메뉴 건너뛰기




Volumn 23, Issue 2, 2004, Pages 145-155

Thermal and mechanical properties of hydroxyapatite impregnated acrylic bone cements

Author keywords

Biocompatible; Biomechanics; Bone cement; Hydroxyapatite; PMMA

Indexed keywords

ADDITIVES; BIOCOMPATIBILITY; BIOMECHANICS; COMPRESSIVE STRENGTH; HYDROXYAPATITE; IMPREGNATION; MOLECULAR WEIGHT; POLYMETHYL METHACRYLATES; STRENGTH OF MATERIALS; VISCOSITY;

EID: 0242405868     PISSN: 01429418     EISSN: None     Source Type: Journal    
DOI: 10.1016/S0142-9418(03)00073-4     Document Type: Article
Times cited : (110)

References (39)
  • 1
    • 72849167386 scopus 로고
    • Anchorage of the femoral head prosthesis to the shaft of the femur
    • Charnley J. Anchorage of the femoral head prosthesis to the shaft of the femur. J. Bone Jt. Surg. 43B:1960;28-30.
    • (1960) J. Bone Jt. Surg. , vol.43 B , pp. 28-30
    • Charnley, J.1
  • 2
    • 0030400634 scopus 로고    scopus 로고
    • Fracture toughness of surface-treated carbon fiber reinforced composite bone cement
    • Toronto, Canada
    • Friis E.A., Cooke F.W., Yasuda H.K. Fracture toughness of surface-treated carbon fiber reinforced composite bone cement. Fifth World Biomater. Congr., Toronto, Canada :1996;913.
    • (1996) Fifth World Biomater. Congr. , pp. 913
    • Friis, E.A.1    Cooke, F.W.2    Yasuda, H.K.3
  • 3
    • 0019991224 scopus 로고
    • Stress relaxation and creep behaviour of normal and carbon fibre reinforced acrylic bone cements
    • Pal S., Saha S. Stress relaxation and creep behaviour of normal and carbon fibre reinforced acrylic bone cements. Biomaterials. 3:1982;93-95.
    • (1982) Biomaterials , vol.3 , pp. 93-95
    • Pal, S.1    Saha, S.2
  • 5
    • 0022909783 scopus 로고
    • A comparison of mechanical properties of discontinuous Kevlar 29 fibre reinforced bone and dental cements
    • Pourdeyhimi B., Wagner H.D., Schwartz P. A comparison of mechanical properties of discontinuous Kevlar 29 fibre reinforced bone and dental cements. J. Mater. Sci. 21:1986;4468-4474.
    • (1986) J. Mater. Sci. , vol.21 , pp. 4468-4474
    • Pourdeyhimi, B.1    Wagner, H.D.2    Schwartz, P.3
  • 6
    • 0013643826 scopus 로고
    • Mechanical properties of aramid fiber reinforced acrylic bone cement
    • Wright T.M., Trent P.S. Mechanical properties of aramid fiber reinforced acrylic bone cement. J. Mater. Sci. 14:1979;503-505.
    • (1979) J. Mater. Sci. , vol.14 , pp. 503-505
    • Wright, T.M.1    Trent, P.S.2
  • 7
    • 0021131578 scopus 로고
    • Improvement of mechanical properties of acrylic bone cement by fiber reinforcement
    • Saha S., Pal S. Improvement of mechanical properties of acrylic bone cement by fiber reinforcement. J. Biomech. 17:1984;467-478.
    • (1984) J. Biomech. , vol.17 , pp. 467-478
    • Saha, S.1    Pal, S.2
  • 8
    • 0022713455 scopus 로고
    • The material properties of bone-particle impregnated PMMA
    • Park H.C., Liu Y.K., Lakes R.S. The material properties of bone-particle impregnated PMMA. J. Biomech. Eng. 108:1986;141-148.
    • (1986) J. Biomech. Eng. , vol.108 , pp. 141-148
    • Park, H.C.1    Liu, Y.K.2    Lakes, R.S.3
  • 10
    • 0006779924 scopus 로고
    • Toughening of PMMA bone cement by addition of flexible fibers with varying interface strengths
    • San Francisco
    • Friis E.A., Cooke F.W., McQueen D.A. Toughening of PMMA bone cement by addition of flexible fibers with varying interface strengths. 21st Annu. Mtg. Soc. Biomater., San Francisco :1995;95.
    • (1995) 21st Annu. Mtg. Soc. Biomater. , pp. 95
    • Friis, E.A.1    Cooke, F.W.2    Mcqueen, D.A.3
  • 11
    • 0024599194 scopus 로고
    • Use of high performance polyethylene fibres as a reinforcing phase in poly (methylmethacrylate) bone cement
    • Wagner H.D., Cohn D. Use of high performance polyethylene fibres as a reinforcing phase in poly (methylmethacrylate) bone cement. Biomaterials. 10:1989;139-141.
    • (1989) Biomaterials , vol.10 , pp. 139-141
    • Wagner, H.D.1    Cohn, D.2
  • 12
    • 0026980268 scopus 로고
    • The fracture toughness of titanium-fiber-reinforced bone cement
    • Topoleski L.D.T., Ducheyne P., Cuckler J.M. The fracture toughness of titanium-fiber-reinforced bone cement. J. Biomed. Mater. Res. 26:1992;1595-1617.
    • (1992) J. Biomed. Mater. Res. , vol.26 , pp. 1595-1617
    • Topoleski, L.D.T.1    Ducheyne, P.2    Cuckler, J.M.3
  • 13
    • 0024535023 scopus 로고
    • Elastic and ultimate properties of acrylic bone cement reinforced with ultra-high-molecular-weight polyethylene fibers
    • Pourdeyhimi B., Wagner H.D. Elastic and ultimate properties of acrylic bone cement reinforced with ultra-high-molecular-weight polyethylene fibers. J. Biomed. Mater. Res. 23:1989;63-80.
    • (1989) J. Biomed. Mater. Res. , vol.23 , pp. 63-80
    • Pourdeyhimi, B.1    Wagner, H.D.2
  • 14
    • 0013510584 scopus 로고
    • Self-reinforced PMMA composites: Strength, fatigue and fracture toughness evaluation
    • San Francisco
    • Gilbert J.L., Ney D.S., Lautenschlager E.P. Self-reinforced PMMA composites: strength, fatigue and fracture toughness evaluation. 20th Annu. Mtg. Soc. Biomater., San Francisco :1994;141.
    • (1994) 20th Annu. Mtg. Soc. Biomater. , pp. 141
    • Gilbert, J.L.1    Ney, D.S.2    Lautenschlager, E.P.3
  • 17
    • 0033106223 scopus 로고    scopus 로고
    • Characterization of acrylic bone cement using dynamic mechanical analysis
    • Yang J.M., Li H.M., Yang M.C., Shih C.H. Characterization of acrylic bone cement using dynamic mechanical analysis. J. Biomed. Mater. Res. 48:(1):1999;52-60.
    • (1999) J. Biomed. Mater. Res. , vol.48 , Issue.1 , pp. 52-60
    • Yang, J.M.1    Li, H.M.2    Yang, M.C.3    Shih, C.H.4
  • 18
    • 0021073433 scopus 로고
    • Composite acrylic cement with added hydroxyapatite: A study of the polymerization temperature
    • Giunti A., Moroni A., Olmi R., Vicenzi G. Composite acrylic cement with added hydroxyapatite: a study of the polymerization temperature. Ital. J. Orthop. Traumatol. 9:(3):1983;369-375.
    • (1983) Ital. J. Orthop. Traumatol. , vol.9 , Issue.3 , pp. 369-375
    • Giunti, A.1    Moroni, A.2    Olmi, R.3    Vicenzi, G.4
  • 19
    • 0021996538 scopus 로고
    • Setting properties of bone cement with added synthetic hydroxyapatite
    • Castaldini A., Cavallini A. Setting properties of bone cement with added synthetic hydroxyapatite. Biomaterials. 6:(1):1985;55-60.
    • (1985) Biomaterials , vol.6 , Issue.1 , pp. 55-60
    • Castaldini, A.1    Cavallini, A.2
  • 20
    • 0026899036 scopus 로고
    • Adhesive bone cement containing hydroxyapatite particle as bone compatible filler
    • Ishihara K., Arai H., Nakabayashi N., Morita S., Furuya K. Adhesive bone cement containing hydroxyapatite particle as bone compatible filler. J. Biomed. Mater. Res. 26:(7):1992;937-945.
    • (1992) J. Biomed. Mater. Res. , vol.26 , Issue.7 , pp. 937-945
    • Ishihara, K.1    Arai, H.2    Nakabayashi, N.3    Morita, S.4    Furuya, K.5
  • 21
    • 0027614363 scopus 로고
    • Thermodynamical aspects of the polymerization reaction of PPMA cement mixed with phosphatic mineral phases
    • Mongiorgi R., Valdre G., Giardino R., Maggi G., Prati C., Bertocchi G. Thermodynamical aspects of the polymerization reaction of PPMA cement mixed with phosphatic mineral phases. Boll. Soc. Ital. Biol. Sper. 69:(6):1993;365-372.
    • (1993) Boll. Soc. Ital. Biol. Sper. , vol.69 , Issue.6 , pp. 365-372
    • Mongiorgi, R.1    Valdre, G.2    Giardino, R.3    Maggi, G.4    Prati, C.5    Bertocchi, G.6
  • 22
    • 0032171092 scopus 로고    scopus 로고
    • Performance of adhesive bone cement containing hydroxyapatite particles
    • Morita S., Furuya K., Ishihara K., Nakabayashi N. Performance of adhesive bone cement containing hydroxyapatite particles. Biomaterials. 19:(17):1998;1601-1606.
    • (1998) Biomaterials , vol.19 , Issue.17 , pp. 1601-1606
    • Morita, S.1    Furuya, K.2    Ishihara, K.3    Nakabayashi, N.4
  • 24
    • 0034980270 scopus 로고    scopus 로고
    • Initial interaction of osteoblasts with the surface of hydroxyapatite-poly(methylmethacrylate) cement
    • Dalby M.J., Di Silvio L., Harper E.J., Bonfield W. Initial interaction of osteoblasts with the surface of hydroxyapatite-poly(methylmethacrylate) cement. Biomaterials. 22:(13):2001;1739-1747.
    • (2001) Biomaterials , vol.22 , Issue.13 , pp. 1739-1747
    • Dalby, M.J.1    Di Silvio, L.2    Harper, E.J.3    Bonfield, W.4
  • 25
    • 0036131570 scopus 로고    scopus 로고
    • Increasing hydroxyapatite incorporation into poly(methylmethacrylate) cement increases osteoblast adhesion and response
    • Dalby M.J., Di S.L., Harper E.J., Bonfield W. Increasing hydroxyapatite incorporation into poly(methylmethacrylate) cement increases osteoblast adhesion and response. Biomaterials. 23:(2):2002;569-576.
    • (2002) Biomaterials , vol.23 , Issue.2 , pp. 569-576
    • Dalby, M.J.1    Di, S.L.2    Harper, E.J.3    Bonfield, W.4
  • 26
    • 0036240244 scopus 로고    scopus 로고
    • Osteogenic response of hydroxyapatite cement implanted into the femur of rats with experimentally induced osteoporosis
    • Saito T., Kin Y., Koshino T. Osteogenic response of hydroxyapatite cement implanted into the femur of rats with experimentally induced osteoporosis. Biomaterials. 23:2002;2711-2716.
    • (2002) Biomaterials , vol.23 , pp. 2711-2716
    • Saito, T.1    Kin, Y.2    Koshino, T.3
  • 27
    • 0036238556 scopus 로고    scopus 로고
    • Subchondral defects in caprine femora augmented with in situ setting hydroxyapatite cement, polymethylmethacrylate, or autogenous bone graft: Biomechanical and histomorphological analysis after two-years
    • Welch R.D., Berry B.H., Crawford K., Zhang H., Zobitz M., Bronson D., Krishnan S. Subchondral defects in caprine femora augmented with in situ setting hydroxyapatite cement, polymethylmethacrylate, or autogenous bone graft: biomechanical and histomorphological analysis after two-years. J. Orthop. Res. 20:(3):2002;464-472.
    • (2002) J. Orthop. Res. , vol.20 , Issue.3 , pp. 464-472
    • Welch, R.D.1    Berry, B.H.2    Crawford, K.3    Zhang, H.4    Zobitz, M.5    Bronson, D.6    Krishnan, S.7
  • 28
    • 0042675140 scopus 로고    scopus 로고
    • Mechanical and thermal properties of hydroxyapatite-impregnated bone cement
    • Şerbetçi K., Korkusuz F., Hasirci N. Mechanical and thermal properties of hydroxyapatite-impregnated bone cement. Turkish J. Med. Sci. 30:2000;543-549.
    • (2000) Turkish J. Med. Sci. , vol.30 , pp. 543-549
    • Şerbetçi, K.1    Korkusuz, F.2    Hasirci, N.3
  • 29
    • 0035885546 scopus 로고    scopus 로고
    • Ultrasonic characterization of the curing process of hydroxyapatite-modified bone cement
    • Viano A.M., Auwarter J.A., Rho J.Y., Hoffmeister B.K. Ultrasonic characterization of the curing process of hydroxyapatite-modified bone cement. J. Biomed. Mater. Res. 56:(4):2001;593-599.
    • (2001) J. Biomed. Mater. Res. , vol.56 , Issue.4 , pp. 593-599
    • Viano, A.M.1    Auwarter, J.A.2    Rho, J.Y.3    Hoffmeister, B.K.4
  • 30
    • 0030630325 scopus 로고    scopus 로고
    • Hydroxyapatite impregnated bone cement: In vitro and in vivo studies
    • Kwon S.Y., Kim Y.S., Woo Y.K., Kim S.S., Park J.B. Hydroxyapatite impregnated bone cement: in vitro and in vivo studies. Biomed. Mater. Eng. 7:(2):1997;129-140.
    • (1997) Biomed. Mater. Eng. , vol.7 , Issue.2 , pp. 129-140
    • Kwon, S.Y.1    Kim, Y.S.2    Woo, Y.K.3    Kim, S.S.4    Park, J.B.5
  • 31
    • 0029150552 scopus 로고
    • Water absorption characteristics of modified hydroxyapatite bone cements
    • Deb S., Braden M., Bonfield W. Water absorption characteristics of modified hydroxyapatite bone cements. Biomaterials. 16:(14):1995;1095-1100.
    • (1995) Biomaterials , vol.16 , Issue.14 , pp. 1095-1100
    • Deb, S.1    Braden, M.2    Bonfield, W.3
  • 34
    • 0002960269 scopus 로고
    • Regulation and requirements
    • B.T. Bennett, M.J. Brown, & J.C. Schofield. Beltsville, MD: National Agricultural Library
    • Bennett B.T. Regulation and requirements. Bennett B.T., Brown M.J., Schofield J.C. Essentials for animal research: a primer for research personnel. second ed. 1994;1-9 National Agricultural Library, Beltsville, MD.
    • (1994) Essentials for Animal Research: A Primer for Research Personnel Second Ed. , pp. 1-9
    • Bennett, B.T.1
  • 36
    • 0028500923 scopus 로고
    • Polymerization kinetics, glass transition temperature and creep of acrylic bone cements
    • Migliaresi C., Fambri L., Kolarik J. Polymerization kinetics, glass transition temperature and creep of acrylic bone cements. Biomaterials. 15:1994;875-881.
    • (1994) Biomaterials , vol.15 , pp. 875-881
    • Migliaresi, C.1    Fambri, L.2    Kolarik, J.3
  • 37
    • 0031172484 scopus 로고    scopus 로고
    • Properties of acrylic bone cement: State of the art review
    • Lewis G. Properties of acrylic bone cement: state of the art review. J. Biomed. Mater. Res. 38:(2):1997;155-182.
    • (1997) J. Biomed. Mater. Res. , vol.38 , Issue.2 , pp. 155-182
    • Lewis, G.1
  • 38
    • 0018685152 scopus 로고
    • Stress analysis: Effects of geometry in bone-implant systems
    • Bartel D.L. Stress analysis: effects of geometry in bone-implant systems. Bull. Hosp. Jt. Disord. 40:1979;90-103.
    • (1979) Bull. Hosp. Jt. Disord. , vol.40 , pp. 90-103
    • Bartel, D.L.1
  • 39
    • 0036041275 scopus 로고    scopus 로고
    • In vivo testing of hydroxyapatite impregnated acrylic bone cement
    • Serbetci K., Orhun S., Korkusuz F., Hasirci N. In vivo testing of hydroxyapatite impregnated acrylic bone cement. Technol. Health Care. 10:2002;285-288.
    • (2002) Technol. Health Care , vol.10 , pp. 285-288
    • Serbetci, K.1    Orhun, S.2    Korkusuz, F.3    Hasirci, N.4


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.