Perforations ("punctae") are one of the most characteristic morphological shell features in calcite brachiopods. The significance of punctae is that they represent discontinuities in shell biomineralisation and thus add a level of complexity that must be accounted for in any model of brachiopod shell formation. A significant hindrance to understanding punctae growth and formation is the absence of sufficient information on volume, size and density. Here, we use synchrotron-radiation X-ray tomographic microscopy (SRXTM) to obtain three-dimensional information about punctae of five species of calcite brachiopods. X-ray tomography shows that punctae morphology is species-specific and reveals previously unknown levels of complexity for each spe...
The shells of rhynchonelliform brachiopods have an outer (primary) layer of acicular calcite and an ...
Brachiopods secrete low-Mg calcite shells in near equilibrium with the surrounding sea water, with r...
We report a newly discovered dense microstructure of dendrite-like biocalcite that is formed by mari...
Perforations ("punctae") are one of the most characteristic morphological shell features in calcite ...
Perforations ("punctae") are one of the most characteristic morphological shell features in calcite ...
International audienceBrachiopods are still one of the least studied groups of organisms in terms of...
Brachiopods are still one of the least studied groups of organisms in terms of biomineralization des...
International audienceIn spite of several attempts fora best knowledge of the phylum, brachiopods re...
Abstract Biological hard tissues are a rich source of design concepts for the generation of advanced...
Closely related mineral-producing organisms share common biomineralisation processes. We demonstrate...
The study of the shell microstructure of brachiopods is fundamental to understand their evolutionary...
The geologically rapid biotic evolution in the early Cambrian is marked by the first appearance of m...
The shells of rhynchonelliform brachiopods have an outer (primary) layer of acicular calcite and an ...
Synchrotron radiation X-ray tomographic microscopy (SRXTM) is a non-destructive technique for the...
Brachiopod taxonomy is based on descriptions of shell morphology and key characters, but diagenesis ...
The shells of rhynchonelliform brachiopods have an outer (primary) layer of acicular calcite and an ...
Brachiopods secrete low-Mg calcite shells in near equilibrium with the surrounding sea water, with r...
We report a newly discovered dense microstructure of dendrite-like biocalcite that is formed by mari...
Perforations ("punctae") are one of the most characteristic morphological shell features in calcite ...
Perforations ("punctae") are one of the most characteristic morphological shell features in calcite ...
International audienceBrachiopods are still one of the least studied groups of organisms in terms of...
Brachiopods are still one of the least studied groups of organisms in terms of biomineralization des...
International audienceIn spite of several attempts fora best knowledge of the phylum, brachiopods re...
Abstract Biological hard tissues are a rich source of design concepts for the generation of advanced...
Closely related mineral-producing organisms share common biomineralisation processes. We demonstrate...
The study of the shell microstructure of brachiopods is fundamental to understand their evolutionary...
The geologically rapid biotic evolution in the early Cambrian is marked by the first appearance of m...
The shells of rhynchonelliform brachiopods have an outer (primary) layer of acicular calcite and an ...
Synchrotron radiation X-ray tomographic microscopy (SRXTM) is a non-destructive technique for the...
Brachiopod taxonomy is based on descriptions of shell morphology and key characters, but diagenesis ...
The shells of rhynchonelliform brachiopods have an outer (primary) layer of acicular calcite and an ...
Brachiopods secrete low-Mg calcite shells in near equilibrium with the surrounding sea water, with r...
We report a newly discovered dense microstructure of dendrite-like biocalcite that is formed by mari...