The narwhal (Monodon monoceros) cementum–dentin junction: A functionally graded biointerphase
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Sunita P Ho | P. Schuck | F. Eichmiller | P James Schuck | S. Ho | M. Nweeia | Kathryn Grandfield | S. Djomehri | Netta Lev-Tov Chattah | K. Grandfield | Sabra I. Djomehri | Sabra Djomehri | Naomi Eidelmann | Frederick C Eichmiller | Samuel Webb | Martin Nweeia | N. L. Chattah | S. Webb | Naomi Eidelmann
[1] T. G. Smith,et al. The Narwhal, Monodon monoceros, in Eastern Canadian Waters , 1975 .
[2] R. Dietz,et al. Some characteristics of narwhal, Monodon monoceros, diving behaviour in Baffin Bay , 1995 .
[4] L. Junqueira,et al. The influence of tissue section thickness on the study of collagen by the Picrosirius-polarization method , 2004, Histochemistry.
[5] Steve Weiner,et al. Design Strategy of Minipig Molars Using Electronic Speckle Pattern Interferometry: Comparison of Deformation under Load between the Tooth‐Mandible Complex and the Isolated Tooth , 2009 .
[6] G. Marshall,et al. The effect of sample preparation technique on determination of structure and nanomechanical properties of human cementum hard tissue. , 2004, Biomaterials.
[7] M. Ishiyama. Enamel structure in odontocete whales. , 1987, Scanning microscopy.
[8] D. Fox. Growth increments in Gomphotherium tusks and implications for late Miocene climate change in North America , 2000 .
[9] Michael Locke,et al. Structure of ivory , 2008, Journal of morphology.
[10] Sunita P Ho,et al. Structure, chemical composition and mechanical properties of human and rat cementum and its interface with root dentin. , 2009, Acta biomaterialia.
[11] J. Currey,et al. Hardness, Young's modulus and yield stress in mammalian mineralized tissues , 1990 .
[12] S. Suresh,et al. Fundamentals of functionally graded materials: processing and thermomechanical behaviour of graded metals and metal-ceramic composites , 1998 .
[13] J. Currey,et al. The mechanical properties of the dentine and cement of the tusk of the narwhal Monodon monoceros compared with those of other mineralized tissues. , 1990, Archives of oral biology.
[14] J. Quinn,et al. Considerations Of Anatomy, Morphology, Evolution, and Function for Narwhal Dentition , 2009 .
[15] Peter Fratzl,et al. Enamel-like apatite crown covering amorphous mineral in a crayfish mandible , 2012, Nature Communications.
[16] A. Roschger,et al. Spatial distribution of the trace elements zinc, strontium and lead in human bone tissue☆ , 2013, Bone.
[17] Peter Zioupos,et al. Dependence of mechanical properties on fibre angle in narwhal tusk, a highly oriented biological composite. , 1994, Journal of biomechanics.
[18] P. Hauschka,et al. Vestigial Tooth Anatomy and Tusk Nomenclature for Monodon Monoceros , 2012, Anatomical record.
[19] Simon Y Tang,et al. Matrix metalloproteinase–13 is required for osteocytic perilacunar remodeling and maintains bone fracture resistance , 2012, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[20] Peter Fratzl,et al. Biomimetic materials research: what can we really learn from nature's structural materials? , 2007, Journal of The Royal Society Interface.
[21] G. Marshall,et al. The cementum-dentin junction also contains glycosaminoglycans and collagen fibrils. , 2005, Journal of structural biology.
[22] G. Falkenberg,et al. Differential accumulation of lead and zinc in double-tidemarks of articular cartilage. , 2013, Osteoarthritis and cartilage.
[23] I. Gjertz. The narwhal, Monodon monoceros, in the norwegian high arctic , 1991 .
[24] Peter Zioupos,et al. The effect of porous microstructure on the anisotropy of bone-like tissue: a counterexample. , 2001, Journal of biomechanics.
[25] Asher A. Friesem,et al. Relations Between Shape, Materials Properties, and Function in Biological Materials Using Laser Speckle Interferometry: In situ Tooth Deformation , 2006 .
[26] W. Landis,et al. Molecular basis for elastic energy storage in mineralized tendon. , 2001, Biomacromolecules.
[27] M. Marko,et al. Mineralization of collagen may occur on fibril surfaces: evidence from conventional and high-voltage electron microscopy and three-dimensional imaging. , 1996, Journal of structural biology.
[28] John K. B. Ford,et al. Underwater acoustic signals of the narwhal (Monodon monoceros) , 1978 .
[29] M. Kingsley,et al. The Spiral in the Tusk of the Narwhal , 1988 .
[30] Mehdi Balooch,et al. Local properties of a functionally graded interphase between cementum and dentin. , 2004, Journal of biomedical materials research. Part A.
[31] Steve Weiner,et al. Structure and mechanical properties of the soft zone separating bulk dentin and enamel in crowns of human teeth: insight into tooth function. , 2006, Journal of structural biology.
[32] T. Boland,et al. Nanoindentation properties of compression-moulded ultra-high molecular weight polyethylene , 2003, Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine.
[33] Steve Weiner,et al. Phase shifting speckle interferometry for determination of strain and Young's modulus of mineralized biological materials: a study of tooth dentin compression in water. , 2005, Journal of biomedical optics.
[34] W. D. Lambert. The Feeding Habits of the Shovel-Tusked Gomphotheres: Evidence From Tusk Wear Patterns , 1992, Paleobiology.
[35] J. Currey,et al. The mechanical design of the tusk of the narwhal (Monodon nonoceros: Cetacea) , 1993 .
[36] S. Skatter,et al. The cause of the prevalent directions of the spiral grain patterns in conifers , 1998, Trees.
[37] S. Marshall,et al. The tooth attachment mechanism defined by structure, chemical composition and mechanical properties of collagen fibers in the periodontium. , 2007, Biomaterials.
[38] H. B. Silverman,et al. Aggressive tusk use by the narwhal (Monodon monoceros L.) , 1980, Nature.
[39] H. Gerson,et al. Head scarring on male narwhals (Monodon monoceros): evidence for aggressive tusk use , 1985 .
[40] R. C. Best. tusk of the narwhal (Monodon monoceros L.): interpretation of its function (Mammalia: Cetacea) , 1981 .
[41] R. Dietz,et al. Sensory ability in the narwhal tooth organ system , 2014, Anatomical record.