[1]Langer R,Vacanti JP.T5110 engineering[J].Science,1993,260(5110):920-926 [2]Yang SF,Leong KF,Du ZH,et al.The design of scaffolds for use in t6 engineeringPart 1. Traditional factors[J].T6 Eng,2001,7(6):679-689 [3]Calvo-Guirado JL,Ramirez-Fernandez MP,Delgado-Ruiz RA,et al.al. Influence of Biphasic beta-TCP with and without the use of collagen membranes on bone healing of surgically critical size defectsA radiological,histological,and histomorphometric study[J].Clin Oral Implants Res,2014,25(11):1228-1238 [4]Chen GQ,Wu Q.The application of polyhydroxyalkanoates as t23 engineering materials[J].Biomaterials,2005,26(23):6565-6578 [5]Jensen SS,Terheyden H.Bone Augmentation Procedures in Localized Defects in the Alveolar Ridge: Clinical Results with Different Bone Grafts and Bone-Substitute Materials[J].Int J Oral Maxillofac Implants,2009,24:218-236 [6]Liu WY,Thomopoulos S,Xia YN.Electrospun Nanofibers for Regenerative Medicine[J].Adv Healthc Mater,2012,1(1):10-25 [7]Bhardwaj N,Kundu SC.Electrospinning: A fascinating fiber fabrication technique[J].Biotechnol Adv,2010,28(3):325-347 [8]Wu H,Hu LB,Rowell,MW,et al.Electrospun Metal Nanofiber Webs as High-Performance Transparent Electrode[J].Nano Lett,2010,10(10):4242-4248 [9]Ottani V,Raspanti M,Martini D,et al.Electromagnetic stimulation on the bone growth using backscattered electron imaging[J].Micron,2002,33(2):121-125 [10]Wu Y,Jiang W,Wen XT,et al.A novel calcium phosphate ceramic-magnetic nanoparticle composite as a potential bone substitute[J].Biomed Mater,2010,5(1):15001- [11]Singh P,YashRoy RC,Hoque M.Augmented bone-matrix formation and osteogenesis under magnetic field stimulation in vivo XRD,TEM and SEM investigations[J].Indian J Biochem,2006,43(3):167-172 [12]Strauch B,Patel MK,Navarro JA,et al.Pulsed Magnetic Fields Accelerate Cutaneous Wound Healing in Rats[J].Plast Reconstr Surg,2007,120(2):425-430 [13]Bock N,Riminucci A,Dionigi C,et al.A novel route in bone t3 engineering:Magnetic biomimetic scaffolds[J].Acta Biomater,2010,6(3):786-796 [14]Meng J,Xiao B,Zhang Y,et al.Super-paramagnetic responsive nanofibrous scaffolds under static magnetic field enhance osteogenesis for bone repair in vivo[J].Sci Rep,2013,3:2665- [15]Majeed MI,Lu QW,Yan W,et al.Highly water-soluble magnetic ironoxide(Fe3O4) nanoparticles for drug delivery: enhanced in vitro therapeutic efficacy of doxorubicin and MION conjugates[J].J Mater Chem,2013,1(22):2874-2884 [16]Gu L,Fang RH,Sailor MJ,et al.In Vivo Clearance and Toxicity of Monodisperse Iron Oxide Nanocrystals[J].Acs Nano,2012,6(6):4947-4954 [17]Zeng XB,Hu H,Xie LQ,et al.Magnetic responsive hydroxyapatite composite scaffolds construction for bone defect reparation[J].Int J Nanomedicine,2012,7:3365-3378 [18]Yildirim ED,Pappas D,Gueceri S,et al.Enhanced Cellular Functionson Polycaprolactone T3 Scaffolds by O2-Plasma Surface Modification[J].Plasma Process Polym,2011,8(3):256-267 [19]Nandakumar A,Birgani ZT,Santos D.Surface modification of electrospun fibre meshes by oxygen plasma for bone regeneration[J].Biofabrication,2013,5(1):015006- [20]Ko YM,Choi DY,Jung SC,et al.Characteristics of Plasma Treated Electrospun Polycaprolactone (PCL) Nanofiber Scaffold for Bone T1 Engineering[J].J Nanosci Nanotechnol,2015,15(1):192-195 [21]Li LH,Qian YN,Jiang C,et al.The use of hyaluronan to regulate protein adsorption andcellinfiltration in nanofibrous scaffolds[J].Biomaterials,2012,33(12):3428-3445
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