Caza de fósiles prehistóricos en la granja: explore el mundo marino jurásico en el campo de un granjero

Cráneo de pez jurásico modelo 3d

pez jurásico llamado Paquicormo. Crédito: Decano Lomax

Un sitio prehistórico excepcional que contiene los restos de animales que vivieron en un mar tropical ha sido descubierto en el campo de un granjero en Gloucestershire, Inglaterra.

Los fósiles fueron desenterrados debajo de un campo alimentado por una antigua raza de vacas inglesas de cuernos largos, y se han conservado sorprendentemente bien. Aunque tiene unos 183 millones de años, los fósiles parecen congelados en el tiempo.

Los restos de peces, antiguos reptiles marinos, calamares, insectos raros y más, contenidos dentro de concretos de piedra caliza conservados en 3D, han sido desenterrados por primera vez por un equipo de paleontólogos. Los fósiles provienen de una capa interna de roca que se descubrió por última vez en el Reino Unido hace más de 100 años. Representa una oportunidad única para recolectar fósiles de una época en que esta parte del país estaba bajo el agua.

El sitio recién descubierto se encuentra en Court Farm, Kings Stanley, cerca de Stroud, Gloucestershire. Fue descubierto por Sally y Neville Hollingworth, ávidos coleccionistas de fósiles. Recientemente descubrieron restos de mamut en el cercano Parque Acuático Cotswold, un descubrimiento que apareció en un documental de BBC One.Cementerio de Attenborough y MammothEn 2021.

Sally y Neville explicaron: “Estos fósiles provienen de los primeros[{” attribute=””>Jurassic, specifically a time called the Toarcian. The clay layers exposed at this site near Stroud have yielded a significant number of well-preserved marine vertebrate fossils that are comparable to the famous and exquisitely preserved similar fauna of the Strawberry Bank Lagerstätte from Ilminster, Somerset – a prehistoric site of exceptional fossil preservation. Excavations at Kings Stanley over the last week have revealed a rich source of fossil material, particularly from a rare layer of rock that has not been exposed since the late 19th Century.”

Dr. Dean Lomax, a paleontologist and a Visiting Scientist at The University of Manchester, who recently led the excavation of the Rutland ichthyosaur that also dates to the Toarcian geological age, was part of the team and said: “The site is quite remarkable, with numerous beautifully preserved fossils of ancient animals that once lived in a Jurassic sea that covered this part of the UK during the Jurassic. Inland locations with fossils like this are rare in the UK. The fossils we have collected will surely form the basis of research projects for years to come.”

“The site is quite remarkable, with numerous beautifully preserved fossils of ancient animals that once lived in a Jurassic sea that covered this part of the UK during the Jurassic. Inland locations with fossils like this are rare in the UK. The fossils we have collected will surely form the basis of research projects for years to come.”

Dr. Dean Lomax

Many of the specimens collected will be donated to the local Museum in the Park, Stroud, where they will form a significant part of the museum’s paleontology collections. One of the team members, Alexia Clark, who is the museum’s Documentation and Collections Officer said: “We’re excited to expand our knowledge of the geology of the Stroud District and we are looking forward to a time when we can share these amazing finds with our members and visitors. Being part of the excavation team has been a real privilege and I can’t wait to share details of that experience through our members’ newsletter.”

Among the best finds were several fossil fish with excellent details of their scales, fins, and even their eyeballs. One of the most impressive discoveries was a three-dimensionally preserved fish head, belonging to a type of Jurassic fish called Pachycormus. The fish looks as if it is ‘leaping off the rock’ that it was contained inside. A digital 3D model of this fossil has been created by Steven Dey of ThinkSee3D.

Field observations and preparation of the fauna found so far indicate that the Court Farm fossils were rapidly buried, as suggested by the absence of any encrusting animals or burrows in the sediment. The layered concretions around the skeletons formed relatively early before the sediments were compacted, as the original sediment layering is preserved. These concretions prevented further compaction and compression from the overlying sediments during burial and thus preserved the fossils in three-dimensional time capsules.

Neville added, “Using the latest fossil preparation and imaging techniques to understand this unique fauna in more detail will create a rich repository. Also, we will leave a permanent reference section after excavations have concluded. Given the location and enthusiasm from the landowner and local community to be involved it is hoped to plan and develop a local STEM enrichment program as there will be opportunities for community groups and local schools to be involved in the research, particularly from the Stroud area with a focus of targeting audiences in areas of low STEM capital.”

The landowner, Adam Knight, said: “I’m delighted that after the initial work that Sally and Nev did over three years ago we now have a full-scale dig on the farm involving a range of fossil experts from The Natural History Museum, The University of Manchester, University of Reading and The Open University. On Friday we were also joined by Emily Baldry (16) on a day’s work experience before she goes to University to study paleontology – it’s wonderful to see her enthusiasm for her chosen profession. It has been a real pleasure to host the dig and I’m excited to see the results of what has been found.”

The team of paleontologists is very grateful to the Geologists’ Association Curry Fund for financing the excavation phase. Going forward, the team will continue to analyze the specimens and publish their research with the fossils planned for display at Museum in the Park, Stroud, and at the Boho Bakery Café at Court Farm, Kings Stanley, Gloucestershire. 

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