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Footprints suggest tyrannosaurs were gregarious
by Staff Writers
Ottawa (AFP) July 24, 2014


Gangs of Tyrannosaurs roamed ancient Earth
Tumbler Ridge, British Columbia Jul 24, 2013 - New evidence suggests Tyrannosaurs moved and hunted in packs, say scientists in Canada. Paleontologists have suggested this was the case, as so many Tyrannosaurus fossils are found clustered together. But scientists could never be sure whether a group lived and perished in close proximity or were swept away by flood waters and deposited in the same location. But a set of Tyrannosaurus tracks -- found, as so many other dinosaur fossils are, in British Columbia -- suggests the fearsome predators migrated in groups and scoured the tundra of western North America in search prey in an organized fashion. Paleontologists at the Peace Region Paleontology Research Center in Tumbler Ridge, British Columbia, confirmed the three sets of pristinely preserved Tyrannosaur tracks were made at the same time. They show all three dinos were of similar age and traveling in the same direction. They belong to one of the three Tyrannosaurus species that populated B.C. and Alberta some 70 million years ago -- Albertosaurus, Gorgosaurus and Daspletosaurus -- all cousins to the better known T. rex. "When you find three trackways together, going in same direction, it's not necessarily good evidence for gregarious behaviour. They could be walking along a shore. But if all the other animals are moving in different directions, it means there is no geographical constraint, and it strengthens the case," explained Richard McCrea, curator of paleontology at the research center and lead author of a new study on the findings -- published this week in the journal PLOS ONE. "It's about as strong evidence as you can get without going back in a time machine and observing them," McCrea added.

Scientists in western Canada have discovered the fossilized footprints of three tyrannosaurs that suggest these fearsome predators may have hunted in packs.

The sets of tyrannosaur footprints are the first ever to be found in proximity to one another and are the only clear evidence so far that these dinosaurs may have been social rather solitary animals.

"The evidence is as strong as you can get with any fossil evidence that tyrannosaurs were pack animals," Richard McCrea of the Peace Region Palaeontology Research Centre, who led the excavation, told AFP on Thursday.

"It shows that these were three animals travelling together, all going in the same direction," he said.

Previously, only individual tyrannosaur footprints have been uncovered in the United States, Canada and Mongolia.

The parallel tracks leading into a rock cliff near Tumbler Ridge, British Columbia indicate the three were walking in a group, "bearing southeast within an 8.5 meter-wide corridor," according to a study published by McCrea's team in the journal PLOS ONE.

The researchers cited "similarities in depth and preservation" of the tracks as proof that they were made by animals "walking concurrently in the same direction."

The three-toed footprints of these very large bipedal carnivores with powerful jaws and small clawlike front legs were discovered by a local guide and outfitter in 2011 in what would have been soft mud 70 million years ago.

Excavation, which is continuing, has uncovered seven footprints in all.

They are believed to have been covered up and preserved by volcanic ash, only to be exposed eons later by the erosion of the cliff.

The footprints -- each half a meter long -- belong to adult animals of different sizes. They predate the Tyrannosaurus Rex, but Albertosaurus and Daspletosaurus -- ancestors of Rex -- once roamed foothills east of the Rocky Mountains.

The discovery also provides valuable new information on how tyrannosaurs moved.

"Their gait was very narrow, with very little rotation of the foot," McCrea noted. "It's quite an efficient locomotion: very long strides, almost four meters.

"We had no idea they walked like that," he said.

"There's been speculation about their biomechanics but prior to the discovery of these trackways, all we had were bones, and theories about how their joints rotated and so on.

"Now we have trackways that we can use to put those hypotheses to the test.

"That's the next step."

.


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