Friday, 28 June 2013

Dr. Martin Whyte (University of Sheffield)

Working in the field of palaeontology, we folks are more aware than most of how brief our time is on the planet when viewed against the grand scheme of the evolution of life on Earth. However, it is still deeply saddening when we announce the death of a friend and colleague. On Tuesday this week Palaeontology lost one such man, Dr. Martin A. Whyte. He passed away while being comforted by his wife Carol and long-standing friend and colleague, Dr. Mike Romano.


Martin studied geology in the Universities of St Andrews (BSc) and Edinburgh (PhD) before he worked as a Research Assistant and Research Fellow in the Department of Geology, University of Hull. He was appointed to the Department of Geology at the University of Sheffield in 1974 before he was transferred to the Department of Geography in 2001. His research activities were both broad and diverse and included dinosaur tracks, dinosaur eggs, Carboniferous palaeoenvironments and biomineralization, all of which gave rise to many high-profile papers in the course of his successful academic career.

Martin will be remembered by many, as he touched the lives of countless undergraduate and graduate students in the course of his career. The words you are reading are testament to Martin's patience, as he also guided me through my PhD at the University of Sheffield, helped by his close friend and colleague Dr. Mike Romano. The four years I spent at Sheffield helped lay the foundation for my career in academia, which would not have been possible if it were not for the opportunities that both Martin and Mike gave me. 


My thoughts are with Martin's family and friends.

Wednesday, 12 June 2013

X-rays Reveal New Picture of 'Dinobird' Plumage Patterns

 The first complete chemical analysis of feathers from Archaeopteryx, a famous fossil linking dinosaurs and birds, reveals that the feathers of this early bird were patterned  – light in colour, with a dark edge and tip to the feather ­­– rather than all black, as previously thought. 


The findings came from X-ray experiments undertaken by our team from the University of Manchester, working with colleagues at the US Department of Energy’s (DOE) SLAC National Accelerator Laboratory. The scientists were able to find chemical traces of the original dinobird and dilute traces of plumage pigments in the 150 million year old fossil.



This is a big leap forward in our understanding of the evolution of plumage and also the preservation of feathers,” said Dr. Phil Manning, a palaeontologist at the University of Manchester and lead author of the report in the June 13 issue of the Journal of Analytical AtomicSpectrometry (Royal Society of Chemistry).

Only 11 specimens of Archaeopteryx have been found, the first one consisting of a single feather. Until a few years ago, researchers thought minerals would have replaced all the bones and tissues of the original animal during fossilisation, leaving no chemical traces behind, but two recently developed methods have turned up more information about the dinobird and its plumage.

The first is the discovery of melanosomes – microscopic “biological paint pot” structures in which pigment was once made, but are still visible in some rare fossil feathers. A team led by researchers at Brown University announced last year that an analysis of melanosomes in the single Archaeopteryx feather indicated it was black. They identified the feather as a covert – a type of feather that covers the primary and secondary wing feathers – and said its heavy pigmentation may have strengthened it against the wear and tear of flight, as it does in modern birds.

However, that study examined melanosomes from just a few locations in the fossilised feather, said SLAC’s Dr. Uwe Bergmann. “It’s actually quite a beautiful paper,” he said, “but they took just tiny samples of the feather, not the whole thing.”

The second is a method that Uwe Bergmann, Phil Manning and Roy Wogelius have developed for rapidly scanning entire fossils and analysing their chemistry with an X-ray beam at SLAC’s Stanford Synchrotron Radiation Lightsource (SSRL) in the USA.


Over the past three years, a team led by Bergmann (SLAC), Manning and Wogelius of the University of Manchester used this method to discover chemical traces locked in the dinobird’s bones, feathers and in the surrounding rock, as well as pigments from the fossilised feathers of two specimens of another species of early bird. This allowed the team to recreate the plumage pattern of an extinct bird for the very first time.

In the latest study, the team scanned the entire fossil of the first Archaeopteryx feather with the SSRL X-ray beam. They found trace-metals that have been shown to be associated with pigment and organic sulphur compounds that could only have come from the animal’s original feathers. ‘The fact that these compounds have been preserved in-place for 150 million years is extraordinary’, Manning said.
‘Together these chemical traces show that the feather was light in colour, with areas of darker pigment along one edge and on the tip. Scans of a second fossilised Archaeopteryx, known as the Berlin counterpart, also show that the trace-metal inventory supported the same plumage pigmentation pattern’, Manning said.


Co-author Dr. Roy Wogelius, also based in Manchester’s School of Earth, Atmospheric and Environmental Sciences, said: “This work refines our understanding of pigment patterning in perhaps the most important known fossil. Our technique shows that complex patterns were present even at the very earliest steps in the evolution of birds.”

The team’s results show that the chemical analysis provided by synchrotron X-ray sources, such as SSRL, is crucial when studying the fossil remains of such pivotal species. The plumage patterns can begin to help scientists review their possible role in the courtship, reproduction and evolution of birds and possibly shed new light on their health, eating habits and environment. More importantly, said Manning, ‘It is remarkable that x-rays brighter than a million suns can shed new light on our understanding of the processes that have locked elements in place for such vast periods of time. Ultimately this research might help inform scientists on the mechanisms acting during long-term burial, from animal remains to hazardous waste. The fossil record has potential to provide the experimental hindsight required in such studies.’



The research team included scientists from the University of Manchester (UK); SLAC (USA); the Black Hills Institute of Geological Research in South Dakota (USA); and the Museum für Naturkunde in Berlin (Germany), which provided the stunning Archaeopteryx fossils for analysis.

The paper is free to download at this LINK.

Thursday, 6 June 2013

Expedition planning ahoy!

It is that time of year when our undergraduates either go home or graduate...sometimes both. It is also the time of year when my team and I look to our various field projects to work-out where best to focus our time and energies in the coming months. We have to decide if we need to go back to our tropical cave system and dodge possible hurricanes; or maybe seek the attention of pigeon-sized mosquitoes in the badlands of South Dakota...either way, we have to start planning our field season soon.


This year we hope to divide and conquer, with both caves and badlands being on the menu. The two projects offer very different outputs, but they all feed into the same taphonomic ('burial laws') research pot. A major concern for me, is whether my surgery on my shoulder will slow me down or necessitate a more observational role...I think I can still abseil or drag myself through wafer-tin gaps (see Mike Buckley below!!!)....one-armed?


The other major factor that impacts our field programme is the dreaded funding side of things....yes, money plays a major role in any expedition. Gaining support for speculative fieldwork from funding agencies is very, very tough....as it is hard to quantify outputs, especially if fieldwork mostly entails wondering through badlands or squeezing through caverns looking for dead beasties. Maybe we can calculate the possible number of bug-bites and produce some statistics on where we are most likely to be bitten (in both geographical and anatomical terms)...but methinks this idea would not float with too many funding body....unless it was for some bizarre drug-trial requiring guinea pigs for bug repellent?


It seems ironic that exploration is even harder for scientists in the 21st Century than it was for some of our predecessors in the 19th and 20th Centuries. Hopefully, a combination of badland sun-burn and caving vitamin D deficiency will help balance-out our summers fortunes?


Sunday, 2 June 2013

'Intense' but fun weekend at the Diamond Synchrotron

Forgive this post being 'after the fact', but alas the outreach event that my team and I attended at the Diamond Synchrotron (near Oxford) was already sold-out before we arrived here last Friday! This was one of those wonderful weekends when this world class facility opened its doors to the public, including behind the scenes tours of the actual synchrotron.... quite awesome!

Diamond Lightsouce

Given visitor numbers are restricted in to access the main synchrotron hall (the round bit above), each day had to be booked in advance with the Diamond outreach team. As groups were taken in and out of the facility, they also had to run the gauntlet of science outreach exhibits... including our own! Here we spun our tales of dinosaurs to particles to the visiting groups of families, students and folks who just thought it would be cool to see what happens under the space-ship-like Diamond building.



Today my colleagues pointed out that I can get a little carried away when talking about our science. Apparently my enthusiasm can sometimes evolve into 'intense enthusiasm'.....something I had not realised! To support this, my 'helpful' colleagues took some photographs of me talking whilst I was wearing the 'Phil intense face'. I hope that folks who visited today were not too put-off by an over-enthusiastic palaeontologist, who decided to spend his birthday...pulling faces at kind folks who were interested in hearing how unpicking the chemical ghosts of fossils from the past, has real value and applications to both the present and future of our planet.

Saturday, 18 May 2013

American Museum of Natural History....talk!

If there are any folks who fancy coming along to my lecture at 2pm this Sunday (May 19th) at the American Museum of Natural History (New York), please come along! My talk is entitled, 'Bright Lights and Dinosaurs'.

I have been invited to talk there by the New York Paleontological Society, a splendid body of folks who delve deep into the evolution of life on Earth. You can join this awesome group on this LINK.

You might also get to see some of our most recent cave images, LiDAR scans and even video footage from the antediluvian expedition we mounted over the last two weeks!




Thursday, 16 May 2013

Cave crawling with lasers....

Sometimes you think of a 'great idea'...but then you have to put it into practice. Like many good ideas, they are often far more painful than you might have predicted. When I say painful, it defeats explanation of the many bizarre ways I have found to inflict pain upon myself undertaking what seemed initially a simple procedure. Next time I suggest in a research group meeting 'why don't we simply scan the whole cave system?' either ignore me, or clump me on the head with a blunt object. The LiDAR scanning of a cave system that seems beautifully adapted to size 0 troglodytes is astoundingly hard, hot and positively grim labour.

Dr Bill Sellers tests his Sciatica within the cave system....

The chosen LiDAR tool was certainly the best kit we could have chosen for the task. The Z+F Imager is stunningly engineered and simple to use (the latter being very important for me!). This little beauty pulses an eye-safe laser that maps the 3D geometry of the cave, as we move it from scan station to scan station...some 50+ in the depths of the subterranean maze. Ideally this means we do not get in the way of the said laser when it rotates 180 degrees to scan its surroundings. When using the kit in the open, this is fine...but in a cave, this involves us working alone or in pairs at most (in this case, Bill Sellers and I). As the unit rotates, you have to move with the rotation, avoiding contact with the beam. This makes the later alignment of the 3D scans much easier and there is less tidying-up required of the said scans. In a cave, this involves twisting your body around corners in an attempt not to be scanned....if there is two of you, it is like playing a bizarre game of 3D 'Twister'. Needless to say, a few hours into the scanning, we were monumentally exhausted and ached in places that only maybe an Olympic Twister Champion might ache.

Z+F Imager about to spin its funky stuff...as we rapidly retreat into the nooks and crannies of the cave!

There is a short delay before the Z+F unit kick-starts each scan, if there is a potential hide hole...this is the time when we scurry like giant gerbils in a stony cage towards stoney refuges in an attempt to avoid messing-up the scan...this is when we trip, scrape, bump, bash and abrade our heads, shoulders, knees and hips against the unforgiving walls of the cave. I am grateful the scanner does not record sound...as there there would be vast stretches of profanity that would blight each and very scan...requiring a major edit from the final data.

Our Cave-man natural history guide checks a LiDAR scan marker
By now you might have noticed that I have not mentioned where we are on the planet...other than the fact we are just north of the equator. This is simply to protect one of the most pristine cave systems that the members of our team have ever had the privilege to work within. At this point I would love to praise our local guide, who has been the all-seeing and all-knowing oracle on maters of natural history and a sump of information on the antediluvian realm we are spending so much time. We could not ask for a better guide...who seems to have super-human strength and abilities in terms of caving..not to mention his bat-like night vision. Alas, our splendid guide must remain anonymous, but we still want to thank him for his patience and humour.

Dr Bill Sellers hides in his 'hobbit laser avoidance hole' as I do the 180 degree LiDAR dance...
As with many of our travels, we get to meet many kind and generous folks and today was no exception. The neighbours on the adjoining land to the cave system offered iced tea and provided some of the best tasting water melon in my life. It is amazing how the sensory depravation of a cave system heightens your tastebuds! We even managed to tempt one of the neighbours underground to share some of our enthusiasm for our chosen task. Once we have the 3D maze of the caverns reconstructed from the LiDAR scans...we will also be able to invite you all into the wonderful cavern we have named 'Green Cave'.

Tuesday, 14 May 2013

Just like a cave....only tighter!

Today we discovered that the frame of an ex-rugby player with a shot rotator cuff is not ideal for caving. Some of the caves that we ventured into today were so tight, that sheets of paper would need to exhale before squeezing through the micron-wide gaps that the caverns presentred us with. Needless to say, some of the team were better suited than others to these tight situations.


At first glance such caves seemed almost possible...but the knee-scouring, chest rubbing, head-butting environment soon seemed better suited to size zero troglodytes. However, Bill Sellers stepped into the breach, or more accurately squeezed into it. So much so, we were worried he might become a permanent feature of the cave. However, after several gallons of perspiration, he managed to slip and slide his way between the unforgiving bedding planes of this particular cavern.


Dr Egerton was also able to squeeze between rocks, where few would dare to pass. Clutching sample bags in one hand and dragging your body with toes and fingernails, was not a task many were up to today...but it seems Victoria is at home in the caves.


I have video of Dr Mike Buckley extracting himself from the jaws of one particular cavern. An image of this incredible endeavour would not do him justice...but the his atire clearly shows the scars of an heroic encounter of a cavernous kind!


As for my endeavours today....well, it has taken me far too long to write this blog one-handed. Caving with a bad shoulder is not a great idea. By the close of play today, we were all hot, dripping in perspiration,  exhausted and very muddy...but above all, we were happy with our exploration achievements of the day.


Here ends another day at the office......

Monday, 13 May 2013

Karst limestone and crabs...

30 degrees Celsius and 75% relative humidity today, but a cool breeze blew on-shore from the South making the heat just bearable.  As we pushed our way through dense undergrowth that seemed determined to snag, pull and slice all members of our team, the temperature and humidity seemed to increase step-by-step and the air became still. Looking over our shoulders back towards where we had left our car, all we could see now was dense jungle, for want of a better term. The ground soon began to get steeper, being the main indicator that we were walking away from the coastal road. We finally reached the base of the limestone wall that seemed as populated with vegetation as the 'path' from the road. Looking up, we could see countless cacti, palms, aloe, mixed with a bright array of tropical plants...all in our path and obscuring the top of the cliff.

Dr Victoria Egerton encourages Dr Mike Buckley not to use the cacti as a hand-hold.
The cliff was severely weathered into a typical karst limestone topography, where dissolution of the more soluble component of the formation left a sharp, almost clinging/sticky surface. The rubber on the soles of our shoes seemed to adhere to the sharp and very unforgiving dolomitized limestone. All member of the team were already drenched in sweet....but we slowly pushed-on, up a vague pathway: one that few had trodden. Finally, at about 40 metres up the rock face, we came to a small ledge and a 1 metre diameter hole, punched into the wall of the sheer cliff. The karst topography had given-up one of its sought-after features...a cave entrance!

Hot, Humid and Happy. Dr Phil finds a hole to explore.
Slowly we donned our caving helmets and crawled into the narrow hole...that soon became narrower and narrower  with awkward twists and turns, combined with tearing dolomitic teeth from the floor, walls and ceiling of the cave. Daylight was soon lost behind us and only the narrow beam of our headlamps picked-out the path deeper into the cave. The humidity was soon oppressive, around 80% rel, and when combined with the 30 C...we were hot, sweaty and miserable. Caving in Britain is at least 20 degrees cooler and half the humidity. However, we had come along way to turn around now. We pushed-on into the cave.

Squeeze!
We were soon reduced to crawling on our bellies and pushing our way through tighter and tighter passages, some that led to larger chambers, allowing us to periodically stand-up and stretch our legs. In the corner of a small cavern, something caught our eye...something moving. It seems were were not alone in the depths of the cave system. Somehow, a rather beefy land crab had climbed its way deep into the cave system and seemed happily living in a damp corner.

Cave occupant gets crabby at our presence.
These remarkable crustaceans have evolved to live on land, through 'stiffening' their gills with the same structural biomaterials that construct their tough shelly armour. This prevents their gills collapsing out of water, so the crab has an affective 'lung' that allows its terrestrial life. However, crabs meant trouble for us...as these crunchy scavengers have a nasty habit of ploughing their way through the cave floor debris, often messing-up any possible evidence of prior life in the caves. What might have once been articulated skeletons of a few distinct species, becomes a phylogenetic soup of bones, dust and debris. After surveying the cave for a few hours....we had to retreat to the 'cool' air outside...

Prof. Andrew Chamberlain, Dr Bill Sellers and Dr Mike Buckley emerge from the cave...slightly warm!
This is one cave we will try and LiDAR map later this week, as it holds some rather fun secrets....but more on that later. We only have four days to locate, prospect and map new caves lurking in this tropical karst landscape...that will hopefully not have been 'blended' by the local wildlife.

Wednesday, 8 May 2013

Lasers, caves and bones...

It is rare that palaeontologists requires caving equipment to track down extinct beasties. However, my teams baggage is currently bulging with hard-hats, lamps, knee-pads, etc., as we are headed underground.

The next few days should be rather fun. We will be trying-out our new Z+F LiDAR unit to image some beautiful caves at a new field area we are currently exploring. We hope to deploy the LiDAR unit to map in-situ bones within this very 3-Dimensional environment. The scans will allow us to spatially plot bone positions relative to the whole cave complex and then relate the materials temporal position within the stratigraphy from which each bone hails. We aim to use this data to better understand the pre- and post-transport/reworking and burial of the said assemblage.... amongst other things.

The most amazing facet of this particular cavern of delights, is that the vertebrate assemblage seems relatively undisturbed, possibly down to the remote nature of our site. I will try and find a way to upload images over the next few days...but this may be difficult....and will be somewhat dictated by the availability of subterranean internet!

Wednesday, 1 May 2013

Wedding Selection as an adaptive convergence?


This blog is never used to discuss anything other than palaeontology and the research that our group undertakes at the University of Manchester, but here I make a rare exception.  I will let you be the judge of whether the following belongs on our blog....I think it just makes the mark!

On Saturday April 27th Victoria Egerton and I had our wedding ceremony at the Manchester Museum (University of Manchester). Given our shared interest in palaeontology, we thought our vows should reflect this. Here follows a rather Darwinian wedding ceremony.... 

"Friends, we are gathered here today to join Phillip and Victoria in marriage. In this beautiful building, which is one of nature’s treasure houses, they announce that they will share their lives together. We are all called to be witnesses here today to the love that they share for each other."

Main Ceremony 
"The adaptations that natural selection has gently bestowed upon us yield the endless forms most beautiful that fill our lives. Life on our planet today is one where the struggle for existence is made so much kinder when shared with a partner who understands and jointly explores the wonders of the world in which we live. 

Phil and Victoria have chosen to share their lives together and discover the wonders of the world in their coming years. The chemistry of love that bonds them is firmly linked by their shared experiences and knowledge that brings these two people together so closely.

Just as the bonds of a double helix dictates the beautiful complexities of life, their love for each other is firmly bound in the security that their very existence is linked to all life on earth, whose shared elemental origin was the very building blocks of stars.

The commonality of the molecules that builds life on Earth, transferred from generation to generation, links Victoria and Phil to the planetary cycles that mobilize, share and regenerate all life on Earth.

Together they have many close friends, some of whom have joined them today on this special occasion. Many of their friends enjoy taking time to think, ponder and share the eccentricities that divides us, but that also creates a shared bond between us. As Darwin once said,  “A man's friendships are one of the best measures of his worth”, if this be the case, both Victoria and Phil share great wealth.

Their transatlantic journeys have brought them together, when so often the continents have impeded such migration. The distances that once parted Victoria and Phil, is now bridged through the love that they both share for each other.

May the light that their love brings into the world shine brighter than a million suns."

The Dismissal 
"Einstein beautifully summed-up up the love that both Victoria and Phil clearly share, 'Gravitation cannot be held responsible for people falling in love. How on earth can you explain in terms of chemistry and physics so important a biological phenomenon as first love? Put your hand on a stove for a minute and it seems like an hour. Sit with that special girl for an hour and it seems like a minute. That's relativity.'

Please join us in wishing Victoria and Phil a successful and exciting journey to discover their future and build a life together, governed by the laws of natural selection and the love that they share for each other."






Tuesday, 16 April 2013

Rotator cuff pain past and present...

The bones, tendons and muscle that come together in the shoulder are usually referred to as the rotator cuff (but others use 'rotor cup' or 'rotary cuff'). In mammals the complexities of this particular anatomical feature can often bring us pain and discomfort, but dinosaurs were also no strangers to such delights. The relatively conservative anatomy that we vertebrates share so liberally, also generously allots the various aches and pains of the musculoskeletal system to all species...but I have to say that dinosaurs seemed to be able to deal with far more trauma when compared to our relatively frail bodies. The theropod (predatory) dinosaurs often display an array of healed injuries that have attracted the attention of pathologists...those who study and diagnose disease, given the skeletons of these ancient predators are often scarred with evidence of trauma (albeit not much disease!). However, before I get carried away with fractured bones, abscessed jaws and slipped discs...let me refine my tour of pain and discomfort back to the shoulder.


If I were asked to choose my favourite shoulder injury...as if that is something you might ever consider doing...there is a wonderfully sick saurian individual housed at the Indianapolis Children's Museum. This particular dinosaur was stalking around in the Late Cretaceous and is now named Gorgosaurus (literally  'fierce lizard'). Among its many injuries was a splendidly grotesque shoulder trauma that resulted in a vast lump of bone growing over the site of 'impact'. The enlarged lump of roughened healed bone can be clearly seen (below) with the the smooth surface of the unaffected shoulder blade (scapula) to the right and the coracoid to the left. These two bones combine to form the shoulder joint (glenoid) in which the upper arm (humerus) articulates. As an aside, the U-shaped bone to the far left is the wishbone (fused clavicles) of this rather oversized bird relative...you would have been hard-pushed to pull this particular wishbone, mainly due to us humans not having yet evolved.


The relative simplicity of the above shoulder complex clearly did not shield this joint from the slings and arrows of misfortune that wreaked havoc with this animals left arm. The evidence seen in this remarkable fossil clearly shows the skeletons reaction to injury, growing additional bone to stabilise the site of injury. However, the smooth surface of unaffected bone was replaced with a roughened surface over which the scapulohumeral muscles would have had to function...this would have been quite painful....that is an understatement. My own interest in this particular injury is quite personal, as I too have managed to damage my rotator cuff. Last field season, whilst juggling a 250 pound field jacketed dinosaur bone, I damaged my left left shoulder when lifting the said fossil. The trauma was minor, so initially treated with anti-inflammatory drugs, but almost a year on...I realise that I am beginning to feel a fraction of the pain that Gorgosaurus might have. It seems that my joint is also generating new bone-growth, shifting the path of some tendons and muscles in my shoulder. While my pain is irritating and providing sleepless nights...I will get this fixed in time. Looking at the impressive array of breaks, fractures, avulsions, tumour and infections on this Late Cretaceous predator, I have a newfound healthy respect for these natural born survivors.


Thursday, 28 March 2013

Bright Lights and Dinosaurs Lecture...

Last week was National Science and Engineering week in the UK. The University of Manchester hosted many events for local schools and colleges, including workshops and lectures.  The Palaeontology Research group took part in the science fair, but yours truly also gave a lecture. The University just posted the lecture on the web, but I thought I might give you some insight to our wonderful world of synchrotrons, fossils and pigments!

Follow this LINK and you can even download the lecture...if you need to frighten any local wildlife!

Tuesday, 12 March 2013

VI International Symposium on Dinosaur Palaeontology


Occasionally an awesome dinosaur meeting appears on the horizon that you HAVE to attend. The VI International Symposium on Dinosaur Paleontology and their Environment is one such meeting. This event will run from 5 to 7 September in 2013 in Salas de los Infantes (Burgos-Spain).

More information on the meeting can be found at this LINK.

The first circular with information on this meeting can be found at this LINK.

Primera circular de las VI Jornadas Internacionales sobre Paleontología de Dinosaurios y su Entorno. 5-7 septiembre 2013, Salas de los Infantes.

El Colectivo Arqueológico y Paleontológico Salense (C.A.S.) y el Museo de Dinosaurios de Salas de los Infantes anuncian la próxima celebración de las VI Jornadas Internacionales sobre Paleontología de Dinosaurios y su Entorno, que se celebrarán en Salas de los Infantes (Burgos) del 5 al 7 de septiembre de 2013 con la colaboración de la Universidad de Zaragoza, la Universidad del País Vasco y la Universidad de Salamanca.

PREINSCRIPCIÓN
Las preinscripciones se harán desde: http://vijornadassalas.blogspot.com.es/ ; el plazo final para las inscripciones con descuento es el 31 de julio de 2013. Las tarifas serán:
Antes del 31 de julio de 2013: - Normal: 70 ?. - Estudiantes/doctorado: 35 ? Con posterioridad al 31 de julio de 2013: - Normal: 80 ? - Estudiantes/doctorado: 45 ?

INFORMACIÓN
Para cualquier información sobre las VI Jornadas visitar la siguiente página o contactar con la organización en las siguientes direcciones electrónicas. http://vijornadassalas.blogspot.com.es/ Email:caspaleontologia@gmail.comEnvío de resúmenes:http://vijornadassalas.blogspot.com.es/ Dirección postal: Colectivo Arqueológico-Paleontológico de Salas; Plaza Jesús Aparicio, 9. 09600 Salas de los Infantes (Burgos, España). Tfno. contacto: Museo de Dinosaurios de Salas de los Infantes (0034) 947 39 70 01 Segunda circular: abril de 2013 Tercera circular: julio de 2013

Friday, 8 March 2013

Twinkle, Twinkle little Star...

Today started early with a long drive from Manchester to Harwell in Oxfordshire. Many of you who have read my earlier blog postings, will know this is where the Diamond Synchrotron Lightsource lives. It is here that my colleagues and I often come to bathe fossil samples in the super-bright light that this facility produces.


However, today is a little different. I am here to give two public lectures on our work on using synchrotron light. My aim is to demonstrate how such bright light sources can probe the delicate trace of the atomic heart that beats invisibly within the very building blocks of fossils....and the echo the chemistry of the ast life that they represent. This kind of work can only be achieved by using such powerful x-ray sources.

Having given one lecture, I am sat quietly working inside the foyer of the vast research complex...catching-up on my blog. The weather outside stinks...grey, cold, windy and raining...as dusk falls, there is not a single star in the sky... it is tough separating sky from the mist swirling around the facility. But who needs stars, when you have a synchrotron lightsource that can shine a million times brighter than mere celestial bodies. This is not so much 'Like a Diamond in the Sky'...but more like one brighter than a million stars, just outside Didcot in Oxfordshire, England.

 

'Twinkle Twinkle little star
How I wonder what you are
Up above the world so high
Like a 'synchrotron' in the sky...'

...only not as bright!'