Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a publisher retraction,
withdrawal, or removal notice.
The 58 checked references that resolve
resolves10.1038/345405a0Calibration of the 14C timescale over the past 30,000 years using mass spectrometric U–Th ages from Barbados corals
resolves10.1038/329408a0Vostok ice core provides 160,000-year record of atmospheric CO2
resolves10.1029/PA004i005p00555Influence of the changing lunar orbit on the astronomical frequencies of pre‐Quaternary insolation patterns
resolves10.3406/barb.1990.38523Origine des fréquences des éléments astronomiques intervenant dans le calcul de l'insolation
resolves10.1016/0012-821X(85)90154-2Comparison of Atlantic and Pacific paleochemical records for the last 215,000 years: changes in deep ocean circulation and chemical inventories
resolves10.1029/PA002i005p00489The δ<sup>13</sup>C of equatorial Atlantic surface waters: Implications for Ice Age pCO<sub>2</sub> levels
resolves10.1029/92JD01256Simulation of the last glacial cycle by a coupled, sectorially averaged climate‐ice sheet model: 2. Response to insolation and CO<sub>2</sub> variations
resolves10.1038/321739a0Milankovitch climatic origin of mid-Cretaceous black shale rhythms in central Italy
resolves10.1127/nos/17/1987/109Sedimentary rhythms and high-resolution chronostratigraphic correlations in the Mediterranean Pliocene
resolves10.1111/j.1365-3121.1989.tb00401.xPeriodicities of CaCO<sub>3</sub> cycles in the Pliocene of Sicily: discrepancies with the quasi‐periods of the Earth's orbital cycles?
resolves10.1007/978-94-009-2446-8_7Oceanic Response to Orbital Forcing in the Late Quaternary: Observational and Experimental Strategies
resolves10.1038/329403a0Vostok ice core: a continuous isotope temperature record over the last climatic cycle (160,000 years)
resolves10.1016/0012-821X(88)90073-8The middle to late Pleistocene geomagnetic field recorded in fine-grained sediments from Summer Lake, Oregon, and Double Hot Springs, Nevada, U.S.A.
resolves10.1007/BF00140262Paleoclimatic variability at frequencies ranging from 1 cycle per 10 000 years to 1 cycle per 1000 years: Evidence for nonlinear behaviour of the climate system
resolves10.1038/326486a0Earth's precession cycle and Quaternary climatic change in tropical Africa
resolves10.1038/296334a0A simple ice sheet model yields realistic 100 kyr glacial cycles
resolves10.1098/rstb.1988.0030The evolution of oceanic oxygen-isotope variability in the North Atlantic over the past three million years
resolves10.1017/S0263593300020782An alternative astronomical calibration of the lower Pleistocene timescale based on ODP Site 677
resolves10.1038/264629a0Spectral analysis and the astronomical theory of climatic change
The 22 references without a DOI — listed, not checked
no DOI — not checkedBackman J., Pestiaux P., Zimmerman H. and O. Hermelin, 1986. Palaeoclimatic and palaeoceanographic development in the Pliocene North Atlantic: Discoaster accumulation and coarse fraction data. In: C.P. Summerhayes and N.J. Shackleton (eds), North Atlantic Palaeoceanography, Geological Society, Special Publ. n° 21, pp. 231–242.
no DOI — not checkedBerger A., 1973. Théorie astronomique des paléoclimats. These de doctorat, Faculté des Sciences, Université Catholique de Louvain. Unpublished manuscript.
no DOI — not checkedBerger A., 1975. Astronomical theory of paleoclimates: a cascade of accuracy. WMO-IAMAP, Norwich, WMO n° 421, pp. 65–72, Genève.
no DOI — not checkedBerger A., 1976. Obliquity and precession for the last 5,000,000 years. Astronomy and Astrophysics, 51, pp. 127–135.
no DOI — not checkedBerger A., 1977b. Long term variations of the Earth’s orbital elements. Celestial Mechanics, 5, pp. 3–74.
no DOI — not checkedBerger A., 1989b. The spectral characteristics of pre-Quaternary climatic records, an example of the relationship between the astronomical theory and geo-sciences. In: A. Berger, S. Schneider and J.CI. Duplessy (eds), Climate and Geo-Sciences, a Challenge for Science and Society in the 21st Century, pp. 47–76, Kluwer, Dordrecht, Holland.
no DOI — not checkedBretagnon P., 1974. Termes à longues périodes dans le système solaire. Astronomy and Astrophysics, 30 (1), pp. 141–154.
no DOI — not checkedBrouwer D., and G.M. Clemence, 1961. Methods of Celestial Mechanics. Academic Press, New York, 598 p.
no DOI — not checkedCLIMAP Project Members, 1981. Seasonal reconstruction of the Earth’s surface at the Last Glacial maximum, Mclntyre A. and Cline R. (eds), Geological Society of America. Map and Chart Series MC-36, Boulder, pp. 1–18.
no DOI — not checkedGodart O., 1986. Geometrical insolation of a planet. Annales de la Société Scientifique de Bruxelles, T. 100 II, pp. 53–85.
no DOI — not checkedImbrie J., and N.G. Kipp, 1971. New micropaleontological method for quantitative paleoclimatology: application to a Late Pleistocene Caribbaen Core. In: K.K. Turekian (ed.), Late Cenozoic Glacial Ages, pp. 71–81, Yale University Press, New Haven.
no DOI — not checkedImbrie J., Hays J., Martinson D.G., Mclntyre A., Mix A.C., Morley J.J., Pisias N.G., Prell W.L. and N.J. Shackleton, 1984. The orbital theory of Pleistocene climate: support from a revised chronology of the marine 18O record. In: A. Berger, J. Imbrie, J. Hays, G. Kukla and B. Saltzman (eds), Milankovitch and Climate, pp. 269–305, D. Reidel Publ. Company, Dordrecht, Holland.
no DOI — not checkedJanecek T.R. and D.K. Rea, 1984. Pleistocene fluctuations in Northern Hemisphere tradewinds and westerlies. In: A. Berger, J. Imbrie, J. Hays. G. Kukla and B. Saltzman (eds), Milankovitch and Climate, pp. 331–347, D. Reiael, Dordrecht, Holland.
no DOI — not checkedLaskar J., 1988. Secular evolution of the solar system over 10 millions years. Astronomy and Astrophysics, 198, pp. 341–362.
no DOI — not checkedLoutre M.F., 1993. Paramètres orbitaux et cycles diurne et saisonnier des insolations. Thèse de doctorat, Faculté des Sciences, Université Catholique de Louvain, Louvain- la-Neuve. Unpublished manuscript.
no DOI — not checkedMilankovitch M., 1941. Kanon der Erdbestrahlung. Royal Serbian Academy, Spec. publ. 132, section of Mathematical and Natural Sciences, vol. 33 (published in English by Israel program for Scientific Translation, for the U.S. Department of Commerce and the National Science Foundation, Washington D.C., 1969 ).
no DOI — not checkedMolfino B., Heusser L.H. and G.M. Woillard, 1984. Frequency components of a Grande Pile pollen record: Evidence of precessional orbital forcing. In: A. Berger, J. Imbrie, J. Hays, G. Kukla and B. Saltzman (eds), Milankovitch and Climate, pp. 391–404, D. Reidel, Dordrecht, Holland.
no DOI — not checkedNicolis C., 1980. Response of the Earth-atmosphere system to a fluctuating solar input. In: Sun and Climate, pp. 385–396, CNES-CRS-DGRST, Toulouse, October 1980.
no DOI — not checkedPrell W.L., 1984. Monsoonal climate of the Arabian Sea during the late Quaternary: A response to changing solar radiation. In: Berger A., Imbrie J., Hays J., Kukla G. ana Saltzman B. (eds), Milankovitch and Climate, pp. 349–366, Reidel, Dordrecht, Holland.
no DOI — not checkedRuddiman W.E., Shackleton N.J. and A. Mclntyre, 1986. North Atlantic sea-surface temperatures for the last 1.1 million years. In: Summerhayes C.P. and Shackleton N.J. (eds), North Atlantic Palaeoceanography Geological Society Special Publication, 21, pp. 155–173.
no DOI — not checkedWoolard E.W. and G.M. Clemence, 1966. Spherical Astronomy. Academic Press, New York, London.
no DOI — not checkedYiou P., Genthon C., Ghil M., Jouzel J., Le Treut H., Barnola J.M., Lorius CI. and Y.N. Korotkevitch, 1991. High-frequency paleovariability in climate and CO2 levels from Vostok ice-core records. Journal of Geophysical Research, 96 n° B12, pp. 20, 365–20, 378.
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