Linked from
The 48 pages that link to Paleoecology, each with the reason it gives.
PaleontologyRelated: Uses fossils to reconstruct communities and ecological interactions in the past.
PaleobiologyRelated: It reconstructs interactions and communities from fossil assemblages.
FossilizationRelated: Preserved organisms and traces provide evidence of former habitats and ecosystems.
PaleobotanyRelated: Plant assemblages help reconstruct climate, habitats, and ecological relationships.
BeringiaNarrower topic: Beringian deposits reconstruct an unusual ice-age ecosystem and its changes.
Pollen analysisRelated: Pollen assemblages help reconstruct former plant communities and ecosystems.
Dinosaur paleontologyNarrower topic: Dinosaur fossils gain ecological meaning when studied alongside other organisms and habitats.
PaleosolRelated: Paleosol features help reconstruct the habitats and ecological conditions of ancient landscapes.
Environmental historyRelated: Its proxies reconstruct ecological conditions beyond the reach of archives.
LagerstätteRelated: Abundant, diverse fossils can reveal community structure and environmental relationships rarely visible elsewhere.
Rhynie chertNarrower topic: Preserved associations among plants, fungi, and arthropods support unusually detailed ecosystem reconstructions.
La Brea Tar PitsRelated: Plant, animal, and chemical evidence reconstructs the site’s changing ecosystems.
SundalandRelated: It reconstructs the habitats that occupied Sundaland’s exposed plains.
Paranthropus boiseiRelated: Reconstructing its changing habitats helps explain its range and eventual extinction.
Pleistocene megafauna extinctionRelated: Pollen, bones, and sediments help reconstruct habitats before and after the extinctions.
Mazon Creek fossil bedsNarrower topic: Mazon Creek’s varied fossils help reconstruct a Carboniferous ecosystem.
Dental microwear analysisNarrower topic: Microwear-based diets contribute to reconstructions of ancient environments.
Historical ecologyRelated: Paleoecological evidence extends ecological histories beyond written records.
Niobrara FormationRelated: Niobrara fossils and sediments allow reconstruction of Cretaceous marine ecosystems.
PaleoenvironmentRelated: Connects fossil communities to the conditions that sustained them.
Monte San GiorgioRelated: Fossils and sediments together allow reconstruction of the basin’s changing marine habitats.
TylosaurusNarrower topic: Tylosaurus fossils help reconstruct food webs in Cretaceous seas.
Irish elkRelated: Fossils and environmental evidence help reconstruct the Irish elk's habitat and diet.
Woolly rhinocerosNarrower topic: Reconstructing its changing habitat helps assess competing extinction explanations.
DesmostyliaNarrower topic: It helps test whether desmostylians fed and lived mainly in coastal or marine settings.
NodosauridaeNarrower topic: Nodosaurid fossils help reconstruct Cretaceous ecosystems and herbivore communities.
Paleo-IndiansRelated: It reconstructs the habitats and climatic conditions in which early American populations lived.
SivatheriumNarrower topic: Its habitat and diet must be inferred from fossils and the ecosystems in which they occur.
TanystropheusNarrower topic: Fossils and sediments help reconstruct Tanystropheus’s habitats and ecological role.
ThelodontiRelated: Scale-only fossils reveal little directly about how thelodonts fed or lived.
CanadaspisNarrower topic: Its anatomy and fossil setting help infer its role on the Cambrian seafloor.
DaeodonRelated: Daeodon fossils help map food webs and habitats in Miocene North America.
ElasmotheriumNarrower topic: Elasmotherium's ecology is inferred by combining its anatomy with evidence from its surroundings.
MegalonyxNarrower topic: Megalonyx fossils help reconstruct Pleistocene habitats and food webs.
TeleocerasNarrower topic: Teleoceras fossils gain ecological meaning when considered alongside associated plants and animals.
TurritellidaeRelated: Turritellid abundance and shell assemblages can inform reconstructions of ancient seafloors.
BorophagusRelated: Borophagus's fossils contribute evidence about predator and scavenger roles in past ecosystems.
CervalcesRelated: Its methods can reconstruct the habitats occupied by stag-moose.
DrepanosauromorphaNarrower topic: It combines anatomy, fossils, and depositional settings to assess drepanosauromorph lifestyles.
GomphothereNarrower topic: Gomphothere fossils help reconstruct the ecosystems they inhabited.
HelicoprionRelated: Helicoprion’s habitat and ecological role must be inferred from fossils and surrounding rocks.
HyneriaNarrower topic: The genus contributes evidence about food webs in Late Devonian habitats.
MegalictisRelated: It frames questions about Megalictis's prey, competitors, and habitat.
OdobenocetopsRelated: Its feeding habitat and ecological role must be inferred from fossils and associated deposits.
PlotopteridaeNarrower topic: Plotopterid fossils help reconstruct the food webs and habitats of past marine ecosystems.
ProlibytheriumRelated: Its habitat and ecological role must be inferred from fossils and associated deposits.
RudistsRelated: Rudist distributions help reconstruct the conditions and communities of Cretaceous seas.
TamisiocarididaeRelated: It helps test whether inferred filters indicate plankton feeding or another feeding strategy.