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Items: 1 to 20 of 327

1.

Atmospheric carbon dioxide concentrations over the past 60 million years.

Pearson PN, Palmer MR.

Nature. 2000 Aug 17;406(6797):695-9.

PMID:
10963587
2.

Coupling of surface temperatures and atmospheric CO2 concentrations during the Palaeozoic era.

Came RE, Eiler JM, Veizer J, Azmy K, Brand U, Weidman CR.

Nature. 2007 Sep 13;449(7159):198-201.

PMID:
17851520
3.

Stable sea surface temperatures in the western Pacific warm pool over the past 1.75 million years.

de Garidel-Thoron T, Rosenthal Y, Bassinot F, Beaufort L.

Nature. 2005 Jan 20;433(7023):294-8.

PMID:
15662419
4.

A 300-million-year record of atmospheric carbon dioxide from fossil plant cuticles.

Retallack GJ.

Nature. 2001 May 17;411(6835):287-90.

PMID:
11357126
5.

Dual modes of the carbon cycle since the Last Glacial Maximum.

Smith HJ, Fischer H, Wahlen M, Mastroianni D, Deck B.

Nature. 1999 Jul 15;400(6741):248-50.

PMID:
11536907
6.

Evidence for decoupling of atmospheric CO2 and global climate during the Phanerozoic eon.

Veizer J, Godderis Y, François LM.

Nature. 2000 Dec 7;408(6813):698-701.

PMID:
11130067
7.

Thresholds for Cenozoic bipolar glaciation.

Deconto RM, Pollard D, Wilson PA, Pälike H, Lear CH, Pagani M.

Nature. 2008 Oct 2;455(7213):652-6. doi: 10.1038/nature07337.

PMID:
18833277
8.

Climatic consequences of very high carbon dioxide levels in the earth's early atmosphere.

Kasting JF, Ackerman TP.

Science. 1986 Dec 12;234:1383-5.

PMID:
11539665
9.
10.

Termination of global warmth at the Palaeocene/Eocene boundary through productivity feedback.

Bains S, Norris RD, Corfield RM, Faul KL.

Nature. 2000 Sep 14;407(6801):171-4.

PMID:
11001051
11.

Atmospheric carbon dioxide concentrations before 2.2 billion years ago.

Rye R, Kuo PH, Holland HD.

Nature. 1995 Dec 7;378(6557):603-5.

PMID:
11536713
12.

Changing atmospheric CO2 concentration was the primary driver of early Cenozoic climate.

Anagnostou E, John EH, Edgar KM, Foster GL, Ridgwell A, Inglis GN, Pancost RD, Lunt DJ, Pearson PN.

Nature. 2016 May 19;533(7603):380-4. doi: 10.1038/nature17423. Epub 2016 Apr 25.

13.

Climate sensitivity constrained by CO2 concentrations over the past 420 million years.

Royer DL, Berner RA, Park J.

Nature. 2007 Mar 29;446(7135):530-2.

PMID:
17392784
14.

A 40-million-year history of atmospheric CO(2).

Zhang YG, Pagani M, Liu Z, Bohaty SM, Deconto R.

Philos Trans A Math Phys Eng Sci. 2013 Sep 16;371(2001):20130096. doi: 10.1098/rsta.2013.0096. Print 2013 Oct 28.

15.

Latitudinal variations in plankton delta 13C: implications for CO2 and productivity in past oceans.

Rau GH, Takahashi T, Des Marais DJ.

Nature. 1989 Oct 12;341(6242):516-8.

PMID:
11536614
16.

Atmospheric carbon dioxide through the Eocene-Oligocene climate transition.

Pearson PN, Foster GL, Wade BS.

Nature. 2009 Oct 22;461(7267):1110-3. doi: 10.1038/nature08447. Epub 2009 Sep 13.

PMID:
19749741
17.

The Cenozoic palaeoenvironment of the Arctic Ocean.

Moran K, Backman J, Brinkhuis H, Clemens SC, Cronin T, Dickens GR, Eynaud F, Gattacceca J, Jakobsson M, Jordan RW, Kaminski M, King J, Koc N, Krylov A, Martinez N, Matthiessen J, McInroy D, Moore TC, Onodera J, O'Regan M, Pälike H, Rea B, Rio D, Sakamoto T, Smith DC, Stein R, St John K, Suto I, Suzuki N, Takahashi K, Watanabe M, Yamamoto M, Farrell J, Frank M, Kubik P, Jokat W, Kristoffersen Y.

Nature. 2006 Jun 1;441(7093):601-5.

18.

Coupling of CO2 and ice sheet stability over major climate transitions of the last 20 million years.

Tripati AK, Roberts CD, Eagle RA.

Science. 2009 Dec 4;326(5958):1394-7. doi: 10.1126/science.1178296. Epub 2009 Oct 8.

19.

Eocene bipolar glaciation associated with global carbon cycle changes.

Tripati A, Backman J, Elderfield H, Ferretti P.

Nature. 2005 Jul 21;436(7049):341-6. Erratum in: Nature. 2005 Nov 3;438(7064):122.

PMID:
16034408
20.

Impacts of orbital forcing and atmospheric carbon dioxide on Miocene ice-sheet expansion.

Holbourn A, Kuhnt W, Schulz M, Erlenkeuser H.

Nature. 2005 Nov 24;438(7067):483-7.

PMID:
16306989

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