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- W2110449983 abstract "Although only recently discovered, the fossil record of embryonic development has already begun to challenge cherished hypotheses on the origin of major animal groups. Synchrotron-based X-ray Tomographic Microscopy has provided unparalleled insight into the anatomy and preservation of these fossil remains and this has allowed us to test competing hypotheses on their nature. With knowledge of both adults and embryos from the time of diversifi cation of the major animals groups, it is now possible to test models of developmental evolution based on modern model organisms using information from their long-extinct ancestors. Fossils represent the only direct record of evolutionary history, but that record has long been denigrated for its failure to provide any insight into embryology. Changes to embryology represent the most potent mechanism of evolutionary change, but until recently fossilisation processes had not been known to preserve structures as delicate as embryos. Remarkably, however, fossilised embryos have now been discovered in rocks deposited at the dawn of animal evolution [1-2]. These remains offer great opportunities for palaeontology to understand developmental evolution, but also great challenges to develop suitable methods of analysis of these microscopic remains. The scanning electron microscope is the routine tool of choice in palaeontology, but it only provides insight into surface morphology [1-2], while embryology mainly concerns events within. Methods such as sectioning have been employed [3] but interpretations of these data have proven highly equivocal [4], and desktop computed tomography provides insuffi cient resolution and contrast. SLS provides fundamental insights" @default.
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- W2110449983 date "2005-01-01" @default.
- W2110449983 modified "2023-09-22" @default.
- W2110449983 title "Swiss light shed on the nature of fossilised embryos from the dawn of animal evolution" @default.
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