Clin Osteol 2011; 16(4): 132-136

Assessment of bone biomechanical properties in experimental researchOriginal contributions

P. Živný, K. Švejkovská, I. Gradošová, H. Živná, V. Palička

Keywords: fraktury, biomechanické vlastnosti, kost, skeletálnífragilita v SUMMARY

Published: December 11, 2011  Show citation

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Živný P, Švejkovská K, Gradošová I, Živná H, Palička V. Assessment of bone biomechanical properties in experimental research. Osteologický bulletin. 2011;16(4):132-136.
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References

  1. Rice JC, Covin SC, Bowman JA On the dependence of the elasticity and strength of cancellous bone on apparent density. J Biomechanics 1988;21:155-168. Go to original source...
  2. Turner CH, Burr DB. Basic biomechanical measurements of bone: a tutorial. Bone 1993;14:595-608. Go to original source...
  3. Hanus D, Censky T, Anderle P, Ruzicka P et al. Experimental Research of 3D Flow Fields within Curved Channels. In CTU Reports Proceedings of Workshop 2002, 11-13 February 2002 Prague; Volume B. Prague: Czech Technical Univer­ sity in Prague, pp.676-677. ISBN 80-01-02511-X.
  4. Keaveny TM, Morgan EF, Niebur GL, Yeh OC. Biomechanics of trabecular bone. Annu Rev Biomed Eng 2001;3:307-333. Go to original source...
  5. Currey JD. What determines the bending strengtht of compact bone? J Exp Biol 1999; 202: 2495-2503. Go to original source...
  6. Bouxsein M. Determinants of skeletal fragility. Best Pract Res Clin Rheumatol 2005;19:897-911. Go to original source...
  7. Bouxsein M. Biomechanics of age-related fractures. In: Marcus R, Feldman D, Nelson D, Rosen C. (eds.) Osteoporosis. Third Edition, San Diego, CA: Elsevier Academic Press 2007;601-616.
  8. van den Kroonenberg AJ, Hayes WC, McMahon TA Hip impact velocities and body configurations for voluntary falls from standing height. J Biomech 1996; 29:807-811. Go to original source...
  9. Cooper C, Atkinson E, O'Fallon W, Melton L. Incidence of clinically diagnosed vertebral fractures: a population-based study in Rochester, Minnesota, 1985-1989. J Bone Miner Res 1992;7:221-227. Go to original source...
  10. Adams MA, Dolan, P. Spine biomechanics. J Biomech 2005;38:1972-1983. Go to original source...
  11. Comelekoglu U, Bagis S, Yalin S, Ogenler O et al. Biomechanical evaluation in osteoporosis: ovariectomized rat model. Clin Rheumatol 2007;26:380-384. Go to original source...
  12. Wang X, Bank RA, TeKoppele JM, Agrawal CM. The role of collagen in deter­ mining bone mechanical properties. J Orthop Res 2001;19:1021-1026. Go to original source...
  13. Lepola VT, Hannuniemi R, Kippo K, Lauriään L et al. Long-term effects of clodronate on growing rat bone. Bone 1996;18:191-196. Go to original source...
  14. Comelekoglu U, Mutlu H, Yalin S, Bagis S et al. Determining the biomechanical quality of normal and osteoporotic bones in rat femora through biomechanical test and finite element analysis. Acta Orthop Traumatol Turc 2007;41:53-57.
  15. Moro-Alvarez MJ, Díaz Curiel M, de la Piedra C, Mariňoso ML et al. Bone dise­ ase induced by phenytoin therapy: clinical and experimental study. Eur Neurol 2009;62:219-230. Go to original source...
  16. Lind PM, Larsson S, Johansson S, Melhus H et al. Bone tissue composition, di­ mensions and strength in female rats given an increased dietary level of vitamin A or exposed to 3,3 %, 4,4 %, 5-pentachlorobiphenyl (PCB126) alone or in combi­ nation with vitamin C. Toxicology 2000;151:11-23. Go to original source...
  17. Herlin M, Kalantari F, Stern N, Sand S et al. Quantitative characterization of chan­ ges in bone geometry, mineral density and biomechanical properties in two rat strains with different Ah-receptor structures after long-term exposure to 2,3,7,8tetrachlorodibenzo-p-dioxin. Toxicology 2010;273:1-11. Go to original source...
  18. Iwamoto J, Seki A, Takeda T, Sato Y et al. Comparative therapeutic effects of alendronate and alfacalcidol on cancellous and cortical bone mass and mechani­ cal properties in ovariectomized osteopenic rats. J Nutr Sci Vitaminol 2006;52:1-8. Go to original source...
  19. Leppänen OV, Sievänen H, Järvinen TL. Biomechanical testing in experimental bone interventions-may the power be with you. J Biomech 2008;4:1623-1631. Go to original source...
  20. Sturmer EK, Seidlová-Wuttke D, Sehmisch S, Rack T et al. Standardized bending and breaking test for the normal and osteoporotic metaphyseal tibias ofthe rat: ef­ fect of estradiol, testosterone, and raloxifene. J Bone Miner Res 2006;21:89-96. Go to original source...
  21. Jämsä T, Jalovaara P, Peng Z, Väänänen HK et al. Comparison of three-point ben­ ding test and peripheral quantitative computed tomography analysis in the evalua­ tion of the strength of mouse femur and tibia. Bone 1998;23:155-161. Go to original source...
  22. Peng Z, Tuukkanen J, Zhang H, Jämsä T et al. The mechanical strength of bone in different rat models of experimental osteoporosis. Bone 1994;15:523-532. Go to original source...
  23. McCann RM, Colleary G, Geddis C, Clarke SA et al. Effect of osteoporosis on bo­ ne mineral density and fracture repair in a rat femoral fracture model. J Orthop Res 2008;26:384-393. Go to original source...
  24. Leppänen O, Sievänen H, Jokihaara J, Pjamäki I et al. Three-point bending of rat femur in the mediolateral direction: introduction and validation of a novel biome­ chanical testing protocol. J Bone Miner Res 2006;21:1231-1237. Go to original source...
  25. Bagi CM, Hanson N, Andresen C, Pero R et al. The use of micro-CT to evaluate cortical bone geometry and strength in nude rats: Correlation with mechanical tes­ ting, pQCT and DXA Bone 2006;38:136-144. Go to original source...
  26. Järvinen TL, Sieväneh H, Kannus P, Järvinen M. Dual-Energy X-Ray Absorptiometry in predicting mechanical characteristics of rat femur. Bone 1998; 22:551-558. Go to original source...
  27. Leppänen OV, Sievänen H, Jokihaara J, Pajamäki I et al. The effects of loading and estrogen on rat bone growth. J Appl Physiol 2010;108:1737-1744. Go to original source...
  28. Jiang GZ, Matsumoto H, Hori M, Gunji A et al. Correlation among geometric, densitometric, and mechanical properties in mandible and femur of osteoporotic rats. J Bone Miner Metab 2008;26:130-137. Go to original source...
  29. Brzóska MM, Majewska K, Moniuszko- Jakoniuk J. Mineral status and mechani­ cal properties of lumbar spine of female rats chronically exposed to various levels of cadmium. Bone 2004;34:517- 526. Go to original source...
  30. Brzóska MM, Galažyn-Sidorczuk M, Rogalska J, Roszczenko A et al. Beneficial effect of zinc supplementation on biomechanical properties of femoral distal end and femoral diaphysis of male rats chronically exposed to cadmium. Chem Biol Interact 2008;171:312-324. Go to original source...
  31. Nazarian A, Entezari V, Vartanians V, Muller R et al. An improved method to as­ sess torsional properties of rodent long bones. J Biomech 2009;42:1720-1725. Go to original source...
  32. Stromberg L, Dalén N. Experimental measurement of maximum torque capacity of long bones. Acta Orthop Scand 1976;47:257-263. Go to original source...
  33. Mattila P, Knuuttila M, Kovanen V, Svanberg M. Improved bone biomechanical properties in rats after oral xylitol administration. Calcif Tissue Int 1999;64: 340-344. Go to original source...
  34. Lepola VT, Väänänen HK, Jalovaara P. The effect of immobilization on the tor­ sional strength of the rat tibia. Clin Orthop Relat Res 1993;297:55-61. Go to original source...
  35. Brzóska MM, Majewska K, Moniuszko-Jakoniuk J. Mechanical properties of fe­ moral diaphysis and femoral neck of female rats chronically exposed to various le­ vels of cadmium. Calcif Tissue Int 2005;76:287-298. Go to original source...




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