• Title of article

    Rostrum of a toothed whale: ultrastructural study of a very dense bone

  • Author/Authors

    L. Zylberberg، نويسنده , , W. Traub، نويسنده , , V. de Buffrenil، نويسنده , , F. Allizard، نويسنده , , T. Arad، نويسنده , , Charles G. Sodini and Joseph S. Weiner.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 1998
  • Pages
    7
  • From page
    241
  • To page
    247
  • Abstract
    The rostral bones of the toothed whale, Mesoplodon densirostris, consist mainly of hypermineralized secondary osteons and have yielded among the highest values for density (2.6 g/cm3) and mineral content (86.7%) yet reported for any bone. Scanning and transmission electron microscopy show parallel rods of mineral oriented along the length of the rostrum. These consist of platey crystals of carbonated hydroxyapatite, which, judging from electron diffraction, are extremely well and coherently aligned. The collagen component of the rostral bone consists largely of very thin fibrils aligned in longitudinal register to form tubular networks. The collagen fibrils are also aligned with the lengths of the mineral rods, which are apparently accomodated in the tubular spaces of the collagenous network. This peculiar ultrastructure clearly differs from the densely packed mineralized fibrils commonly observed in vertebrate lamellar osseous tissues, although histological examination has indicated some vestiges of “normal” primary bone surrounding the secondary osteons. Thus, the bone tissue in the rostrum is characterized by a remarkably sparse collagenous component. This ultrastructure can explain the high density, stiffness, and brittleness of the rostrum that have been observed. It also raises interesting questions about possible modes of crystal growth during ongoing mineralization in normal bone, and may have some relevance in the mechanical behavior of dense bones in pathological conditions.
  • Keywords
    Collagen fibril organization , Bone ultrastructure , Whale rostrum. , Very dense bone
  • Journal title
    Bone
  • Serial Year
    1998
  • Journal title
    Bone
  • Record number

    490675