AUSSIE LION BEATS ALL IN BITE TEST|Richard_F|richard@cfz.org.uk|04/04/05 at 20:26:27|richard_f|xx|0|81.153.207.194|AUSSIE LION BEATS ALL IN BITE TEST
April 02, 2005
From: AAP

A MARSUPIAL lion that roamed Australia during the Ice Age had the most
powerful bite of any known animal in the world, living or extinct, an
Australian and Canadian research team has discovered.
More closely related to a wombat than an African lion, the 100 kilo
marsupial lion known as Thylacoleo carnifex could out bite the
sabre-toothed tiger, the bone-cracking spotted hyena and the Tasmanian Devil.

The researchers compared the bite force of the marsupial lion to 38
different species, living and extinct, and found that its jaws were much
stronger than any other species for its size.

The team, Colin McHenry of the University of Newcastle, Dr Stephen Wroe of
the University of Sydney and Professor Jeffrey Thomason of the University
of Guelph in Ontario, published their findings in an online paper for the
Proceedings of the Royal Society Series.

"From measurements of skull dimensions we predicted bite force in a wide
range of mammalian carnivores," Dr Wroe, a University of Sydney
palaeontologist, said.

"I had a hunch the marsupial lion would have a very powerful bite, but we
were surprised at just how hard they were biting given their size.

"A good sized marsupial lion could weigh up to 130 kilos - the size of a
front row rugby forward."

Related to wombats and koalas, Thylacoleo carnifex is referred to as the
marsupial lion because of its robust, cat like appearance, and was capable
of grasping its prey with strong semi-opposable thumb claws.

Combined with its powerful jaws and huge incisor teeth, the marsupial lion
was the largest mammalian predator in Australia during the Ice Age period
and became extinct some time within the last 45,000 years.
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"Its biggest prey would have been the Diprotodon, a gigantic wombat-like
creature that could weigh over three tonnes," Dr Wroe said.

"Using the same methods we have applied to measure the bite force of the
marsupial lion, we can also estimate or predict the maximum prey size of
living species."

|| Re: AUSSIE LION BEATS ALL IN BITE TEST|shearluck|lewisoll@yahoo.co.uk|04/05/05 at 23:01:45|shearluck|xx|0|62.253.64.24|An even bigger and more comprehensive news story from BBC on the bite of the marsupial lion:

[quote]Marsupial munch tops big biters
By Jonathan Amos
BBC News science reporter

[img]http://newsimg.bbc.co.uk/media/images/40993000/jpg/_40993167_marsupliona_wroe_203.jpg[/img]

The marsupial lion, one the greatest carnivores to roam Australia, had the most powerful bite of any mammal species - living or extinct.
The assessment comes from scientists who have compared the heads of all manner of beasts, from dogs to bears.

None had the ability to bite down on its prey with quite the same force, say Dr Stephen Wroe and colleagues.

The lion, so described because of its cat-like appearance, became extinct more than 40,000 years ago.

Fossil evidence shows it must have been a remarkable predator. Its stocky teeth, although not quite on the same scale as those of sabre-toothed cats, would have inflicted terrible flesh wounds.


Pound for pound, Thylacoleo carnifex was biting way above its weight
Dr Steven Wroe, University of Sydney

The lion also had a huge "thumb claw" to grapple with and disembowel its victims.
" Thylacoleo carnifex was one of the meanest, most frightening animals you could have the misfortune to meet," Dr Wroe, from the University of Sydney, told the BBC News website.

Competitive edge

Wroe's team studied the skulls of 39 mammalian carnivores, eight of them now known only from the fossil record.

The work estimates the closing force at the canine-end of the animals' jaws and a simple model constructed by the researchers allows them to compare the relative biting prowess of all the creatures, irrespective of their size.


The data shows - as one might expect - the carnivores with the biggest bite forces are typically the ones that take larger prey relative to themselves. It seems intuitive that to be able to win out in such a confrontation, a competitive edge is needed.
But then the data starts to throw up some surprises - not least between marsupials and placentals.

"Marsupials for any given size had a much bigger bite than placentals," explained Dr Wroe.

"A 30kg Tasmanian tiger was biting much harder than a 30kg grey wolf and the marsupial lion, which on average was about 100kg, had a bite fore comparable to that of a 250kg African lion.

"So, pound for pound, Thylacoleo carnifex was biting way above its weight."

Rapid bleed

The researchers have an idea why this might be, and it goes to brain size and possibly to intelligence. Modern placentals have bigger brains than their more primitive forebears and also marsupials.

It seems conceivable, Wroe and colleagues believe, that the skull architecture required for these bigger brains has evolved at the expense of muscle potential.


Researchers will look for deviations in trends. Why an animal deviates strongly raises valid research questions about the design of that animal
Prof Norman MacLeod, Natural History Museum

But what the placentals lack in terms of pure biting power, they compensate for in their smarter attack strategies, and the more precise way they seek to kill their prey.
"The cross-sectional area available for the two major muscle jaw-closing systems may be inversely proportional to the size of the brain. Perhaps, modern placentals can do the same job by being more precise," said Dr Wroe.

And this hypothesis takes an interesting turn with sabre-toothed cats. The data shows them to have had relatively small bites for their size. Modern lions or tigers today have similar bite forces and are substantially smaller animals.

But who needs to bite hard when your giant, 15cm-long canines will punch deep into a victim's neck and bring about rapid bleeding and death?

New questions

Professor Norman MacLeod, keeper of palaeontology at the UK's Natural History Museum, commented that this type of study enabled scientists to open up new research questions about extinct (and living) creatures.


"These sorts of scaling relationships are used, for example, to estimate maximum travelling speeds of ancient animals based on the size of their feet and the length of their stride," he explained.
"Researchers will look for deviations in trends. Why an animal deviates strongly raises valid research questions about the design of that animal. For example, if you plot brain size versus body size, there is a nice regular relationship - but in humans, we are way off the scale.

"That's because there's been much greater brain development in humans than in any other animal."

A paper detailing the science of mammalian bite force, co-authored with Colin McHenry, from the University of Newcastle in New South Wales and Jeffrey Thomason, from the University of Guelph, Canada, was published recently by the UK's Royal Society.

[img]http://newsimg.bbc.co.uk/media/images/40993000/jpg/_40993165_marsuplion_wroe_203.jpg[/img]

Story from BBC NEWS:
http://news.bbc.co.uk/go/pr/fr/-/1/hi/sci/tech/4409039.stm

Published: 2005/04/05 08:58:41 GMT

BBC MMV
[/quote]

Another reason why the marsupial lions had a much more powerful bite than African lions is that their claws are much less powerful than African lions. A cat or cat like species with a wider and more powerful bite will hold onto their prey with their mouths rather than their claws.||04/05/05 at 23:41:43|shearluck