-
1
-
-
0023984872
-
Bone ingrowth into porous calcium phosphate ceramics: influence of pulsing electromagnetic field
-
Shimizu T., Zerwekh J.E., Videman T., Gill K., Mooney V., Holmes R.E., et al. Bone ingrowth into porous calcium phosphate ceramics: influence of pulsing electromagnetic field. J. Orthopaedic Res. 6 2 (1988) 248-258
-
(1988)
J. Orthopaedic Res.
, vol.6
, Issue.2
, pp. 248-258
-
-
Shimizu, T.1
Zerwekh, J.E.2
Videman, T.3
Gill, K.4
Mooney, V.5
Holmes, R.E.6
-
2
-
-
0028533582
-
Effect of bioactive ceramic composition and structure on in vitro behavior. III. Porous versus dense ceramics
-
Radin S.R., and Ducheyne P. Effect of bioactive ceramic composition and structure on in vitro behavior. III. Porous versus dense ceramics. J. Biomed. Mater. Res. 11 28 (1994) 1303-1309
-
(1994)
J. Biomed. Mater. Res.
, vol.11
, Issue.28
, pp. 1303-1309
-
-
Radin, S.R.1
Ducheyne, P.2
-
3
-
-
1942486813
-
Biphasic calcium phosphate nanocomposite porous scaffolds for load-bearing bone tissue engineering
-
Ramay H.R.R., and Zhang M. Biphasic calcium phosphate nanocomposite porous scaffolds for load-bearing bone tissue engineering. Biomaterials 25 (2004) 5171-5180
-
(2004)
Biomaterials
, vol.25
, pp. 5171-5180
-
-
Ramay, H.R.R.1
Zhang, M.2
-
5
-
-
28244434452
-
Fabrication and characterization of porous hydroxyapatite/β-tricalcium phosphate ceramics by microwave sintering
-
Wang X., Fan H., Xiao Y., and Zhang X. Fabrication and characterization of porous hydroxyapatite/β-tricalcium phosphate ceramics by microwave sintering. Mater. Lett. 60 (2006) 455-458
-
(2006)
Mater. Lett.
, vol.60
, pp. 455-458
-
-
Wang, X.1
Fan, H.2
Xiao, Y.3
Zhang, X.4
-
6
-
-
29944446422
-
Fast low-temperature consolidation of bulk nanometric ceramic materials
-
Anselmi-Tamburini U., Garay J.E., and Munir Z.A. Fast low-temperature consolidation of bulk nanometric ceramic materials. Scripta Mater. 54 (2006) 823-828
-
(2006)
Scripta Mater.
, vol.54
, pp. 823-828
-
-
Anselmi-Tamburini, U.1
Garay, J.E.2
Munir, Z.A.3
-
8
-
-
23144462161
-
Nanostructured ceramic oxides with a slow crack growth resistance close to covalent materials
-
Chevalier J., Deville S., Fantozzi G., Bartolome J.F., Pecharroman C., Moya J.S., et al. Nanostructured ceramic oxides with a slow crack growth resistance close to covalent materials. Nano Lett. 5 (2005) 1297-1301
-
(2005)
Nano Lett.
, vol.5
, pp. 1297-1301
-
-
Chevalier, J.1
Deville, S.2
Fantozzi, G.3
Bartolome, J.F.4
Pecharroman, C.5
Moya, J.S.6
-
9
-
-
30444450299
-
Enhanced ionic conductivity in nanostructured, heavily doped ceria ceramics
-
Bellino M.G., Lamas D.G., and Walsoe de Reca N.E. Enhanced ionic conductivity in nanostructured, heavily doped ceria ceramics. Adv. Funct. Mater. 16 (2006) 107-113
-
(2006)
Adv. Funct. Mater.
, vol.16
, pp. 107-113
-
-
Bellino, M.G.1
Lamas, D.G.2
Walsoe de Reca, N.E.3
-
10
-
-
1242345127
-
Structural characterization of room-temperature synthesized nano-sized β-tricalcium phosphate
-
Bow J.S., Liou S.C., and Chen S.Y. Structural characterization of room-temperature synthesized nano-sized β-tricalcium phosphate. Biomaterials 25 (2004) 3155-3161
-
(2004)
Biomaterials
, vol.25
, pp. 3155-3161
-
-
Bow, J.S.1
Liou, S.C.2
Chen, S.Y.3
-
11
-
-
33644816475
-
Nanostructured calcium phosphates for biomedical applications: novel synthesis and characterization
-
Prashant N.K., Charles S., Lee D.H., and Olton D. Nanostructured calcium phosphates for biomedical applications: novel synthesis and characterization. Acta Biomater. 1 (2005) 65-83
-
(2005)
Acta Biomater.
, vol.1
, pp. 65-83
-
-
Prashant, N.K.1
Charles, S.2
Lee, D.H.3
Olton, D.4
-
14
-
-
16344381538
-
Microstructure and mechanical properties of spark plasma sintered zirconia-hydroxyapatite nano-composite powders
-
Kumar R., Prakash K.H., Cheang P., and Khor K.A. Microstructure and mechanical properties of spark plasma sintered zirconia-hydroxyapatite nano-composite powders. Acta Mater. 53 (2005) 2327-2335
-
(2005)
Acta Mater.
, vol.53
, pp. 2327-2335
-
-
Kumar, R.1
Prakash, K.H.2
Cheang, P.3
Khor, K.A.4
-
15
-
-
4143094943
-
Processing and properties of carbon nanotubes-nano-WC-Co composites
-
Zhang F.M., Shen J., and Sun J.F. Processing and properties of carbon nanotubes-nano-WC-Co composites. Mater. Sci. Eng. A 381 (2004) 86-91
-
(2004)
Mater. Sci. Eng. A
, vol.381
, pp. 86-91
-
-
Zhang, F.M.1
Shen, J.2
Sun, J.F.3
-
16
-
-
1542402018
-
Microstructures and mechanical properties of bulk nanocrystalline Fe-Al-C alloys made by mechanically alloying with subsequent spark plasma sintering
-
Yoritoshi M., Yuichiro K., Nobuhiro T., Naoko H., Kiyoshi M., and Yoshihira O. Microstructures and mechanical properties of bulk nanocrystalline Fe-Al-C alloys made by mechanically alloying with subsequent spark plasma sintering. Sci. Technol. Adv. Mater. 5 (2004) 133-143
-
(2004)
Sci. Technol. Adv. Mater.
, vol.5
, pp. 133-143
-
-
Yoritoshi, M.1
Yuichiro, K.2
Nobuhiro, T.3
Naoko, H.4
Kiyoshi, M.5
Yoshihira, O.6
-
17
-
-
0033737713
-
Strengthening of porous alumina by pulse electric current sintering and nanocomposite processing
-
Oh S.T., Tajima K.I., Ando M., and Ohji T. Strengthening of porous alumina by pulse electric current sintering and nanocomposite processing. J. Am. Ceram. Soc. 83 (2000) 1314-1316
-
(2000)
J. Am. Ceram. Soc.
, vol.83
, pp. 1314-1316
-
-
Oh, S.T.1
Tajima, K.I.2
Ando, M.3
Ohji, T.4
-
18
-
-
0036346961
-
High-strength porous alumina ceramics by the pulse electric current sintering technique
-
Jayaseelan D.D., Kondo N.M., Brito E., and Ohji T. High-strength porous alumina ceramics by the pulse electric current sintering technique. J. Am. Ceram. Soc. 85 (2002) 267-269
-
(2002)
J. Am. Ceram. Soc.
, vol.85
, pp. 267-269
-
-
Jayaseelan, D.D.1
Kondo, N.M.2
Brito, E.3
Ohji, T.4
-
19
-
-
33747353612
-
Preparation of porous alumina ceramics by spark plasma sintering
-
Cho W.S., Yoo Y.C., Whang C.M., Cho N.H., Kim J.G., Kwon Y.J., et al. Preparation of porous alumina ceramics by spark plasma sintering. Ceram. Trans. 194 (2006) 73-82
-
(2006)
Ceram. Trans.
, vol.194
, pp. 73-82
-
-
Cho, W.S.1
Yoo, Y.C.2
Whang, C.M.3
Cho, N.H.4
Kim, J.G.5
Kwon, Y.J.6
-
20
-
-
32344446852
-
Fabrication of porous aluminum by spacer method consisting of spark plasma sintering and sodium chloride dissolution
-
Hakamada M., Yamada Y., Nomura T., Chen Y., Kusuda H., and Mabuchi M. Fabrication of porous aluminum by spacer method consisting of spark plasma sintering and sodium chloride dissolution. Mater. Trans. 46 (2005) 2624-2628
-
(2005)
Mater. Trans.
, vol.46
, pp. 2624-2628
-
-
Hakamada, M.1
Yamada, Y.2
Nomura, T.3
Chen, Y.4
Kusuda, H.5
Mabuchi, M.6
-
21
-
-
0038676298
-
Sintered porous titanium and titanium alloys as advanced biomaterials
-
Asaoka K., and Kon M. Sintered porous titanium and titanium alloys as advanced biomaterials. Mater. Sci. Forum 426-432 (2003) 3079-3084
-
(2003)
Mater. Sci. Forum
, vol.426-432
, pp. 3079-3084
-
-
Asaoka, K.1
Kon, M.2
-
22
-
-
0030783566
-
Influence of porosity and pore size on the compressive strength of porous hydroxyapatite ceramic
-
Liu D.M. Influence of porosity and pore size on the compressive strength of porous hydroxyapatite ceramic. Ceram. Int. 23 (1997) 135-139
-
(1997)
Ceram. Int.
, vol.23
, pp. 135-139
-
-
Liu, D.M.1
-
24
-
-
0034545352
-
Characterization of the transformation from calcium-deficient apatite to β-tricalcium phosphate
-
Gibson I.R., Rehman I., Best M.S., and Bonfield W. Characterization of the transformation from calcium-deficient apatite to β-tricalcium phosphate. J. Mater. Sci. Mater. Med. 12 (2000) 799-804
-
(2000)
J. Mater. Sci. Mater. Med.
, vol.12
, pp. 799-804
-
-
Gibson, I.R.1
Rehman, I.2
Best, M.S.3
Bonfield, W.4
-
25
-
-
0031045696
-
Pore size of porous hydroxyapatite as the cell-substratum controls BMP-induced osteogenesis
-
Tsuruga E., Takita H., Itoh H., Wakisaka Y., and Kuboki Y. Pore size of porous hydroxyapatite as the cell-substratum controls BMP-induced osteogenesis. J. Biochem. 121 (1997) 317-324
-
(1997)
J. Biochem.
, vol.121
, pp. 317-324
-
-
Tsuruga, E.1
Takita, H.2
Itoh, H.3
Wakisaka, Y.4
Kuboki, Y.5
-
26
-
-
33645856154
-
Influence of the porosity of hydroxyapatite ceramics on in vitro and in vivo bone formation by cultured rat bone marrow stromal cells
-
Masanori O., Yoshiko D., Hajime O., Hideki S., Masako I., Asako M., et al. Influence of the porosity of hydroxyapatite ceramics on in vitro and in vivo bone formation by cultured rat bone marrow stromal cells. J. Mater. Sci. Mater. Med. 17 (2006) 327-336
-
(2006)
J. Mater. Sci. Mater. Med.
, vol.17
, pp. 327-336
-
-
Masanori, O.1
Yoshiko, D.2
Hajime, O.3
Hideki, S.4
Masako, I.5
Asako, M.6
-
28
-
-
0027576495
-
Comparison of stress concentration versus minimum solid area based mechanical property-porosity relations
-
Rice R.W. Comparison of stress concentration versus minimum solid area based mechanical property-porosity relations. J. Mater. Sci. 28 8 (1993) 2187-2190
-
(1993)
J. Mater. Sci.
, vol.28
, Issue.8
, pp. 2187-2190
-
-
Rice, R.W.1
-
29
-
-
0348011497
-
Effect of micro- and macroporosity of bone substitutes on their mechanical properties and cellular response
-
Bignon A., Chouteau J., Chevalier J., Factozzi G., Carret J.P., Chavassieux P., et al. Effect of micro- and macroporosity of bone substitutes on their mechanical properties and cellular response. J. Mater. Sci. Mater. Med. 14 (2003) 1089-1097
-
(2003)
J. Mater. Sci. Mater. Med.
, vol.14
, pp. 1089-1097
-
-
Bignon, A.1
Chouteau, J.2
Chevalier, J.3
Factozzi, G.4
Carret, J.P.5
Chavassieux, P.6
-
30
-
-
0020824766
-
Biodegradation behavior of various calcium phosphate materials in bone tissue
-
Klein C.P.A.T., Driessen A.A., de Groot K., and van den Hooff A. Biodegradation behavior of various calcium phosphate materials in bone tissue. J. Biomed. Mater. Res. 17 5 (1983) 769-784
-
(1983)
J. Biomed. Mater. Res.
, vol.17
, Issue.5
, pp. 769-784
-
-
Klein, C.P.A.T.1
Driessen, A.A.2
de Groot, K.3
van den Hooff, A.4
-
31
-
-
11144296196
-
3D microenvironment as essential element for osteoinduction by biomaterials
-
Habibovic P., Yuan H., Van Der Valk C.M., Meijer G., Van Blitterswijk C.A., and De Groot K. 3D microenvironment as essential element for osteoinduction by biomaterials. Biomaterials 26 17 (2005) 3565-3575
-
(2005)
Biomaterials
, vol.26
, Issue.17
, pp. 3565-3575
-
-
Habibovic, P.1
Yuan, H.2
Van Der Valk, C.M.3
Meijer, G.4
Van Blitterswijk, C.A.5
De Groot, K.6
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