1 최방실, "탈미네랄화 골분(DBP)이 PLGA 지지체의 염증반응을 완화시킨다" 한국조직공학과 재생의학회 3 (3): 295-300, 2006
2 박일규, "원심분리법을 이용한 다공 크기 구배를 가지는 알지네이트 지지체의 제조 및 분석" 한국조직공학과 재생의학회 1 (1): 164-170, 2004
3 김초민, "슈반세포가 골수간엽줄기세포의 분화에 미치는 영향" 한국조직공학과 재생의학회 4 (4): 60-66, 2007
4 강길선, "생체조직공학용 지지체" 한국조직공학과 재생의학회 3 (3): 376-395, 2006
5 P Sierpinskia, "The use of keratin biomaterials derived from human hair for the promotion of rapid regeneration of peripheral nerves" 29 : 118-, 2008
6 Y Iwasaki, "Reduction of surfaceinduced inflammatory reaction on PLGA/MPC polymer blend" 23 : 3897-, 2002
7 J Klomomaker, "Porous polymer implant for repair of meniscal lesions: a preliminary study in dogs" 12 : 810-, 1991
8 WY Jang, "Neurogenesis of bone marrow stromal cell using controlled release of butylated hydroxyanisole from PLGA Films" 1 : 9-, 2004
9 KS Stenn, "Molecules of the cycling hair follicle-a tabulated review" 7 : 109-, 1994
10 DW Gilroy, "Inflammatory resolution: new opportunities for drug discovery" 3 : 401-, 2004
1 최방실, "탈미네랄화 골분(DBP)이 PLGA 지지체의 염증반응을 완화시킨다" 한국조직공학과 재생의학회 3 (3): 295-300, 2006
2 박일규, "원심분리법을 이용한 다공 크기 구배를 가지는 알지네이트 지지체의 제조 및 분석" 한국조직공학과 재생의학회 1 (1): 164-170, 2004
3 김초민, "슈반세포가 골수간엽줄기세포의 분화에 미치는 영향" 한국조직공학과 재생의학회 4 (4): 60-66, 2007
4 강길선, "생체조직공학용 지지체" 한국조직공학과 재생의학회 3 (3): 376-395, 2006
5 P Sierpinskia, "The use of keratin biomaterials derived from human hair for the promotion of rapid regeneration of peripheral nerves" 29 : 118-, 2008
6 Y Iwasaki, "Reduction of surfaceinduced inflammatory reaction on PLGA/MPC polymer blend" 23 : 3897-, 2002
7 J Klomomaker, "Porous polymer implant for repair of meniscal lesions: a preliminary study in dogs" 12 : 810-, 1991
8 WY Jang, "Neurogenesis of bone marrow stromal cell using controlled release of butylated hydroxyanisole from PLGA Films" 1 : 9-, 2004
9 KS Stenn, "Molecules of the cycling hair follicle-a tabulated review" 7 : 109-, 1994
10 DW Gilroy, "Inflammatory resolution: new opportunities for drug discovery" 3 : 401-, 2004
11 C Gerad, "Inflammatory chemokines: tuned in, turned on, dropped out" 6 : 366-, 2005
12 GR Kose, "In vitro tissue engineering of bone using poly(3-hydroxybutyric acid-co-3- hydroxyvaleic acid) and collagen scaffold" 10 : 1234-, 2004
13 A Tachibana, "Fabricationof wool keratin sponge scaffolds for long-term cell cultivation" 93 : 165-, 2002
14 U Klueh, "Exova chick chorioallantoic membrane as a novel model for evaluation of tissue responses to biomaterials and implants" 67 : 838-, 2003
15 OAR Sulaiman, "Effects of short and long-term schwann cell denervation on peripheral nerve regeneration, myelination and size" 32 : 234-, 2000
16 F Wen, "Development of poly(lactic-coglycolic acid)-collagen scaffolds for tissue engineering" 27 : 285-, 2007
17 GilsonKhang, "Controlled Release of Nerve Growth Factor from Sandwiched Poly(L-lactide-co-glycolide) Films for the Application in Neural Tissue Engineering" 한국고분자학회 11 (11): 334-340, 2003
18 SD Patil, "Concurrent delivery of dexamathasone and VEGF for localized inflammation control and angiogenesis" 117 : 68-, 2007
19 MS Taylor, "Bioabsorbable polymers: in vitro acute toxicity of accumulated degradation products" 5 : 151-, 1994
20 T Lawrence, "Antiinflammatory lipid mediators and insights into the resolution of inflammation" 2 : 787-, 2002
21 O Bostman, "Absorbable implants for the fixation of fractures" 73 : 148-, 1991