causes
- Upwelling systems : evolution since the Early Miocene
- North Atlantic foraminifera
- Das Problem der Klimaänderungen in Vergangenheit und Zukunft
- Die Klimate der geologischen Vorzeit.
- Biostratigraphy: Microfossils and Geological Time
- The late Eocene Earth : hothouse, icehouse, and impacts
- Terminal Eocene Events
- The Future of Marine Geology and Geophysics : report of a workshop : Ashland Hills, Oregon, December 5-7, 1996
- Seasonal reconstructions of the earth's surface at the last glacial maximum
- From greenhouse to icehouse : the marine Eocene-Oligocene transition
- The South Atlantic
- Catastrophes and Earth History: The New Uniformitarianism
- Mathematische Klimalehre und astronomische Theorie der Klimaschwankungen
- The Paleoenvironment and Development of the Eastern North American Continental Margin
- Climate and Time in Their Geological Relations: A Theory of Secular Changes of the Earth's Climate
- Planet Earth: Cosmology, Geology, and the Evolution of Life and Environment
- The Nemesis Affair: A Story of the Death of Dinosaurs and the Ways of Science
- Milankovitch and Climate: Understanding the Response to Astronomical Forcing
- A Pliocene‐Pleistocene stack of 57 globally distributed benthic δ18O records
Cited by
- Climate Change in the Cenozoic as Seen in Deep Sea Sediments
- Miklankovitch Theory - Hits and Misses
- Discovery of the 5.7-year Douglass cycle: A pioneer's quest for solar cycles in tree-ring records
- Louis Agassiz: Creator of American Science by Christoph Irmscher (2013) Houghton Mifflin Harcourt, Boston.
- Milankovitch tuning of deep-sea records: Implications for maximum rates of change of sea level
- Modeling diverse communities of marine microbes.
- Modeling the dynamics of continental shelf carbon.
- On the Milankovitch sensitivity of the Quaternary deep-sea record
- Carbon concentrating mechanisms in eukaryotic marine phytoplankton.
- Cryptic species within the commercially most important lobster in the tropical Atlantic, the spiny lobster Panulirus argus
- Environmental proteomics: changes in the proteome of marine organisms in response to environmental stress, pollutants, infection, symbiosis, and development.
- Petrography and environmental controls on the formation of Phanerozoic marine carbonate hardgrounds
- Differential proteomic response of Sydney rock oysters (Saccostrea glomerata) to prolonged environmental stress.
- Controls on the distribution of deep‐sea sediments
- Sequestration and subduction of deep-sea carbonate in the global ocean since the Early Cretaceous
- The herbivorous fish family Kyphosidae (Teleostei: Perciformes) represents a recent radiation from higher latitudes
- Phylogeny and phylogeography of the family Kyphosidae (Perciformes: Teleostei)
- Strict allopatric speciation of sky island Pyrrhula erythaca species complex.
- Time Machine Biology: Cross-Timescale Integration of Ecology, Evolution, and Oceanography
- Advances in the study of mega-tsunamis in the geological record
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