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Search results for “Dinosaurs”

1,000+ results for "Dinosaurs"

Exit dinosaurs, enter fishes

Scientists discover that mass extinction event triggered by asteroid strike led to the rise of ray-finned fishes as the ocean's most diverse and dominant vertebrates. The abundance of ray-finned fish teeth began to explode after the extinction event, becoming eight times more abundant in 24 million years.

SourceUniversity of California - San Diego·JournalProceedings of the National Academy of Sciences·DateJun 29, 2015

Researchers reconstruct dinosaur tracks

Researchers reconstructed dinosaur tracks at a 154-million-year-old quarry site, suggesting carnivorous dinosaurs hunted herbivorous island-dwelling dinosaurs. The digital model reveals that the predators could have immigrated via a land bridge as sea levels dropped.

SourceUniversity of Bonn·JournalPalaeontologia Electronica·DateJun 23, 2015

Why big dinosaurs steered clear of the tropics

The study reveals that wild climate swings in the tropics made it difficult for large, warm-blooded dinosaur herbivores to survive. The researchers found that wildfires swept the landscape during arid regimes, continually reshaping vegetation available for plant-eating animals.

SourceUniversity of Utah·JournalProceedings of the National Academy of Sciences·DateJun 15, 2015

Big dinosaurs steered clear of the tropics

Scientists have discovered that dinosaurs remained rare near the equator during the late Triassic period due to extreme climate fluctuations and wildfires that fueled hotter fires. The study revealed a pattern of rapid vegetation changes related to climate shifts, which led to droughts and plant die-offs.

SourceU.S. National Science Foundation·JournalProceedings of the National Academy of Sciences·DateJun 15, 2015

Why did the dinosaur cross the equator...but choose not to live there?

Triassic dinosaurs failed to populate the tropics due to a highly unpredictable hot and dry climate, with extreme wildfires and elevated CO2 levels, making vegetation scarce. This study sheds light on the interplay between climate change and ecosystem evolution at low latitudes, providing new insights into the rise of dinosaurs.

SourceUniversity of Southampton·JournalProceedings of the National Academy of Sciences·DateJun 15, 2015

Bizarre 'platypus' dinosaur discovered

A new species of dinosaur, Chilesaurus diegosuarezi, has been discovered in Chile with a mix of characteristics from different groups of dinosaurs. The plant-eating theropod has a small skull and feet similar to long-necked dinosaurs, challenging previous understanding of evolutionary divergence.

SourceUniversity of Birmingham·JournalNature·DateApr 27, 2015

Sexing Stegosaurus

A recent study by Evan Saitta found that Stegosaurus had two types of plates: tall and wide. Contrary to previous claims, these were not separate species or ages, but rather males and females. The plates likely played a role in attracting mates and displaying sex.

SourceUniversity of Bristol·JournalPLOS ONE·DateApr 22, 2015

Brontosaurus is back!

A new study by palaeontologists from Portugal and the UK provides conclusive evidence that Brontosaurus is distinct from Apatosaurus, overturning over a century of research. The team applied statistical approaches to calculate differences between species and genera, revealing Brontosaurus as a unique genus.

SourcePeerJ·JournalPeerJ·DateApr 7, 2015

The 100 million year-old piggyback

Scientists have discovered a 100-million-year-old insect fossil that shows an adult female insect caring for its young, a behavior previously unknown to exist during the Mesozoic era. This discovery pushes back the earliest direct evidence of insect brood care by more than 50 million years.

SourceeLife·DateMar 31, 2015

What makes the feather soar

Research reveals that the variety and adaptability of interlocking protein building blocks make up the feather's success. Birds have dozens of smaller variations within each type of brick, represented by the many differing copy numbers in their gene.

SourceUniversity of South Carolina·JournalBMC Evolutionary Biology·DateFeb 11, 2015

Why is a dolphin not a cat?

A study comparing genome sequences of 29 mammals reveals how evolution repurposes shared genes for unique traits. The research provides insights into the 'mammalian radiation,' a period of rapid morphological evolution that occurred after the asteroid impact that caused the dinosaurs' extinction.

Long-necked 'dragon' discovered in China

A new species of long-necked dinosaur, Qijianglong, has been discovered in China with a remarkably lightweight neck and surprisingly stiff joints. The findings suggest that long-necked dinosaurs diversified uniquely in Asia during Jurassic times.

SourceUniversity of Alberta·JournalJournal of Vertebrate Paleontology·DateJan 28, 2015

Decoding the Tree of Life

A team of scientists has decoded the avian genome, revealing that bird evolution occurred rapidly 65 million years ago. The study provides new insights into the evolutionary history of birds, including the discovery of ancient viruses and unexpected kinship between waterbirds and landbirds.

SourceUniversity of Florida·JournalScience·DateDec 11, 2014

Oldest horned dinosaur species in North America found in Montana

Researchers have identified the first definite horned dinosaur species from the Early Cretaceous period in North America, known as Aquilops americanus. This discovery sheds light on the biogeography of neoceratopsian dinosaurs and suggests a late Early Cretaceous intercontinental migratory event between Asia and North America.

SourcePLOS·JournalPLOS ONE·DateDec 10, 2014

Why lizards have bird breath

Scientists at the University of Utah have found that iguanas, not known for high-capacity aerobic fitness, have bird-like breathing patterns in their lungs. This discovery bolsters the case that unidirectional airflow evolved long before the first birds, suggesting a common ancestor among lizards, snakes, crocodiles, and dinosaurs.

SourceUniversity of Utah·JournalProceedings of the National Academy of Sciences·DateNov 17, 2014

Digital dinosaurs: New research employs high-end technology to restore dinosaur fossil

Researchers employed high-resolution X-ray CT scanning and digital visualization techniques to restore a complete skull of the 3-4m herbivorous dinosaur Erlikosaurus andrewsi. The team digitally dissected the skull, filling in breaks and cracks, duplicating missing elements, and reversing deformation, resulting in a life-like restoration.

SourceSociety of Vertebrate Paleontology·JournalJournal of Vertebrate Paleontology·DateNov 4, 2014

Seeing dinosaur feathers in a new light

Dinosaurs had highly developed color vision, including the ability to see ultraviolet light, which likely contributed to the evolution of feathers. This discovery sheds new light on the origin of feathers and their role in dinosaur communication and mating.

SourceUniversity of Bonn·JournalScience·DateOct 30, 2014

How dinosaur arms turned into bird wings

Researchers have made a breakthrough in understanding how birds evolved from dinosaurs by studying fossil and developmental data, revealing the fusion of two bones to form a semilunate bone. The study clarifies the identity of wrist bones in both groups, shedding light on the evolutionary reversal of a lost bone.

SourcePLOS·JournalPLOS Biology·DateSep 30, 2014

Meteorite that doomed the dinosaurs helped the forests bloom

A new study published in PLOS Biology reveals that the meteorite impact that ended the dinosaurs also accelerated the growth of fast-growing flowering plants, which replaced slower-growing evergreen species. The research used fossilized leaves to reconstruct a plant community thriving during a 2.2 million-year period after the impact.

SourcePLOS·JournalPLOS Biology·DateSep 16, 2014

Meteorite that doomed dinosaurs remade forests

A study of fossilized leaves reveals that the meteorite impact that ended the dinosaurs' reign favored fast-growing, deciduous plants. This shift from slow-growing evergreens to fast-growing species indicates that the extinction was not random, but rather a response to the major disturbance caused by the impact.

SourceUniversity of Arizona·JournalPLOS Biology·DateSep 16, 2014

Shrinking dinosaurs evolved into flying birds

Researchers discovered that the theropod dinosaur lineage, which gave rise to modern birds, underwent an unprecedented phase of shrinking and evolutionary innovation. This transformation allowed bird ancestors to adapt to new environments, such as climbing trees and flying, ultimately helping them survive a deadly meteorite impact.

SourceUniversity of Adelaide·JournalScience·DateJul 31, 2014