High Pressure Crystallized UHMWPEs
暂无分享,去创建一个
[1] O. Muratoglu,et al. Effect of cross-link density on the high pressure crystallization of UHMWPE. , 2009, Journal of biomedical materials research. Part B, Applied biomaterials.
[2] E. Oral,et al. Improved resistance to wear and fatigue fracture in high pressure crystallized vitamin E-containing ultra-high molecular weight polyethylene. , 2009, Biomaterials.
[3] A. Bistolfi,et al. Tensile and tribological properties of high-crystallinity radiation crosslinked UHMWPE. , 2008, Journal of biomedical materials research. Part B, Applied biomaterials.
[4] O. Muratoglu,et al. FREE RADICAL ELIMINATION IN IRRADIATED UHMWPE THROUGH CRYSTAL MOBILITY IN PHASE TRANSITION TO THE HEXAGONAL PHASE. , 2008, Polymer.
[5] S. Fuchs-Winkelmann,et al. Poor mid-term results of total hip arthroplasty with use of a Hylamer liner. , 2008, Acta orthopaedica Belgica.
[6] K. Takaoka,et al. Characteristics of Hylamer polyethylene particles isolated from peri-prosthetic tissues of failed cemented total hip arthroplasties. , 2008, Journal of biomedical materials research. Part B, Applied biomaterials.
[7] E. Gómez-Barrena,et al. Comparative fatigue behavior and toughness of remelted and annealed highly crosslinked polyethylenes. , 2007, Journal of biomedical materials research. Part B, Applied biomaterials.
[8] C. Fagnano,et al. Determination of Crystallinity and Crystal Structure of Hylamer™ Polyethylene after in vivo Wear , 2006, Journal of biomaterials applications.
[9] I. Trail,et al. The results of arthroplasty in osteoarthritis of the shoulder. , 2006, The Journal of bone and joint surgery. British volume.
[10] James L White,et al. Deformation-Induced Structural Changes in Crystalline Polyolefins , 2006 .
[11] L. Pruitt,et al. The combined effects of crosslinking and high crystallinity on the microstructural and mechanical properties of ultra high molecular weight polyethylene. , 2006, Biomaterials.
[12] O. Muratoglu,et al. Mechanisms of decrease in fatigue crack propagation resistance in irradiated and melted UHMWPE. , 2006, Biomaterials.
[13] S. Stea,et al. Behavior of Hylamer polyethylene in hip arthroplasty: comparison of two gamma sterilization techniques , 2006, International Orthopaedics.
[14] J. Besjakov,et al. Total hip replacement with a zirconium oxide ceramic femoral head: a randomised roentgen stereophotogrammetric study. , 2005, The Journal of bone and joint surgery. British volume.
[15] J. McElwain,et al. Hylamer wear rates and shelf life: a clinical correlation. , 2005, Acta orthopaedica Belgica.
[16] C. Engh,et al. Sterilization and polyethylene wear: clinical studies to support laboratory data. , 2004, The Journal of bone and joint surgery. American volume.
[17] Y. Hasegawa,et al. Early head penetration into cemented Hylamer Ogee socket. , 2003, The Journal of arthroplasty.
[18] L. Pruitt,et al. The effects of degree of crosslinking on the fatigue crack initiation and propagation resistance of orthopedic-grade polyethylene. , 2003, Journal of biomedical materials research. Part A.
[19] B. Wroblewski,et al. Wear of enhanced ultra-high molecular-weight polyethylene (Hylamer) in combination with a 22.225 mm diameter zirconia femoral head. , 2003, The Journal of bone and joint surgery. British volume.
[20] A. Gomoll,et al. J‐integral fracture toughness and tearing modulus measurement of radiation cross‐linked UHMWPE , 2002, Journal of Orthopaedic Research.
[21] G. Anderson,et al. Catastrophic failure of the Elite Plus total hip replacement, with a Hylamer acetabulum and Zirconia ceramic femoral head. , 2002, The Journal of bone and joint surgery. British volume.
[22] M. Wirth,et al. Observation on retrieved Hylamer glenoids in shoulder arthroplasty: problems associated with sterilization by gamma irradiation in air. , 2002, Journal of shoulder and elbow surgery.
[23] F. Shen,et al. Effect of Sterilization Method and Other Modifications on the Wear Resistance of Acetabular Cups Made of Ultra-High Molecular Weight Polyethylene: A Hip-Simulator Study* , 2000, The Journal of bone and joint surgery. American volume.
[24] S. Rastogi,et al. Polymorphism in polymers; its implications for polymer crystallisation , 2000 .
[25] V. Goldberg,et al. The relationship between the clinical performance and large deformation mechanical behavior of retrieved UHMWPE tibial inserts. , 2000, Biomaterials.
[26] A. Galeski,et al. Crystallization of polyethylene from melt with lowered chain entanglements , 2000 .
[27] J. Currier,et al. An analysis of hylamer and polyethylene bearings from retrieved acetabular components. , 1998, Orthopedics.
[28] C. Engh,et al. Examination of wear in Duraloc acetabular components: two- to five-year evaluation of Hylamer and Enduron liners. , 1998, The Journal of arthroplasty.
[29] Lemstra,et al. Chain Mobility in Polymer Systems: On the Borderline between Solid and Melt. 2. Crystal Size Influence in Phase Transition and Sintering of Ultrahigh Molecular Weight Polyethylene via the Mobile Hexagonal Phase. , 1998, Macromolecules.
[30] R. Poss,et al. Complications of Total Hip Arthroplasty Associated with the Use of an Acetabular Component with a Hylamer Liner* , 1997, The Journal of bone and joint surgery. American volume.
[31] M. Spector,et al. Early delamination of a Hylamer-M tibial insert. , 1996, The Journal of arthroplasty.
[32] C. Sledge,et al. Early failure of Hylamer acetabular inserts due to eccentric wear. , 1996, The Journal of arthroplasty.
[33] A H Burstein,et al. Ultra-high molecular weight polyethylene. The material and its use in total joint implants. , 1994, The Journal of bone and joint surgery. American volume.
[34] M. Yasuniwa,et al. High Pressure Crystallization of Ultra-High Molecular Weight Polyethylene , 1987 .
[35] D. Bartel,et al. The problem of surface damage in polyethylene total knee components. , 1986, Clinical orthopaedics and related research.
[36] J. Hoffman. Role of reptation in the rate of crystallization of polyethylene fractions from the melt , 1982 .
[37] W. Dollhopf,et al. A review of the experimental data from the high pressure phase in polyethylene , 1980 .
[38] R. C. Ferguson,et al. Effect of molecular weight on high pressure crystallization of linear polyethylene. II. Physical and chemical characterizations of crystallinity and morphology , 1978 .
[39] R. C. Ferguson,et al. Effect of molecular weight on high pressure crystallization of linear polyethylene. I. Kinetics and gross morphology , 1978 .
[40] D. Bassett. Chain-extended polyethylene in context: a review , 1976 .
[41] D. Bassett,et al. Morphological study of chain-extended growth in polyethylene: 3. Annealing of solution-grown lamellae , 1976 .
[42] D. Bassett,et al. Morphological study of chain-extended growth in polyethylene: 2. Annealed bulk polymer , 1976 .
[43] Y. Maeda,et al. Crystallization and melting of polyethylene under high pressure. I. Crystallization by slow cooling from the melt , 1974 .
[44] D. Bassett,et al. A high‐pressure phase of polyethylene and chain‐extended growth , 1974 .
[45] J. Lupton,et al. Physical properties of extended‐chain high‐density polyethylene , 1974 .
[46] D. Bassett,et al. On the phenomenology of chain-extended crystallization in polyethylene , 1974 .
[47] D. Bassett,et al. Oriented chain-extended polyethylene: I. formation and characterization , 1973 .
[48] T. Takemura,et al. Melting and Crystallization Process of Polyethylene under High Pressure , 1973 .
[49] T. Hashimoto,et al. Large polyethylene crystals formed under high pressure , 1973 .
[50] D. Bassett,et al. New High-pressure Phase in Chain-extended Crystallization of Polythene , 1972 .
[51] D. Bassett,et al. Chain-extended Crystallization of Polyethylene , 1972 .
[52] D. Bassett,et al. Crystallization of polyethylene at elevated pressures , 1971 .
[53] B. Wunderlich,et al. Extended‐chain crystals. III. Size distribution of polyethylene crystals grown under elevated pressure , 1969 .
[54] B. Wunderlich,et al. Extended‐chain crystals. IV. Melting under equilibrium conditions , 1969 .
[55] B. Wunderlich,et al. Extended-chain crystals. II. Crystallization of polyethylene under elevated pressure† , 1969 .
[56] B. Wunderlich,et al. Extended-chain crystals. VI. Annealing of polyethylene under elevated pressure , 1969 .
[57] B. Wunderlich,et al. Extended‐chain crystals. V. Thermal analysis and electron microscopy of the melting process in polyethylene , 1969 .
[58] B. Wunderlich,et al. Extended‐chain crystals. I. General crystallization conditions and review of pressure crystallization of polyethylene , 1969 .
[59] B. Wunderlich,et al. Morphology and growth of extended chain crystals of polyethylene , 1968 .
[60] D. Bassett,et al. Origin of Extended-chain Lamellae in Polyethylene , 1968, Nature.
[61] B. Wunderlich,et al. Polyethylene crystallized from the melt under elevated pressure , 1964 .
[62] B. Wunderlich,et al. Morphology of polyethylene crystallized from the melt under pressure , 1964 .
[63] B. Wunderlich. THE EFFECT OF PRESSURE ON THE CRYSTALLIZATION OF POLYETHYLENE FROM DILUTE SOLUTION , 1963 .
[64] A. Keller. A note on single crystals in polymers: Evidence for a folded chain configuration , 1957 .
[65] B. Wunderlich,et al. Specific heat of synthetic high polymers. VIII. Low pressure polyethylene , 1957 .
[66] T. Thornhill,et al. The Effect of Pressure-Annealing on the Oxidation Resistance of Irradiated UHMWPE , 2006 .
[67] J. Cohen. Catastrophic failure of the Elite Plus total hip replacement, with a Hylamer acetabulum and Zirconia ceramic femoral head. , 2004, The Journal of bone and joint surgery. British volume.
[68] L. Nallamshetty,et al. Early failure associated with the use of Hylamer-M spacers in three primary AMK total knee arthroplasties. , 2001, The Journal of arthroplasty.
[69] P. Campbell,et al. Factors contributing to rapid wear and osteolysis in hips with modular acetabular bearings made of hylamer. , 2000, The Journal of arthroplasty.
[70] A. Wang,et al. Lubrication and wear of ultra-high molecular weight polyethylene in total joint replacements , 1998 .
[71] G. Guerra,et al. Polymorphism in polymers , 1992 .
[72] J. Hoffman. Regime III crystallization in melt-crystallized polymers: The variable cluster model of chain folding , 1983 .
[73] D. Bassett,et al. On the plastic deformation of chain extended polyethylene , 1977 .
[74] K. Pae,et al. The Effects of Hydrostatic Pressure on the Compressibility, Crystallization, and Melting of Polymers , 1975 .
[75] J. Hoffman,et al. Melting Process and the Equilibrium Melting Temperature of Polychlorotrifluoroethylene , 1962, Journal of Research of the National Bureau of Standards. Section A, Physics and Chemistry.
[76] C. Bunn,et al. The crystal structure of long-chain normal paraffin hydrocarbons. The “shape” of the , 1939 .