The effect of sterilization on the mechanical properties of intact rabbit humeri in three-point bending, four-point bending and torsion
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W. Walsh | A. Rives | W. Bruce | M. Pelletier | N. Russell
[1] Zong-ke Zhou,et al. Mechanical strength of cortical allografts with gamma radiation versus ethylene oxide sterilization. , 2011, Acta orthopaedica Belgica.
[2] P. Zysset,et al. Fabric-mechanical property relationships of trabecular bone allografts are altered by supercritical CO₂ treatment and gamma sterilization. , 2011, Bone.
[3] X. Banse,et al. Synergetic effect of freeze-drying and gamma irradiation on the mechanical properties of human cancellous bone , 2011, Cell and Tissue Banking.
[4] Patrick Leamy,et al. Inactivation of bacterial spores and viruses in biological material using supercritical carbon dioxide with sterilant. , 2009, Journal of biomedical materials research. Part B, Applied biomaterials.
[5] C. Wai,et al. Sterilization of Bacillus pumilus spores using supercritical fluid carbon dioxide containing various modifier solutions. , 2009, Journal of microbiological methods.
[6] K. An,et al. Mechanical strength of bone allografts subjected to chemical sterilization and other terminal processing methods. , 2008, Journal of biomechanics.
[7] M. Moore,et al. Effect of low dose and moderate dose gamma irradiation on the mechanical properties of bone and soft tissue allografts , 2008, Cell and Tissue Banking.
[8] K. Shakesheff,et al. Applications of supercritical CO2 in the fabrication of polymer systems for drug delivery and tissue engineering. , 2008, Advanced drug delivery reviews.
[9] K. Shakesheff,et al. Applications of supercritical CO 2 in the fabrication of polymer systems for drug delivery and tissue engineering ☆ , 2008 .
[10] M. J. Drews,et al. Sterilization of bacterial spores by using supercritical carbon dioxide and hydrogen peroxide. , 2007, Journal of biomedical materials research. Part B, Applied biomaterials.
[11] D. Morgan,et al. Sterilization of Allograft Bone: is 25 kGy the Gold Standard for Gamma Irradiation? , 2007, Cell and Tissue Banking.
[12] A. Bertucco,et al. A study on the inactivation of micro‐organisms and enzymes by high pressure CO2 , 2006, Biotechnology and bioengineering.
[13] Jian Zhang,et al. Sterilizing Bacillus pumilus spores using supercritical carbon dioxide. , 2006, Journal of microbiological methods.
[14] T. Christensen,et al. Effective terminal sterilization using supercritical carbon dioxide. , 2006, Journal of biotechnology.
[15] D. Morgan,et al. Sterilization of allograft bone: effects of gamma irradiation on allograft biology and biomechanics , 2006, Cell and Tissue Banking.
[16] K. Shakesheff,et al. Supercritical carbon dioxide: putting the fizz into biomaterials , 2005, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[17] O. Akkus,et al. Sterilization by gamma radiation impairs the tensile fatigue life of cortical bone by two orders of magnitude , 2005, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[18] O. Akkus,et al. Free radical scavenging alleviates the biomechanical impairment of gamma radiation sterilized bone tissue , 2005, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[19] D. Mitton,et al. Effect of a supercritical CO2 based treatment on mechanical properties of human cancellous bone , 2005, European Journal of Orthopaedic Surgery & Traumatology.
[20] S. Bogdansky,et al. Effective use of optimized, high-dose (50 kGy) gamma irradiation for pathogen inactivation of human bone allografts. , 2005, Biomaterials.
[21] Gerd Brunner,et al. Supercritical fluids: technology and application to food processing , 2005 .
[22] A. Blume,et al. The Influence of X-ray Radiation on the Mineral/Organic Matrix Interaction of Bone Tissue: An FT-IR Microscopic Investigation , 2005, The International journal of artificial organs.
[23] A. Dziedzic-Gocławska,et al. Irradiation as a Safety Procedure in Tissue Banking , 2005, Cell and Tissue Banking.
[24] M. Dunn,et al. Effects of Hydrogen Peroxide Cleaning Procedures on Bone Graft Osteoinductivity and Mechanical Properties , 2005, Cell and Tissue Banking.
[25] C. Rimnac,et al. The effect of gamma radiation sterilization on the fatigue crack propagation resistance of human cortical bone. , 2004, The Journal of bone and joint surgery. American volume.
[26] A. Meunier,et al. Effect of different sterilization processing methods on the mechanical properties of human cancellous bone allografts. , 2004, Biomaterials.
[27] R. Oakeshott,et al. Sterilization of HIV by gamma irradiation , 1994, International Orthopaedics.
[28] S. Spilimbergo,et al. Non‐thermal bacterial inactivation with dense CO2 , 2003, Biotechnology and bioengineering.
[29] S. Furukawa,et al. Inactivation of Geobacillus stearothermophilus Spores by High-Pressure Carbon Dioxide Treatment , 2003, Applied and Environmental Microbiology.
[30] Alberto Bertucco,et al. Inactivation of bacteria and spores by pulse electric field and high pressure CO2 at low temperature. , 2003, Biotechnology and bioengineering.
[31] Matthew J. Silva,et al. Separation of the Raman Spectral Signatures of Bioapatite and Collagen in Compact Mouse Bone Bleached with Hydrogen Peroxide , 2002 .
[32] C. Rimnac,et al. Fracture resistance of gamma radiation sterilized cortical bone allografts , 2001, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[33] D. Vashishth,et al. Influence of nonenzymatic glycation on biomechanical properties of cortical bone. , 2001, Bone.
[34] D. Davy,et al. The Effects of Processing and Low Dose Irradiation on Cortical Bone Grafts , 2000, Clinical orthopaedics and related research.
[35] X. Banse,et al. Effect of freeze‐drying and gamma irradiation on the mechanical properties of human cancellous bone , 2000, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[36] D. Wise,et al. Developing porosity of poly(propylene glycol-co-fumaric acid) bone graft substitutes and the effect on osteointegration: A preliminary histology study in rats , 2000, Journal of biomaterials science. Polymer edition.
[37] D. Davy. Biomechanical issues in bone transplantation. , 1999, The Orthopedic clinics of North America.
[38] R Langer,et al. Bacterial inactivation by using near- and supercritical carbon dioxide. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[39] P Zioupos,et al. The role of collagen in the declining mechanical properties of aging human cortical bone. , 1999, Journal of biomedical materials research.
[40] I. Stockley,et al. Changes in allograft bone irradiated at different temperatures. , 1999, The Journal of bone and joint surgery. British volume.
[41] H Barmada,et al. Surface Analysis of Bileaflet Prosthetic Heart Valve Leaflet Leading Edge , 1998, ASAIO journal.
[42] M. Joffret,et al. Viral Inactivation of Human Bone Tissue Using Supercritical Fluid Extraction , 1998, ASAIO journal.
[43] G. Reilly,et al. Effects of ionizing radiation on the mechanical properties of human bone , 1997, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[44] K. Schmit-Neuerburg,et al. Extracorporeal irradiation and incorporation of bone grafts. Autogeneic cortical grafts studied in rats. , 1996, Acta orthopaedica Scandinavica.
[45] D. Egle,et al. Biomechanical effects of gamma irradiation on fresh frozen allografts in vivo. , 1996, Orthopedics.
[46] I. Stockley,et al. BIOMECHANICAL PROPERTIES OF CORTICAL ALLOGRAFT BONE USING A NEW METHOD OF BONE STRENGTH MEASUREMENT , 1996 .
[47] I. Stockley,et al. Biochemical properties of cortical allograft bone using a new method of bone strength measurement. A comparison of fresh, fresh-frozen and irradiated bone. , 1996, The Journal of bone and joint surgery. British volume.
[48] D. Butler,et al. Dose‐dependent response of gamma irradiation on mechanical properties and related biochemical composition of goat bone‐patellar tendon‐bone allografts , 1995, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[49] P. Aspenberg,et al. Ethylene oxide sterilization impairs allograft incorporation in a conduction chamber. , 1995, Clinical orthopaedics and related research.
[50] C. Vangsness,et al. Gamma Irradiation: Effects on Biomechanical Properties of Human Bone-Patellar Tendon-Bone Allografts , 1995, The American journal of sports medicine.
[51] T. Yamamuro,et al. Effect of sterilization on bone morphogenetic protein , 1994, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[52] J. Chapman,et al. Effect of sterilization and storage treatments on screw pullout strength in human allograft bone. , 1994, Clinical orthopaedics and related research.
[53] J. Fages,et al. Use of supercritical CO2 for bone delipidation. , 1994, Biomaterials.
[54] H. Skinner,et al. Compressive mechanical properties of human cancellous bone after gamma irradiation. , 1992, The Journal of bone and joint surgery. American volume.
[55] A. Dziedzic-Gocławska,et al. Effect of radiation sterilization on the osteoinductive properties and the rate of remodeling of bone implants preserved by lyophilization and deep-freezing. , 1991, Clinical orthopaedics and related research.
[56] F. Noyes,et al. Effects of gamma irradiation on the initial mechanical and material properties of goat bone‐patellar tendon‐bone allografts , 1991, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[57] K. Heiple,et al. Contribution of collagen and mineral to the elastic-plastic properties of bone. , 1975, The Journal of bone and joint surgery. American volume.
[58] N. Triantafyllou,et al. The mechanical properties of the lyophylized and irradiated bone grafts. , 1975, Acta orthopaedica Belgica.
[59] Y. M. Subhedar. On sterilization. , 1952, Indian medical journal.