Page 42 - IJB-5-1
P. 42

Shuai C
               45007.                                              dimensional printed polycaprolactone/hydroxyapatite scaffolds
           206.  Shuai C, Yang Y, Feng P, et al., 2018, A multi–scale porous   for improving bone regeneration. Mater Sci Eng C., 74: 1-608.
               scaffold fabricated  by a combined additive  manufacturing   211.  Roh H S, Jung S C, Kook M S, et al., 2016, In vitro study
               and chemical etching process. Int J Bioprint, 4(3): 133.  of  3D  PLGA/n–HAp/β–TCP  composite  scaffolds  with
           207.  Ramier J, Boubaker M B, Guerrouache M, et al., 2014, Novel   etched  oxygen  plasma  surface  modification  in  bone  tissue
               routes to epoxy functionalization of PHA-based electrospun   engineering. Appl Surf Sci, 388: 321–330.
               scaffolds as  ways to  improve  cell  adhesion.  J Polym  Sci   212.  Jeon  H,  Lee  H,  Kim  G,  2014,  A  surface–modified
               Part A Polym Chem, 52(6): 816–824.                  poly(ɛ–caprolactone) scaffold comprising variable nanosized
           208.  Wang  X,  Li  Y,  Hodgson  P  D,  et al., 2010, Biomimetic   surface–roughness using a plasma treatment.  Tissue Eng
               modification of porous TiNbZr alloy scaffold for bone tissue   Part C Methods, 20(12): 951.
               engineering. Tissue Eng Part A, 16(1): 309–316.  213.  Jayanth N, Senthil P, Prakash C, 2018, Effect of chemical
           209.  Hanson A D, Wall M E, Pourdeyhimi B, et al., 2007, Effects   treatment on tensile strength and surface roughness of 3D–
               of  oxygen  plasma  treatment  on  adipose–derived  human   printed ABS using the FDM process. Virtual Phys Prototyp,
               mesenchymal  stem cell adherence to poly (L–lactic  acid)   2018: 1–9.
               scaffolds. J Biomater Sci Polym Ed, 18(11): 1387–1400.  214.  Calignano F, 2018, Investigation of the accuracy and
           210.  Roh H S, Lee C M, Hwang Y H,  et al., 2016, Addition of   roughness  in the laser powder bed fusion process.  Virtual
               MgO nanoparticles and plasma surface treatment of  three–  Phys Prototyp, 1: 1–8.






















































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