[7] Wagermaier, W., Gupta, H.S., Gourrier, A., Burghammer, M., Roschger, P., Fratzl, P. (2006) Spiral twisting of fibre orientation inside bone lamellae, Biointerphases 1, 1-5.
Abstract:
The secondary osteon — a fundamental building block in
compact
bone — is a multilayered cylindrical structure of mineralized
collagen fibrils arranged around a blood vessel. Functionally, the
osteon must be adapted to the in vivo mechanical stresses in bone at
the level of its microstructure. However, questions remain about the
precise mechanism by which this is achieved. By application of scanning
x-ray diffraction with a micron-sized synchrotron beam, along with
measurements of local mineral crystallographic axis direction, we
reconstruct the three-dimensional orientation of the mineralized
fibrils within a single osteon lamella (5 µm). We find that
the
mineralized collagen fibrils spiral around the central axis with
varying degrees of tilt, which would — structurally
—
impart high extensibility to the osteon. As a consequence, strains
inside the osteon would have to betaken up by means of shear between
the fibrils. Full text (open access).


