Incredible internal strains within a biogenic single crystal viewed by X-ray diffraction tomography
Seknazi, E.; Zaslansky, P.; Villanova, J.; Katsman, A.; Pokroy, B.
Show abstract
The dorsal arm plates (DAPs) of the Ophiocoma Wendtii brittle star are highly functional single crystalline biominerals whose optimized structure and nanostructure enable them to fullfill mechanical and optical functions in the organism. Here, a large DAP bulk piece is characterized by means of synchrotron X-ray Diffraction Tomography (XRDT). This non-destructive crystallographic characterization revealed an astounding feature: the presence of very high compressive strains which relax when the mineral is cracked or grinded into a powder. Thus, previous destructive characterization techniques did not allow their detection. We attribute the compressive strains to the previously identified high-Mg calcite particles, which are coherently included and thereby compress the low-Mg calcite matrix. The measured slice contained both the bulk DAP sample as well as DAP powder. The data generated by the bulk piece could be separated from those by the powder, and the latter was used to calibrate and interprete the former. This study reveals yet another awe-inspiring feature of a biogenic structure, highlights the importance of non-destructive crystallographic characterization for biominerals, and exemplifies the potential of XRDT use in studying a single crystalline material, as well as the advantage of complementary measurement of bulk and powder for data calibration and interpretation.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Intermolecular Channels Direct Crystal Orientation in Mineralized Collagen 95%
- Probing the modulation of enzyme kinetics by multi-temperature, time-resolved serial crystallography 93%
- Exfoliated near infrared fluorescent CaCuSi4O10 nanosheets with ultra-high photostability and brightness for biological imaging 93%
Similar papers in this journal
Similar papers in this journal
- Novel correlative microscopy approach for nano-bio interface studies of nanoparticle-induced lung epithelial cell damage 94%
- Cryo-Correlative Light and X-ray microscopies: Expanding the Intracellular Chemical Map 92%
- Automatic structural analysis of bioinspired percolating network materials using graph theory 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.