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Volumn 6, Issue 2, 2014, Pages

Indirect three-dimensional printing of synthetic polymer scaffold based on thermal molding process

Author keywords

injection molding system (IMS); projection based micro stereolithography (pMSTL); scaffold fabrication; thermal molding process; three dimensional printing (3DP)

Indexed keywords

3D PRINTERS; BIOLOGICAL MATERIALS; BIOMATERIALS; CELL ADHESION; FABRICATION; INJECTION MOLDING; MECHANICAL PROPERTIES; PRINTING; SOLVENTS; THREE DIMENSIONAL;

EID: 84899524034     PISSN: 17585082     EISSN: 17585090     Source Type: Journal    
DOI: 10.1088/1758-5082/6/2/025003     Document Type: Article
Times cited : (55)

References (24)
  • 1
    • 84863370392 scopus 로고    scopus 로고
    • Projection image-generation algorithm for fabrication of a complex structure using projection-based microstereolithography
    • 10.1007/s12541-012-0057-8
    • Jung J W, Kang H W, Kang T Y, Park J H, Park J S and Cho D W 2012 Projection image-generation algorithm for fabrication of a complex structure using projection-based microstereolithography Int. J. Precis. Eng. Manuf. 13 445-9
    • (2012) Int. J. Precis. Eng. Manuf. , vol.13 , pp. 445-449
    • Jung, J.W.1    Kang, H.W.2    Kang, T.Y.3    Park, J.H.4    Park, J.S.5    Cho, D.W.6
  • 2
    • 3042782581 scopus 로고    scopus 로고
    • Scaffold-based tissue engineering: Rationale for computer-aided design and solid free-from fabrication systems
    • 10.1016/j.tibtech.2004.05.005
    • Hutmacher D W, Sittinger M and Risbud M V 2004 Scaffold-based tissue engineering: rationale for computer-aided design and solid free-from fabrication systems Trends Biotechnol. 22 354-62
    • (2004) Trends Biotechnol. , vol.22 , pp. 354-362
    • Hutmacher, D.W.1    Sittinger, M.2    Risbud, M.V.3
  • 3
    • 84856721133 scopus 로고    scopus 로고
    • Solid freeform fabrication technology applied to tissue engineering with various biomaterials
    • 10.1039/c1sm06863f 1744-683X
    • Seol Y J, Kang T Y and Cho D W 2012 Solid freeform fabrication technology applied to tissue engineering with various biomaterials Soft Matter 8 1730-5
    • (2012) Soft Matter , vol.8 , pp. 1730-1735
    • Seol, Y.J.1    Kang, T.Y.2    Cho, D.W.3
  • 4
    • 8144227180 scopus 로고    scopus 로고
    • Rapid prototyping in tissue engineering: Challenges and potential
    • 10.1016/j.tibtech.2004.10.004
    • Yeong W Y, Chua C K, Leong K F and Chandrasekaran M 2004 Rapid prototyping in tissue engineering: challenges and potential Trends Biotechnol. 22 643-52
    • (2004) Trends Biotechnol. , vol.22 , pp. 643-652
    • Yeong, W.Y.1    Chua, C.K.2    Leong, K.F.3    Chandrasekaran, M.4
  • 5
    • 21844438003 scopus 로고    scopus 로고
    • Porous scaffold design for tissue engineering
    • 10.1038/nmat1421 1476-1122
    • Hollister S J 2009 Porous scaffold design for tissue engineering Nature Mater. 4 518-24
    • (2009) Nature Mater. , vol.4 , pp. 518-524
    • Hollister, S.J.1
  • 6
    • 77953651502 scopus 로고    scopus 로고
    • A review on stereolithography and its applications in biomedical engineering
    • 10.1016/j.biomaterials.2010.04.050 0142-9612
    • Melchels F P W, Feijen J and Grijpma D W 2010 A review on stereolithography and its applications in biomedical engineering Biomaterials 31 6121-30
    • (2010) Biomaterials , vol.31 , pp. 6121-6130
    • Melchels, F.P.W.1    Feijen, J.2    Grijpma, D.W.3
  • 7
    • 84941944801 scopus 로고    scopus 로고
    • Fabrication of three-dimensional polycaprolactone/hydroxyapatite tissue scaffolds and osteoblast-scaffold interactions in vitro
    • 10.1016/j.biomaterials.2007.08.018 0142-9612
    • Shor L, Guceri S, Wen X, Gandhi M and Sun W 2007 Fabrication of three-dimensional polycaprolactone/hydroxyapatite tissue scaffolds and osteoblast-scaffold interactions in vitro Biomaterials 28 5291-7
    • (2007) Biomaterials , vol.28 , pp. 5291-5297
    • Shor, L.1    Guceri, S.2    Wen, X.3    Gandhi, M.4    Sun, W.5
  • 8
    • 77956761652 scopus 로고    scopus 로고
    • Precision extruding deposition (PED) fabrication of polycaprolactone (PCL) scaffolds for bone tissue engineering
    • 10.1088/1758-5082/1/1/015003 1758-5090 015003
    • Shor L, Guceri S, Chang R, Gordon J, Kang Q, Hartsock L, An Y and Sun W 2009 Precision extruding deposition (PED) fabrication of polycaprolactone (PCL) scaffolds for bone tissue engineering Biofabrication 1 015003
    • (2009) Biofabrication , vol.1 , Issue.1
    • Shor, L.1    Guceri, S.2    Chang, R.3    Gordon, J.4    Kang, Q.5    Hartsock, L.6    An, Y.7    Sun, W.8
  • 9
    • 82055184127 scopus 로고    scopus 로고
    • Fabrication of 13-93 bioactive glass scaffolds for bone tissue engineering using indirect selective laser sintering
    • 10.1088/1758-5082/3/2/025004 1758-5090 025004
    • Kolan K C R, Leu M C, Hilmas G E, Brown R F and Velez M 2011 Fabrication of 13-93 bioactive glass scaffolds for bone tissue engineering using indirect selective laser sintering Biofabrication 3 025004
    • (2011) Biofabrication , vol.3 , Issue.2
    • Kolan, K.C.R.1    Leu, M.C.2    Hilmas, G.E.3    Brown, R.F.4    Velez, M.5
  • 10
    • 42649083003 scopus 로고    scopus 로고
    • Novel 3D collagen scaffolds fabricated by indirect printing technique for tissue engineering
    • 10.1002/jbm.b.30975 1097-4636
    • Liu C Z, Xia Z D, Han Z W, Hulley P A, Triffitt J T and Czernuszka J T 2007 Novel 3D collagen scaffolds fabricated by indirect printing technique for tissue engineering J. Biomed. Mater. Res. 85B 519-28
    • (2007) J. Biomed. Mater. Res. , vol.85 , pp. 519-528
    • Liu, C.Z.1    Xia, Z.D.2    Han, Z.W.3    Hulley, P.A.4    Triffitt, J.T.5    Czernuszka, J.T.6
  • 11
    • 0037210053 scopus 로고    scopus 로고
    • Indirect solid free form fabrication of local and global porous, biomimetic and composite 3D polymer-ceramic scaffolds
    • 10.1016/S0142-9612(02)00276-4 0142-9612
    • Taboas J M, Maddox R D, Krebsbach P H and Hollister S J 2003 Indirect solid free form fabrication of local and global porous, biomimetic and composite 3D polymer-ceramic scaffolds Biomaterials 24 181-94
    • (2003) Biomaterials , vol.24 , pp. 181-194
    • Taboas, J.M.1    Maddox, R.D.2    Krebsbach, P.H.3    Hollister, S.J.4
  • 12
    • 15944374297 scopus 로고    scopus 로고
    • Scaffold fabrication by indirect three-dimensional printing
    • 10.1016/j.biomaterials.2004.10.040 0142-9612
    • Lee M, James C Y D and Wu B M 2005 Scaffold fabrication by indirect three-dimensional printing Biomaterials 26 4281-9
    • (2005) Biomaterials , vol.26 , pp. 4281-4289
    • Lee, M.1    James, C.Y.D.2    Wu, B.M.3
  • 13
    • 78651283946 scopus 로고    scopus 로고
    • Indirect rapid prototyping of biphasic calcium phosphate scaffolds as bone substitutes: Influence of phase composition, macroporosity and pore geometry on mechanical properties
    • 10.1007/s10856-010-4166-6 0957-4530
    • Schumacher M, Deisinger U and Detsch R 2010 Indirect rapid prototyping of biphasic calcium phosphate scaffolds as bone substitutes: influence of phase composition, macroporosity and pore geometry on mechanical properties J. Mater. Sci., Mater. Med. 21 3119-27
    • (2010) J. Mater. Sci., Mater. Med. , vol.21 , pp. 3119-3127
    • Schumacher, M.1    Deisinger, U.2    Detsch, R.3
  • 14
    • 84867002981 scopus 로고    scopus 로고
    • Development of an indirect stereolithography technology for scaffold fabrication with a wide range of biomaterial selectivity
    • 10.1089/ten.tec.2011.0621 1076-3279 C
    • Kang H W and Cho D W 2012 Development of an indirect stereolithography technology for scaffold fabrication with a wide range of biomaterial selectivity Tissue Eng. C 18 719-29
    • (2012) Tissue Eng. , vol.18 , pp. 719-729
    • Kang, H.W.1    Cho, D.W.2
  • 15
    • 84866307944 scopus 로고    scopus 로고
    • Development of a 3D bellows tracheal graft: Mechanical behavior analysis, fabrication and an in vivo feasibility study
    • 10.1088/1758-5082/4/3/035004 1758-5090 035004
    • Park J H, Jung J W, Kang H W, Joo Y H, Lee J S and Cho D W 2012 Development of a 3D bellows tracheal graft: mechanical behavior analysis, fabrication and an in vivo feasibility study Biofabrication 4 035004
    • (2012) Biofabrication , vol.4 , Issue.3
    • Park, J.H.1    Jung, J.W.2    Kang, H.W.3    Joo, Y.H.4    Lee, J.S.5    Cho, D.W.6
  • 16
    • 84896715150 scopus 로고    scopus 로고
    • Morphologic assessment of polycaprolactone scaffolds for tracheal transplantation in a rabbit model
    • 10.1007/s13770-013-0358-8
    • Joo Y H, Park J H, Cho D W and Sun D I 2013 Morphologic assessment of polycaprolactone scaffolds for tracheal transplantation in a rabbit model Tissue Eng. Reg. Med. 10 65-70
    • (2013) Tissue Eng. Reg. Med. , vol.10 , pp. 65-70
    • Joo, Y.H.1    Park, J.H.2    Cho, D.W.3    Sun, D.I.4
  • 17
    • 84861575621 scopus 로고    scopus 로고
    • Effect of pore architecture and stacking direction on mechanical properties of solid freeform fabrication-based scaffold for bone tissue engineering
    • 10.1002/jbm.a.34149 1097-4636 A
    • Lee J S, Cha H D, Shim J H, Jung J W, Kim J Y and Cho D W 2012 Effect of pore architecture and stacking direction on mechanical properties of solid freeform fabrication-based scaffold for bone tissue engineering J. Biomed. Mater. Res. A 100A 1846-53
    • (2012) J. Biomed. Mater. Res. , vol.100 , pp. 1846-1853
    • Lee, J.S.1    Cha, H.D.2    Shim, J.H.3    Jung, J.W.4    Kim, J.Y.5    Cho, D.W.6
  • 18
    • 31444451047 scopus 로고    scopus 로고
    • Bubble and cloud point of the systems poly (ε-caprolactione) + carbone dioxide + dichloromethane or chloroform
    • 10.1021/je0502602
    • Kalogiannis C G and Panayiotou C G 2006 Bubble and cloud point of the systems poly (ε-caprolactione) + carbone dioxide + dichloromethane or chloroform J. Chem. Eng. Data 51 107-11
    • (2006) J. Chem. Eng. Data , vol.51 , pp. 107-111
    • Kalogiannis, C.G.1    Panayiotou, C.G.2
  • 19
    • 84862820891 scopus 로고    scopus 로고
    • A pixel based solidification model for projection based stereolithography technology
    • 10.1016/j.sna.2012.01.016 0924-4247 A
    • Kang H W, Park J H and Cho D W 2012 A pixel based solidification model for projection based stereolithography technology Sensors Actuators A 178 223-9
    • (2012) Sensors Actuators , vol.178 , pp. 223-229
    • Kang, H.W.1    Park, J.H.2    Cho, D.W.3
  • 20
    • 84899553613 scopus 로고    scopus 로고
    • Drying induced phase separation in multicomponent polymeric coatings-simulation study
    • Arya R K 2012 Drying induced phase separation in multicomponent polymeric coatings-simulation study Int. J. Sci. Tech. Res. 1 48-53
    • (2012) Int. J. Sci. Tech. Res. , vol.1 , pp. 48-53
    • Arya, R.K.1
  • 21
    • 0036708019 scopus 로고    scopus 로고
    • The wet phase separation: The effect of cast solution thickness on the appearance of macrovoids in the membrane forming ternary cellulose acetate/acetone/water system
    • 10.1016/S0376-7388(02)00119-9 0376-7388
    • Vogrin N, Stropnik C, Musil V and Brumen M 2002 The wet phase separation: the effect of cast solution thickness on the appearance of macrovoids in the membrane forming ternary cellulose acetate/acetone/water system J. Membr. Sci. 207 139-41
    • (2002) J. Membr. Sci. , vol.207 , pp. 139-141
    • Vogrin, N.1    Stropnik, C.2    Musil, V.3    Brumen, M.4
  • 23
    • 1842713324 scopus 로고    scopus 로고
    • Preparation of porous poly(D,L-lactide) and poly(D,L-lactide-co- glycolide) membranes by a phase inversion process and investigation of their morphological changes as cell culture scaffolds
    • 10.1002/app.20144
    • Kim S Y, Kanamori T, Noumi Y, Wang P C and Shibo T 2004 Preparation of porous poly(D,L-lactide) and poly(D,L-lactide-co-glycolide) membranes by a phase inversion process and investigation of their morphological changes as cell culture scaffolds J. Appl. Polym. Sci. 92 2082-92
    • (2004) J. Appl. Polym. Sci. , vol.92 , pp. 2082-2092
    • Kim, S.Y.1    Kanamori, T.2    Noumi, Y.3    Wang, P.C.4    Shibo, T.5
  • 24
    • 33745004453 scopus 로고    scopus 로고
    • Fiber diameter and texture of electrospun PEOT/PBT scaffolds influence human mesenchymal stem cell proliferation and morphology, and the release of incorporated compounds
    • 10.1016/j.biomaterials.2006.05.027 0142-9612
    • Moroni L, Licht R, Boer J, Wijn J R and Blitterswijk C A 2006 Fiber diameter and texture of electrospun PEOT/PBT scaffolds influence human mesenchymal stem cell proliferation and morphology, and the release of incorporated compounds Biomaterials 27 4911-22
    • (2006) Biomaterials , vol.27 , pp. 4911-4922
    • Moroni, L.1    Licht, R.2    Boer, J.3    Wijn, J.R.4    Blitterswijk, C.A.5


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.