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Original

Comparison of Nanoindentation Measurements Between Osteogenesis Imperfecta Type III and Type IV and Between Different Anatomic Locations (Femur/Tibia versus Iliac Crest)

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Pages 70-75 | Received 06 Jul 2005, Accepted 26 Oct 2006, Published online: 06 Aug 2009

REFERENCES

  • Shapiro F. Consequences of an Osteogenesis imperfecta diagnosis for survival and ambulation. J Pediatr Orthop 1985; 5: 456–462
  • Hanscom D.A., Winter R.B., Lutter L., et al. Osteogenesis imperfecta. Radiographic classification, natural history, and treatment of spinal deformities. J. Bone Joint Surg Am. 1992; 74: 598–516
  • Binder H., Conway A., Gerber L.H. Rehabilitation approaches to children with Osteogenesis imperfecta: a ten-year experience. Arch Phys Med Reh. 1993; 74: 386–390
  • Sillence D.O., Senn A., Danks D.M. Genetic heterogeneity in Osteogenesis imperfecta. J. Med. Genet. 1979; 16: 101–116
  • Sillence D.O. Osteogenesis imperfecta nosology and genetics. Ann. N.Y. Acad. Sci. 1988; 543: 1–15
  • Roughley P.J., Rauch F., Glorieux F.H. Osteogenesis imperfecta—clinical and molecular diversity. Eur. Cells Mater. 2003; 5: 41–47
  • Glorieux F.H., Travers R., Chabot G., Lanoue G. Bone histomorphometric analysis in Osteogenesis imperfecta. J. Bone Miner. Res. 1994; 9(suppl 1)S226
  • Glorieux F.H., Travers R., Roughley P., Chabot G., Lanoue G., Fassier F., Glorieux D., Hopkins E., Marini J. Type V Osteogenesis imperfecta (abstract F663). J. Bone Miner. Res. 1997; 12(suppl 1)S389
  • Sarathchandra P., Pope F.M., Kayser M.V., Ali S.Y. A light and electron microscopic study of Osteogenesis imperfecta bone samples with reference to collagen chemistry and clinical phenotype. J. Pathol. 2000; 192: 385–395
  • Cassella J.P., Barrie P.J., Garrington N., Ali S.Y. A Fourier transform infrared spectroscopic and solid-state NMR study of bone mineral in osteogenesis imperfecta. J. Bone Miner. Metab. 2000; 18: 291–296
  • Jones S.J., Glorieux F.H., Travers R., Boyde A. The microscopic structure of bone in normal children and patients with osteogenesis imperfecta: a survey using backscattered electron imaging. Calcif. Tiss. Int. 1999; 64: 8–17
  • Boyde A., Travers R., Glorieux F.H., Jones S.J. The mineralization density of iliac crest bone from children with Osteogenesis imperfecta. Calcif. Tiss. Int. 1998; 64: 185–190
  • Traub W., Arad T., Vetter U., Weiner S. Ultrastructural studies of bones from patients with osteogenesis imperfecta. Matrix Biol. 1994; 14: 337–345
  • Cassella J.P., Stamp T. C.B., Ali S.Y. A morphological and ultrastructural study of bone in osteogenesis imperfecta. Calcif. Tiss. Int. 1999; 58: 155–165
  • Camocho N.P., Hou L., Toledano T.R., Alexilg W., Brayton C.F., Raggio C.L., Root L.K., Boskey A. The material basis for reduced mechanical properties in oim mice bones. J. Bone Miner. Res. 1999; 14(2)264–272
  • Tesch W., Roschger P., Klaushofer K., Zizak I., Paris O., Fratzl P., Bernstorff S., Amenitsch H. Characterization of mineralization in bone diseases. Biomed. Sci. (Res. Highlights) 2001; 16: 16–18
  • Grabner R., Landis W.J., Roschger P., Rinnerthaler S., Peterlik H., Klaushofer K., Fratal P. Age- and genotype-dependence of bone material properties in the osteogenesis imperfecta murine model (oim). Bone 2001; 29: 453–457
  • Kozloff K.M., Carden A., Bergwitz C., Forlino A., Uveges T.E., Morris M.D., Marini J.C., Goldstein S.A. Brittle IV mouse model for osteogenesis imperfecta IV demonstrates postpubertal adaptations to improve whole bone strength. J. Bone Miner. Res. 2004; 19: 614–622
  • McCarthy E.A., Raggio C.L., Hossack M.D., Miller E.A., Jain S., Boskey A.L., Camacho N.P. Alendronate treatment for infants with osteogenesis imperfecta: demonstration of efficacy in a mouse model. Pediatr. Res. 2002; 52: 660–670
  • Mehta S.S., Antich P.P., Landis W.J. Bone material elasticity in a murine model of osteogenesis imperfecta. Conn. Tiss. Res. 1999; 40: 189–198
  • Jepsen K.J., Schaffler M.B., Kuhn J.L., Goulet R.W., Bonadio J., Goldstein S.A. Type I collagen mutation alters the strength and fatigue behavior of Mov13 cortical tissue. J. Biomech. 1997; 30: 1141–1147
  • Rho J.Y., Pharr G.M. Effects of drying on the mechanical properties of bovine femur measured by nanoindentation. J. Mat. Sci. Mater. Med. 1999; 10: 1–4
  • Hengsberger S., Kulik A., Zysset P. Nanoindentation discriminates the elastic properties of individual human bone lamellae under dry and physiological conditions. Bone 2002; 30: 178–184
  • Rho J.Y., Tsui T.Y., Pharr G.M.M. Elastic properties of human cortical and trabecular lamellar bone measured by nanoindentation. Biomaterials 1997; 18: 1325–1330
  • Rho J.Y., Roy M.E., Tsui T.Y., Pharr G.M. Elastic properties of microstructural components of human bone tissue as measured by nanoindentation. J. Biomed. Mater. Res. 1999; 45: 48–54
  • Zysset P.K., Guo X.E., Hoffler C.E., Moore K.E., Goldstein S.A. Elastic modulus and hardness of cortical and trabecular bone lamellae measured by nanoindentation in the human femur. J. Biomech. 1999; 32: 1005–1012
  • Hoffler C.E., Moore K.E., Kozloff K., Zysset P.K., Brown M.B., Goldstein S.A. Heterogeneity of bone lamellar-level elastic moduli. Bone 2000; 28: 603–609
  • Zysset P.K., Guo X.E., Hoffler C.E., Moore K.E., Goldstein S.A. Mechanical properties of human trabecular bone lamellae quantified by nanoindentation. Tech. Heal. Care 1998; 6(5–6)429–432
  • Fan Z., Swadener J.G., Rho J.Y., Roy M.E., Pharr G.M. Anisotropic properties of human tibial cortical bone measured by nanoindentation. J. Ortho. Res. 2002; 20: 806–810
  • Jamsa T., Rho J.Y., Fan Z., Mackay C.A., Marks S.C., Tuukkanen J. Mechanical properties in long bones of rat osteopetrotic mutations. J. Biomech. 2002; 35: 161–165
  • Fan Z., Rho J.Y. The effects of viscoelasticity and time-dependent plasticity to nanoindentation measurement of a human cortical bone. J. Biomed. Mater. Res. 2003; 67A(1)208–214
  • Chen Q., Rho J.Y., Fan Z., Laulederkind S., Raghow R. Congenital lack of COX_2 affects mechanical and geometric properties of bone in mice. Calcif. Tiss. Int. 2003; 73: 387–392
  • Fan Z., Rho J.Y., Swadener J.G., Pharr G.M. Three dimensional finite element analyses of the effects of anisotropy on bone mechanical properties measured by nanoindentation. J. Mater. Res. 2004; 19: 114–123
  • Akhter M.P., Fan Z., Rho J.Y. Bone intrinsic material properties in three inbred mouse strains. Calcif. Tiss. Int. 2004; 75(5)416–420
  • Silva M.J., Brodt M.D., Fan Z., Rho J.Y. Nanoindentation and whole-bone bending estimates of material properties in bones from the senescence accelerated mouse SAMP6. J. Biomech. 2004; 37(11)1639–1646
  • Xu J., Rho J.Y., Mishra S., Fan Z. AFM and nanoindentation characterization of human lamellar bone prepared by microtome sectioning and mechanical polishing technique. J. Biomed. Mater. Res. 2003; 67: 719–726
  • Bolshakov A., Pharr G.M. Influences of pileup on the measurement of mechanical properties by load and depth sensing indentation techniques. J. Mater. Res. 1998; 13: 1049–1058
  • Oliver W.C., Pharr G.M. An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments. J. Mater. Res. 1992; 7: 1564–1583
  • Lawn B.R., Evans A.G., Marshall D.B. Elastic/plastic indentation damage in ceramics: the median/radial crack system. J. Am. Ceram. Soc. 1980; 63: 574–591
  • Anstis G.R., Chantikul P., Lawn B.R., Marshall D.B. A critical evaluation of indentation techniques for measuring fracture toughness: I. direct crack measurement. J. Am. Ceram. Soc. 1981; 64: 533–538

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