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Nature Live

34 Posts tagged with the natural_history_museum tag
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In his book titled ‘What is Life?', British-born scientist JBS Haldane wrote:

‘The creator would appear as endowed with a passion for stars, on the one hand, and for beetles on the other’.

 

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An example of the beetle collections at the Museum.


Haldane was referring to the numerous nature of the coleopteran, or beetles as they are more commonly known. This order consists of more species than any other group. In fact, beetles make up around 40% of the total insects described. The Museum itself boasts an amazing collection of over 10 million species, meticulously stored in 22 thousand draws. This collection is constantly evolving and expanding.

 

Zambia

 

Nature Live took the opportunity to learn more about the entomologists' latest adventure – a trip to Zambia. Entomologist Lydia Smith spoke to the Nature Live team about their findings.


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The  landscape in Zambia.

 

Lydia spent 6 weeks travelling around Zambia collecting samples. Zambia has very varied terrain which provides plenty of scope for a diverse community of beetles and other organisms. The Museum's team worked closely with local guides to navigate the hostile environments. Lydia explained that their help was invaluable, she described them as ‘extremely helpful and excitable people’.

 

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Lydia with members of the Museum team and local guides.

 

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The team vehicle surrounded by dense vegetation.


Being in Zambia, the team was constantly surrounded an incredible array of wildlife, some of which interfered with their sampling. Hyenas and civet cats were both suspected of disturbing the insect traps.

 

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An elephant caught on film by a camera trap.

 

Camera traps caught glimpses of a variety of species, from elephants to elephant shrews. One day Lydia recalls picking up a beetle and receiving quite a shock – the beetle's backend exploded in her hand!  She had encountered a beetle she had only previously read about, the elusive ‘Bombardier beetle’. As a defence mechanism, this particular type of ground beetle ejects a chemical spray from the tip of their abdomen,  accompanied by a loud popping sound.


Field techniques

 

During the expedition, a number of techniques were used in order to obtain samples. Light traps were used at dusk to attract insects onto a large sheet or tent like structure where they could then be collected. This type of trap can be extremely effective at gaining samples of nocturnal species.

 

The team often used pitfall traps, which consist of a plastic cup that is submerged in the soil and partially filled with a preservative. An attractant is then suspended above the traps to draw insects towards the area. Dung or carrion is typically used. The dung is collected from local ungulates – or, in more remote areas, the dung is supplied by the researchers themselves!

 

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Dung and carrion are used to lure insects into these pitfall traps.

 

Mid-flight traps consist of a piece of Perspex suspended in the air and below the Perspex, a number of colourful trays that contain a small amount of water.

Perspex trap.jpgMid-flight traps in action

 

Another method involves beating branches and collecting the falling samples on a modified umbrella to capture tree-dwelling species. A pooter is then used to collect the samples from the umbrella.


Lydia explained the critical nature of the permits that allowed the team to bring samples back into the country. Samples, usually suspended in alcohol for preservation, are drained ready for transportation. They are then flown back. Upon hearing this, a younger member of the Nature Live audience curiously enquired…


‘Do the beetles sit next to you on the flight?’


Sadly invertebrates are not permitted in the cabin and are relegated to the hold. Once back at the Museum, the samples are refreshed with a new batch of alcohol and then the sorting process begins.


Back at the Museum


After a six week trip the team will spend up to six months processing all of their findings. While Lydia’s team is only particularly interested in beetles, they process the entire selection and divide the other insects into orders. These insects are then sent to their respective experts for further classification.

 

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A tiger beetle from the subfamily Cicindelinae, collected by Lydia Smith and the rest of the team.

 

From this particular expedition, the team have identified a number of new species, including wasps and rove beetles. The total number of new species is difficult to define as a rigorous procedure is followed, involving a number of different specialists before a final decision is made. Often insects are named after the region in which they are found, which helps to highlight the importance of the region and increase the likeliness that this area will be protected in the future.


Beetlemania was yet another superb insight into work at the Museum and in the field. If you are interested in beetles and would like to chat to an expert, there will be a number of the collections displayed at the Museum's upcoming event Science Uncovered on the 26 September.

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Fascinating giants that roamed four continents from circa 700,000 to 4,000 years ago: woolly mammoths (Mammuthus primigenius) have been the subject of countless conversations here at the Museum in recent months. So Nature Live thought they would go with the flow by tackling the question of just 'Why did the mammoths go extinct?' Prof Adrian Lister, an expert in vertebrate palaeobiology, led this Nature Live and presented the two main arguments.

 

Climate problems?

 

The first argument Adrian presented was the climate change theory: that mammoths used to rely on grasses as their primary food source, and were exclusively vegetarians. These grasses produced a meadow-like landscape, which was a hugely rich and high quality food source for the mammoths.

At the end of the last ice age, around 14,000 years ago, a warming climate caused forest habitat to spread north and gradallly replace grasslands that the mammoths relied on for food.

 

During the last ice age, these grass meadows expanded across the northern hemisphere, expanding the mammoths' geographic range. These grass meadows were above the tree line, as the grasses could successfully survive in lower temperatures than trees. Here fascinating video footage lit up the Attenborough Studio's big screens, showing the growth and change of distribution of these meadow grasslands across the last ice age.

 

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Woolly mammoths roamed the earth between ca. 700,000 to 4,000 years ago, before they were driven to extinction.

 

Adrian then described the range of specialist adaptations that woolly mammoths used to survive in this extreme habitat. The most obvious of these was the thick hair which insulated them from the harshly cold weather conditions. It turns out that mammoths actually had two types of hair: a very fine hair close to the skin trapping and warming the air for insulation, and a coarser hair on the outside to help shield them from cold wind and rain. In addition to these adaptations, woolly mammoths also had a thick layer of fat underneath their skin to further insulate them.

 

To the audience's amazement at this point a true sample of woolly mammoth hair was put underneath the visualiser in the Studio. The hair was thousands of years old yet fully intact, but this was only the start. Adrian then stepped forward to pick up a whole mammoth lower jaw, illustrating how it would swing back and forth when chewing.

 

Holding this in his hands in front of the live audience visually demonstrated just how large the teeth of a mammoth were, and the large size of the surface area required for chewing tough plant material like grass. Adrian made it clear that studying mammoth teeth gives researchers a much clearer idea of what they ate. With this increased understanding of what mammoths ate, researchers can better pinpoint factors that could have eventually led to their extinction.

 

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A woolly mammoth lower jaw like the one presented during the Nature Live by Adrian Lister, demonstrating their huge teeth used for grinding plant matter.

 

Frozen mammoths have even been discovered with food content still inside their stomachs or intestines, their 'last supper', as it were. Studying these remains of partially digested plant matter taken from inside a preserved woolly mammoth has proven that they certainly did eat grass as a food source.

 

Knowing for sure that mammoths ate grass supports the climate change theory of habitat change, as the grass plains began to contract at the end of the last ice age around 14,000 years ago. This was because the earth's climate was warming, and forest habitat was spreading north so gradually displacing the grasslands that mammoths relied on for their food.

 

Adrian explained how, by using radiocarbon dating, we can age mammoth remains very accurately, and this has now been used to age and plot every mammoth fossil ever found. This in turn means that scientists like him can identify and mark the change in woolly mammoth distribution over time. This crucial extinction timeline can then be matched against the known changes in reduced grass cover and the increased spread of forest growth up into the woolly mammoth's natural range.

 

When scientists compare the changing distribution of woolly mammoths to the changing distribution of their grasslands, they match. This suggests that the spread of the forest upwards into the higher latitudes would have pushed the woolly mammoths north. So it was this change in vegetation from grassland to forest that was a major contributing factor, ultimately leading to the mammoth's extinction.

 

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As the woolly mammoths' range contracted they became extinct. Studying them now could help prevent future mammal extinctions.

 

At this point Adrian then put forward a second theory, saying that "nothing in science is ever that simple." This second theory is that early humans could themselves have been responsible for driving the woolly mammoths to extinction. 

 

Hunted to extinction?

 

Evidence for the 'people theory' is that the period of time that woolly mammoth numbers were declining also coincided with a rapid increase in the numbers of people. There have been skeleton remains of mammoths found which show damage from a flint tool splintered off in the bone. In the studio, images of this were brought up on the screen, clearly showing a human-crafted spearhead lodged within a mammoth bone. This is evidence that early humans did at least occasionally hunt mammoths as large game, either as a source of food, or for materials to build shelter.

 

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Flint spear heads have been found splintered-off within mammoth fossils proving that they were occasionally hunted by early humans.

 

As this Nature Live approached its end, Adrian explained that both of these theories could in fact have worked together at the same time to conspire against the woolly mammoth, thus driving it to extinction. The change in the climate driving forests to spread north would have forced the woolly mammoth into very restricted habitat patches, making them a heavily endangered species; this, combined with hunting by humans could have dealt the final blow to the woolly mammoths, sending them to the icy grave of extinction.

 

The event did end on a more positive note when Adrian explained that the woolly mammoths' death was not in vain. Studying and understanding the reasons why large mammals like mammoths went extinct could help scientists like Adrian prevent the extinction of other large mammals in future. And research on mammoths is now being used to help try and protect African elephants (Loxodonta africana) from following their footsteps.

 

Watch Adrian summarise the theories behind the extinction in the Museum's film from the Mammoths: Ice Age Giants exhibition, which closes on 7 September:

 

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With our satellite dish at the ready, the sun shining and half a dozen Museum scientists raring to go, last weekend's Nature Live events went down a storm!

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Linking back to the studio from the harbour in Lyme Regis, we brought the annual Fossil Festival to South Kensington. For visitors who were unable to visit the south coast in person, we revealed why Lyme Regis is THE place to go fossil hunting and showed our audiences some of the weird and wonderful specimens that can be found there.

 

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Museum curator Zoe Hughes reveals an Ammonite, found in the local area.

 

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Does this count as Big Pond dipping?

 

Sunday's events brought us up to date with the organisms that call our seashore home. I was out first thing trying my luck with my bucket and net. I think I was the oldest 'rock-pooler' on the beach!  Unfortunately, I didn't manage to find very much, except for lots of seaweed ... but this proved to be far more interesting than I had first thought!

 

Museum scientist Lucy Robinson explained that there are many different species of seaweed to be found along our coastline, varying in colour, shape and size. She also explained the various ways seaweeds and their extracts can be used - in toothpaste, ice-cream, fertilizer and cosmetics (to name but a few).

 

And of course, some types of seaweed can be eaten - such as sea lettuce. Lucy and I decided to give it a go ... our conclusion, it's very salty and a bit crunchy (but I think that may have been sand!)  To find out more about seaweed and how to identify them, visit our Big Seaweed Search pages.

 

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Yum!

 

Lyme Regis is a great place to visit at any time of the year. If you're interested in fossil hunting, look out for the many guided walks that are on offer throughout the year, giving you the opportunity to explore the beaches with a local palaeontologist who knows what to look out for and who can tell you more about the fossils that are found there.

 

And if you'd like to experience the Fossil Festival for yourselves, put this date in your diaries: Saturday 3 and Sunday 4 May 2014. If this year is anything to go by, it will be another great weekend!

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Having arrived in Lyme Regis yesterday, greeted by sunshine and sweet salty sea air, we have been exploring the seashore and getting our bearings today.

 

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Lyme Regis

 

No visit to Lyme is complete without a trip to the beach to go fossil hunting!  Keeping an eye on the tides, we headed out first thing this morning to try our luck.  Museum scientist Ed Baker is a regualr visitor to the Jurassic Coast and showed us what to look for.  Rounded rocks can sometimes contain beautiful fossils...but need to be cracked open to reveal the animal or plant within.  This requires a special geological hammer (ordinary ones can shatter if used!) and a touch of experience/skill (cracking the rock open at the right angle is important).  Fortunately Ed has both of these things and showed us how it was done....

 

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Rounded rocks are hit along the edge using the blunt end of the hammer


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Several ammonites are revealed within the rock

 

But you can also find fossils without the need for hammers.  By looking carefully and sifting through the rocks on the beach, you never know what you might find.  Ammonite fossils are pretty common and vertebrae and other bones from fossil marine reptiles can be found by the keen eyed.

 

With our pockets bulging with our dicoveries and faces glowing from the sun and sea air, we headed back into town to start setting up the satellite equipment for this weekend's live links.  If you can't make it down to Lyme Regis, why not join our museum scientists in the Attenborough Studio at the Museum as we link to you live from the festival....

 

 

You can also follow us on Twitter @NatureLive

 

For more information about the Fossil Festival, visit www.fossilfestival.com

 

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Honorary member of the team Ed Baker helps Media Techs Tony and Eddie set up our satellite equipment

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Phew, it's been a busy few weeks at the Museum!  With snow outside and schools on holiday, everyone was keen to visit the Museum and to mark the Easter holidays we decided to programme some suitably festive Nature Live events ... my favourite being Eggs-tinct! If you weren't able to see it in person, here are a few highlights:

 

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No egg event at the Museum is complete without reference to dinosaurs and Museum curator Lorna Steel brought along this beauty! A REAL dinosaur egg!

 

Equally, no egg event would be complete without the largest egg in the world ...

 

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No, this isn't some clever perspective, camera trickery - this really is the size of the largest kind of egg in the world (with Lorna's average sized hand above). This one belongs to an extinct Elephant Bird, a species that once lived in Madagascar. These birds were huge - at 3 m tall they were far larger than today's Ostriches - and consequently laid very, very big eggs. EGGs-traordinary!

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Remember, Jurassic Park? Twenty years ago it hit cinema screens across the world and entertained millions with the storyline of bringing dinosaurs back from extinction ... but it’s just a story, right?

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The answer 20 years later is "Maybe". This Friday we’re going to be discussing the possibility of de-extinction: bringing extinct species of plant and animal back from the dead. What was once sci-fi may soon be reality. But are we ready? Have we considered the implications and ethics of this developing science?

 

In 2000, the Pyrenean ibex, a species of wild mountain goat, was officially declared extinct. Once common throughout northern Spain and the French Pyrenees, it had been extensively hunted to extinction. But in 2009, with DNA taken from previously collected skin samples, scientists resurrected the species through cloning. 

 

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However, the cloned animal only survived for 7 minutes and died from breathing difficulties. Was it wrong to try to bring it back? Or could emerging scientific techniques be the answer to the current extinction crisis?

 

If a polar bear cub can generate an increased revenue of five million euros in one year for a German Zoo, imagine how much publicity and money a baby mammoth could generate. While this may seem exploitative, could de-extincting a mammoth result in the conservation of endangered species? Could the mammoth act as a flagship species for the development of new technologies?

 

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We’ll be asking these and other important questions at this After Hours discussion event during Friday’s Lates, and there should be plenty of food for thought. Do join us if you can but if you can't, I’ll post again next week and give you an insider’s view on the points that were raised and the topics discussed.

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Last week, Nature Live caught up with Museum scientist Dan Carpenter who has just returned from the wilds of Borneo!  I was lucky enough to join him for the last two weeks of his trip in the state of Sabah (in the North East of Borneo) and was blown away by the size and beauty of the rainforests there.

 

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The trees in Borneo are massive and often have buttress roots.

Dan and his team were using similar methods to those they've used previously in the New Forest, and were trying to find out more about the diversity of invertebrate species living in the rainforests of Borneo. 

 

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A large earthworm found in the rainforest

To carry out their work, Dan and the team used a variety of collecting methods, including pitfall traps and something called a SLAM trap - which looks a bit like a tent hanging up in the trees!

 

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A SLAM trap hanging up in the trees

 

In last week's Nature Live event, Dan explained how all these different collecting methods worked and what it was like to spend six weeks living in the rainforest. 

 

To find out more, catch up with Dan's blog or read my blog about the work being carried out by Dan and other Museum scientists in Borneo (including Holger and Pat, who study lichens) and see some great film footage of the wildlife we encountered.

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Recently we were joined by American filmmaker and writer Erin Espelie who was in London to show her film True Life Adventure at BFI London Film Festival. We hosted the second ever screening of the film in Nature Live.

 

True Life Adventure highlights the communities of insects found in and around freshwater streams, from stone fly larvae emerging from the water to spiders hoping to catch a meal in their web. Erin filmed the footage in less than two hours in an area of just 3.25 square feet on a single day in June, reminding us of the diversity of life that can be found on our doorstep.

 

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A still from Erin's film. Woodlice shelter under a rock.

 

Erin was joined by David Urry who works in the Angela Marmont Centre at the museum. He had been for a pond dip that morning and brought along the creatures that he found. Even in October the pond is teeming with life, from tiny water fleas to small snails to long leeches.

 

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Even in October there is lots of life in the Wildlife Garden pond. The small red creatures are water fleas or daphnia.

 

Most of the animals in the pond are in a constant battle to survive. David talked us through some of the adventures that the animals in the pond undergo every day such as the fearsome damselfly nymphs which prey on aquatic organisms using their extendable jaws. Damselflies are similar to dragonflies and live as nymphs in ponds or streams for most of their lives, shedding their skin when it becomes too tight as they grow.

 

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Large red damselfly in the museum's Wildlife Garden. Photographed by Derek Adams.

 

After about a year (but it can be longer) the damselfly nymph climbs out of the water and clings to a leaf or twig. Its body dries and after an hour or so its skin begins to crack and the adult damselfly wriggles out complete with fully-formed wings. The adult damselfly only survives for a few weeks and in this time it attempts to find a mate and avoid being eaten.

 

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Children getting a closer look at pondlife after the event.

 

David brought along some OPAL Water Survey packs so that the audience could explore the life in their local pond or stream. By taking part in the OPAL water survey you can help scientists learn more about the water quality of our lakes and ponds.

 

If you weren’t able to attend the event you can download a pack here.

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Meet Ollie Crimmen, fish section, Zoology. A scientist with a 37 year history at NHM. Earlier today I hosted his event (14:30 to be precise, come see a Nature Live sometime!) where he spoke with our audience about the likelihood of great whites in the UK. It seems the water temperature would suit and they have certainly been known to travel huge distances before. Food sources aren't a problem here either. So why no confirmed sightings? Maybe it's just a matter of time.....

The specimen here is from the massive collections Ollie cares for and is from a great white found stranded on a beach in Port Fairy, Australia. From at least as far back as 1831. For those of you located on UK shores, pop Ollie on your speed dial. He'll want to be the first to know if you spot Carchorodon carcharias roaming our coastal waters....
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Hopping Mad

Posted by Charlotte - Nature Live host Mar 13, 2011

It's been a busy weekend of events....first Tadpoles on Saturday and then Dwarf Elephants on Sunday.  A curious combination of topics, but each equally fascinating!

 

Our Tadpole event was timed to tie-in with the first frog spawn starting to appear in our ponds.....which apparently it is, although warmer weather should help more appear.  Apparently (according to our amphibian curator Barry Clarke) frogs have been known to produce spawn as early as December some years, but hard frosts kill the eggs and it's not until the weather becomes milder that the tadpoles are able to start developing.  In fact, the warmer the weather, the quicker they devlop from tadpoles to adults.

 

Barry was a complete star as always and brought along lots of specimens from our zoology collections.

 

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Note the specimen in the centre of the bottom row.....this is a Midwife Toad.  They show great parental care (unlike our common frogs which lay their eggs and then leave them!)  The female Midwife Toad lays her eggs and the male then wraps them around his back legs.  He then carries them around with him (swimming and moving about seemingly unhindered) until the tadpoles are ready to emerge and swim off.  Because of this parental care, the eggs are far safer and have a greater chance of survival than if they were left unprotected.

 

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However, for the ultimate in parental care, go onto the BBC website and use their 'wildlife finder' to watch some incredible footage of Darwin's frog.  You won't believe your eyes    http://www.bbc.co.uk/nature/life/Darwin%27s_Frog#p004j5y9

 

As for the Dwarf Elephants today, well, they were certainly small!  Tori Herridge (a researcher in our Palaeontology Department) brought along some fossils from our collections....including lots of teeth.  The photo below shows the tooth of an extinct Straight-Tusked Elephant at the bottom and an extinct Dwarf Elephant tooth at the top of the photo.  Quite a difference in size!  The Straight-Tusked Elephant was one of the largest elephants ever to live, and could grow to as much as 4 metres tall.  In comparison, Dwarf Elephants were sometimes only 1 metre tall as adults!

 

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We'll be repeating Tori's Nature Live event later this month, at 2.30pm on Wednesday 30th March in the Attenborough Studio.  As always, the event is free and lasts for 30 minutes.  So come and join us if you can and discover more about these mysterious Dwarf Elephants.....

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Phew, hot off the press, we've just released tickets for our October evening event.....Biodiversity: The Next Step

 

If you enjoyed the Big Nature Debate, or you're interested to know more about biodiversity, why it's important and what's being done to conserve it, then this is the event for you!

 

We've got some fantastic speakers and the event will be discussion based, so there'll be lots of opportunity for you to ask questions and discuss your ideas and concerns.

 

Details below or look on our website.

 

Biodiversity: The Next Step

 

Why is biodiversity important? In this, the International Year of Biodiversity, are we any more aware of its significance in our lives, and the fact that it is declining at an unprecedented rate?

This October, the United Nations is holding a global conference to discuss the continued decline in animal and plant species and set new targets to prevent a global disaster. But is it too late? We have already failed to meet the targets set in 2002. Will this time be any different?

Join us and hear from the following invited speakers:
Prof Geoff Boxshall (Merit Researcher, Zoology Department, Natural History Museum)
Peter Unwin (Director General for Environment and Rural, Defra)
Tony Juniper (Writer and environmentalist)
Prof Tom Burke (Environmentalist and Environmental Policy Adviser to Rio Tinto)


Take part in the discussions as we consider what needs to change, and how the goals set by the UN in Nagoya will influence both our own future and that of global biodiversity.

Part of Nature Live Nights.

Tickets £8 each (£7.20 members) plus £1.50 booking fee. Please book online, visit an information desk or phone 020 7942 5725.
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Who doesn't love a good dinosaur event?!  Triceratops, T-Rex, Diplodocus, Stegosaurus....the list goes on.  But have you ever heard of Scelidosaurus, the topic of our event last Sunday??

 

I certainly hadn't until I met Palaeontology Curator Tim Ewin.  Scelidosaurus was the first whole dinosaur ever to be discovered (before that, only parts of dinosaurs had been found, and no-one had discovered any skulls)....and what's more, it was found right here in England, along the coast at Lyme Regis.

 

 

Scelidosaurus wasn't a massive dinosaur, diplodocus and the like were all ALOT bigger, but it had some fantastic armour plating which may have helped protect it from predators but also may have acted as a form of display, to deter opponents or attract a mate.

 

 

But what's so special about the Scelidosaur remains in Lyme Regis (which are continually being discovered as the cliffs slowly erode) is their quality.  The fossils have been brilliantly preserved and scientists are able to study the bodies of these animals in great detail, including their skin which remarkably has also been fossilised.  

 

 

So next time you're talking about your favourite dinosaur, spare a thought for the often (and wrongly) forgotten Scelidosaurus.  The first whole dinosaur ever to be discovered, found right here on our fair isle and with fossilised skin too - you don't get much better than that!

 

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Scelidosaurus is the dinosaur at the bottom of the picture.  Megalosaurus is at the top.

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At about midday my mind drifts from the numerous emails and office politics and starts to consider my lunch options. Do I fancy a hot meal, a quick sandwich, healthy salad or maybe something a little more exotic? Sushi perhaps? Well not after speaking to Eileen Harris who works on parasitic worms! She’s doing a Nature Live event on the 31st August and I just met her to find out more about what her work involves. It’s fascinating, but you do need a strong, and preferably empty, stomach.

 

Parasitic worms live in everything from the largest whale to the smallest insects. Eileen will be bringing out a whole host (no pun intended!) of parasites to the event including her personal favourite, Eric; the 7m long tapeworm…definitely not one to be missed!

 

Back to sushi and let me introduce you to Anisakis simplex. This marine roundworm can be found in fish, eel and octopus and when you eat raw, unprepared seafood you could be also be swallowing live larval forms of this parasite. Needless to say once inside your system you’re going to know about it but the good news is that they usually die after a few weeks.

 

If, like myself, you’re a big sushi fan then rest assured that high-street sushi is safe as chefs are trained to identify these little parasites but they’re definitely something to look out for if you’re making it at home. Luckily Anisakis simplex is visible to the naked eye so happy hunting!

 

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Above: Anisakis simplex is commonly known as "herringworm"

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Today's Nature Live event was a real crowd pleaser.  Almost as popular as a dinosaur event (!), we caught up with the curator of our Pterosaur collection, Lorna Steel. 

 

Lorna did a great job of enthusing about the myriad of Pterosaur species that once filled the skies.  With an incredible variety of shapes and sizes, these creatures were around during the time of the dinosaurs and were very successful until the mysterious extinction that caused their demise as well as that of the dinosaurs.

 

Pterosaurs were flying reptiles and ranged in size - some were as small as the your average garden bird, others had a 10 - 12 metre wingspan!

 

There are a range of images on the Museum website, showing what these impressive animals may have looked like.  My favourite is the Tapejara

 

 

Lorna's off to a conference on Pterosaurs in China soon, so hopefully she'll find out the very latest on Pterosaur research and be able to fill us in at her next event.  She's already on a mission to count how many bones are in an average Pterosaur skeleton and how fast they flew....

 

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Picture:  Pteranodon was a giant flying reptile - a pterosaur - a close relation of the dinosaur. They lived during the Cretaceous period aroun 85 to 75 million years ago. Illustration by Neave Parker.

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Are we half-way through the year already?  How did that happen?!

 

It's been pretty busy in the Nature Live office recently, hence we've been a little slack on the blogging front, apologies.  With one member of the team back in her home-land of Australia and another about to go on maternity leave, we've all been doing alot of juggling.  But it's exciting juggling!

 

We've just finished hosting the 5th annual student summit here at the museum and I got to interview one of my wildlife presenting hero's.....Chris Packham.  He was wearing a rather radical squirrel print skirt (for which I shall forgive him!) and we chatted about the International Year of Biodiversity and the importance of conserving biodiversity.

 

It gave me lots of ideas for our upcoming evening event in October, when I hope to challenge the politicians, media and public and ask whether we're doing enough to conserve biodiversity and if what we're doing is working.  Well, that's the plan at the moment anyway!  It's still in the brainstorm phase.....

 

Anyway, my half-year new-year's resolution is to try and blog more regularly.  So if you don't hear from me, give me a nudge at naturelive@nhm.ac.uk or @NatureLive on twitter and spur me into action! 

 

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