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강화 단계가 PLA 매트릭스 나노 복합재의 기계적 및 생체 적합성 특성에 미치는 영향 Evlen H, Erel G Polymer(Korea), 45(4), 491, 2021 |
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[기획특집: 바이오메디컬 소재응용기술] 다기능 유연성 신경 인터페이스 연구동향 박성준 Korean Industrial Chemistry News, 22(6), 26, 2019 |
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Imaging stem cell distribution, growth, migration, and differentiation in 3-D scaffolds for bone tissue engineering using mesoscopic fluorescence tomography Tang QG, Piard C, Lin J, Nan K, Guo T, Caccamese J, Fisher J, Chen Y Biotechnology and Bioengineering, 115(1), 257, 2018 |
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Fabrication, structure and properties of three-dimensional biodegradable poly(glycerol sebacate urethane) scaffolds Frydrych M, Chen BQ Polymer, 122, 159, 2017 |
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Bacterial cellulose in the field of wound healing and regenerative medicine of skin: recent trends and future prospectives Kucinska-Lipka J, Gubanska I, Janik H Polymer Bulletin, 72(9), 2399, 2015 |
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Discovery and Evaluation of a Functional Ternary Polymer Blend for Bone Repair: Translation from a Microarray to a Clinical Model Khan F, Smith JO, Kanczler JM, Tare RS, Oreffo ROC, Bradley M Advanced Functional Materials, 23(22), 2850, 2013 |
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Wettability modification of electrospun poly(epsilon-caprolactone) fibers by femtosecond laser irradiation in different gas atmospheres He LN, Chen JA, Farson DF, Lannutti JJ, Rokhlin SI Applied Surface Science, 257(8), 3547, 2011 |
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Hydroxyapatite/polyamide66 porous scaffold with an ethylene vinyl acetate surface layer used for simultaneous substitute and repair of articular cartilage and underlying bone Luo XB, Zhang L, Morsi Y, Zou Q, Wang YY, Gao SB, Li YB Applied Surface Science, 257(23), 9888, 2011 |
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Micropatterning and Characterization of Electrospun Poly(epsilon-Caprolactone)/Gelatin Nanofiber Tissue Scaffolds by Femtosecond Laser Ablation for Tissue Engineering Applications Lim YC, Johnson J, Fei ZZ, Wu Y, Farson DF, Lannutti JJ, Choi HW, Lee LJ Biotechnology and Bioengineering, 108(1), 116, 2011 |
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Centrifugal Seeding of Mammalian Cells in Nonwoven Fibrous Matrices Ng R, Gurm JS, Yang ST Biotechnology Progress, 26(1), 239, 2010 |