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Remarkable preservation of brain tissues in an Early Cretaceous iguanodontian dinosaur
- Source :
- University of Western Australia, Brasier, M D, Norman, D B, Liu, A G, Cotton, L J, Hiscocks, J E H, Garwood, R, Antcliffe, J B & Wacey, D 2016, ' Remarkable preservation of brain tissues in an Early Cretaceous iguanodontian dinosaur ', Journal of the Geological Society, vol. 448 . https://doi.org/10.1144/SP448.3, Brasier, M, Norman, D, Liu, A, Cotton, L J, Hiscocks, J, Garwood, R, Antcliffe, J & Wacey, D 2017, Remarkable preservation of brain tissues in an Early Cretaceous iguanodontian dinosaur . in Earth System Evolution and Early Life : a Celebration of the Work of Martin Brasier ., SP448, Special Publications, no. 1, vol. SP448, Geological Society of London, pp. 383-398 . https://doi.org/10.1144/SP448.3
- Publication Year :
- 2016
- Publisher :
- Geological Society of London, 2016.
-
Abstract
- It has become accepted in recent years that the fossil record can preserve labile tissues. We report here the highly detailed mineralization of soft tissues associated with a naturally occurring brain endocast of an iguanodontian dinosaur found in c. 133 Ma fluvial sediments of the Wealden at Bexhill, Sussex, UK. Moulding of the braincase wall and the mineral replacement of the adjacent brain tissues by phosphates and carbonates allowed the direct examination of petrified brain tissues. Scanning electron microscopy (SEM) imaging and computed tomography (CT) scanning revealed preservation of the tough membranes (meninges) that enveloped and supported the brain proper. Collagen strands of the meningeal layers were preserved in collophane. The blood vessels, also preserved in collophane, were either lined by, or infilled with, microcrystalline siderite. The meninges were preserved in the hindbrain region and exhibit structural similarities with those of living archosaurs. Greater definition of the forebrain (cerebrum) than the hindbrain (cerebellar and medullary regions) is consistent with the anatomical and implied behavioural complexity previously described in iguanodontian-grade ornithopods. However, we caution that the observed proximity of probable cortical layers to the braincase walls probably resulted from the settling of brain tissues against the roof of the braincase after inversion of the skull during decay and burial.
- Subjects :
- 0106 biological sciences
010506 paleontology
Materials science
ornithopoda
vasculature
iguanadon
Analytical chemistry
sub-04
Ocean Engineering
010603 evolutionary biology
01 natural sciences
Cretaceous
dinosauria
iguanodon
Siderite
chemistry.chemical_compound
meninges
mineralised tissues
Confocal laser scanning microscopy
Dinosauria
0105 earth and related environmental sciences
Water Science and Technology
Laser raman
Proterozoic
brain structure
iguanodontia
siderite
Brain
Geology
Dinosaur
hypselospinus
Early life
Secondary ion mass spectrometry
chemistry
Transmission electron microscopy
collophane
barilium
cellophane
Subjects
Details
- Language :
- English
- ISSN :
- 03058719
- Database :
- OpenAIRE
- Journal :
- University of Western Australia, Brasier, M D, Norman, D B, Liu, A G, Cotton, L J, Hiscocks, J E H, Garwood, R, Antcliffe, J B & Wacey, D 2016, ' Remarkable preservation of brain tissues in an Early Cretaceous iguanodontian dinosaur ', Journal of the Geological Society, vol. 448 . https://doi.org/10.1144/SP448.3, Brasier, M, Norman, D, Liu, A, Cotton, L J, Hiscocks, J, Garwood, R, Antcliffe, J & Wacey, D 2017, Remarkable preservation of brain tissues in an Early Cretaceous iguanodontian dinosaur . in Earth System Evolution and Early Life : a Celebration of the Work of Martin Brasier ., SP448, Special Publications, no. 1, vol. SP448, Geological Society of London, pp. 383-398 . https://doi.org/10.1144/SP448.3
- Accession number :
- edsair.doi.dedup.....ee57a5da943429099b44a9eae095cd4d
- Full Text :
- https://doi.org/10.17863/cam.204