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The 98 pages that link to Stable isotope analysis, each with the reason it gives.
IsotopeRelated: Natural variations among stable isotopes can identify sources and processes.
PaleoclimatologyRelated: Isotope ratios in archives can reveal past temperatures and shifts in water sources.
EoceneRelated: Oxygen and carbon isotopes help estimate Eocene temperatures and carbon-cycle changes.
PaleoanthropologyRelated: Isotopes can reveal aspects of hominin diet and movement unavailable from bones alone.
PaleoecologyRelated: Isotope signatures can reveal ancient diets, water sources, and climates.
PaleobiologyRelated: Isotope signatures in fossils can reveal diet, climate, and habitat.
PaleoclimateRelated: Oxygen and hydrogen isotope ratios in archives can indicate past temperature and precipitation.
Ice coreRelated: Oxygen and hydrogen isotope ratios in ice help estimate past temperatures.
Trophic levelRelated: Nitrogen isotope patterns can estimate an organism’s trophic position.
ArchaeobotanyRelated: Isotopes in plant remains can reveal growing conditions and agricultural inputs.
Dinosaur paleontologyRelated: Isotope signatures in fossil material can inform diets and environmental conditions.
PaleosolRelated: Isotope ratios in paleosol minerals can constrain past water sources and climate conditions.
ForaminiferaRelated: Foraminiferal shells preserve isotope patterns used to infer ancient ocean chemistry and climate.
PaleopathologyRelated: Isotope patterns add evidence about nutrition and mobility relevant to illness.
Carbon-12Related: Carbon-12 is the reference isotope in commonly reported carbon isotope ratios.
PaleoceanographyRelated: Isotope ratios in shells and sediments help estimate temperature, ice volume, and carbon cycling.
Dental microwearRelated: Isotopes indicate dietary sources over longer periods, complementing microwear's shorter window.
La Brea Tar PitsRelated: Isotopes in fossils can reveal diets and environmental change at La Brea.
Paleoclimate proxyRelated: Isotope ratios in many archives vary with temperature, precipitation, or moisture source.
StalactiteRelated: Isotope ratios in stalactite calcite can reveal past environmental conditions.
TravertineRelated: Isotope ratios in travertine can preserve evidence of source water and past conditions.
Carbonate mineralRelated: Isotope ratios in carbonate minerals can preserve evidence of ancient water and climate.
Paleoenvironmental reconstructionRelated: Oxygen and carbon isotope ratios can record changes in temperature, water balance, and vegetation.
CoccolithophoreRelated: Isotopes in coccolith calcite can help reconstruct past seawater temperatures and carbon cycling.
Gastropod shellRelated: Isotope ratios in shell carbonate can record aspects of the water and climate during growth.
Greenland ice coreRelated: Oxygen and hydrogen isotope ratios in Greenland ice track past temperature patterns.
ÖtziRelated: Isotopes in Ötzi's tissues help trace his diet and movements.
DiprotodonRelated: Isotope evidence can refine estimates of Diprotodon’s diet and habitat.
Groundwater-dependent ecosystemRelated: Isotopes can help distinguish groundwater from rainfall or surface water in plant uptake.
KurganRelated: Human and animal remains from kurgans can reveal diet and mobility.
StalagmiteRelated: Carbon and oxygen isotopes in stalagmite layers help interpret environmental change.
Isotopic abundanceRelated: Natural abundance variations can trace diet, climate, migration, and material origin.
BasilosaurusRelated: Isotope evidence from fossils can help reconstruct the habitat and feeding ecology of ancient whales.
Paranthropus boiseiRelated: Isotopes in tooth enamel indicate the broad plant sources in its diet.
Bivalve shellRelated: Shell isotope ratios can preserve clues about water temperature and chemistry.
Isotope hydrologyRelated: Water studies rely on precise stable-isotope measurements and reference comparisons.
PaleoenvironmentRelated: Isotope ratios in fossils and sediments preserve clues to ancient temperatures and water sources.
ParanthropusRelated: Carbon isotope measurements reveal substantial dietary variation among Paranthropus species.
SpinosaurusRelated: Isotope evidence from spinosaurid teeth has helped test claims about aquatic feeding.
YedomaRelated: Isotope measurements can help characterize yedoma carbon and trace its transformation.
Carbon isotope excursionRelated: It provides the analytical basis for detecting carbon isotope excursions.
CoproliteRelated: Isotope ratios can help distinguish dietary sources represented by a coprolite.
Medieval Warm PeriodRelated: Isotopes in ice, shells, and other archives help estimate regional climate changes.
Dinosaur dentitionRelated: Isotope evidence can test dietary interpretations drawn from dinosaur teeth.
Paranthropus robustusRelated: Isotope measurements indicate that P. robustus used a broader range of plant foods than tooth shape alone suggests.
Antarctic toothfishRelated: Isotope measurements help reconstruct toothfish feeding relationships where direct observations are scarce.
Human cannibalismRelated: Isotopes can suggest diet patterns but rarely identify cannibalism on their own.
Arctic ternRelated: Isotopes can complement tracking when reconstructing where migratory birds have been.
Ardipithecus kadabbaRelated: Isotopes in associated materials can add environmental context to the fossils.
Biological anthropologyRelated: It can reveal patterns of past human diets and movement.