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동의어 포함
The synthesis and characterization of biodegradable polymers for applications of interbody vertebral
cages are described. Poly(glycolide-co-L-lactide) (PLGA) with high compression strength and controllable biodegradability
was synthesized by varying the molar composition ratio of glycoide to L-lactide. Molecular weights and
thermal properties of copolymers were dependent on the composition ratio. In particular, the copolymer with the 8:2
ratio of glycolide to L-lactide was found to have higher molecular weight and crystallinity. The copolymer showed
high compression strength of 71? MPa, comparable to the poly(methyl methacrylate) (PMMA) cage. The copolymers
did not have any defect in the intrastructure and show the compact structures. They could be fabricated into
interbody vertebral cervical cages without any critical problems. Biodegradable cages described in this work can be
used as a promising alternative to currently used non-degradable cages.| 번호 | 참고문헌 | 국회도서관 소장유무 |
|---|---|---|
| 1 | Aging and degeneration of the human intervertebral disc. ![]() |
미소장 |
| 2 | Interaction of a 59-kDa connective tissue matrix protein with collagen I and collagen II. ![]() |
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| 3 | Binding of fibromodulin and decorin to separate sites on fibrillar collagens. ![]() |
미소장 |
| 4 | S Fujibayashi, M Neo, T Nakamura, Stand-alone interbody cage versus anterior cervical plate for treatment of cervical disc herniation: Sequential changes in cage subsidence, J Clinical Neuroscience, 15, 1017 (2008). | 미소장 |
| 5 | Preliminary Experience with Anterior Interbody Titanium Cage Fusion for Treatment of Cervical Disc Disease ![]() |
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| 6 | The polymethyl methacrylate cervical cage for treatment of cervical disk disease Part III. Biomechanical properties. ![]() |
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| 7 | Carbon cage implant prosthesis for cervical disc surgery ![]() |
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| 8 | Cervical disk replacement using trabecular metal cage: preliminary results in a series of 51 patients ![]() |
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| 9 | Solis cage (PEEK) for anterior cervical fusion: preliminary radiological results with emphasis on fusion and subsidence ![]() |
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| 10 | Efficacy of anterior cervical fusion: Comparison of titanium cages, polyetheretherketone (PEEK) cages and autogenous bone grafts ![]() |
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| 11 | YK Ko, SH Kim, BY Min, et al., Tissue engineered biodisc using human intervertebral disc cells and PLGA/DBP scaffold, Tissue Eng Regen Med, 4, 67 (2007). | 미소장 |
| 12 | G Khang, MS Kim, BY Min, et al., Scaffolds for tissue engineering, Tissue Eng Regen Med, 3, 376 (2004). | 미소장 |
| 13 | SM Kim, SH Kim, CM Kim, Effect of DBP content on attachment and proliferation of schwann cell and olfactory ensheathing cell on DBP/PLGA film, Tissue Eng Regen Med, 4, 179 (2007) | 미소장 |
| 14 | Biodisc Tissue-Engineered Using PLGA/DBP Hybrid Scaffold | 소장 |
| 15 | Microstructural analysis and structure-property relationship of poly(glycolide-co-1,3-trimethylene carbonate) ![]() |
미소장 |
| 16 | JW So, SH Kim, MO Baek, et al., Effect of size of PLGA microsphere on proliferation and phenotype for human intervertebral disc cells, Tissue Eng Regen Med, 4, 577 (2007) | 미소장 |
| 17 | HK Hong, SH Kim, SK Lee, et al., Compressive strength of poly(L-lactide-co-glycolide) scaffolds seeded nucleus pulposus cells depending on pore size, Tissue Eng Regen Med, 6, 1029 (2009) | 미소장 |
| 18 | Mechanism of Ring-Opening Polymerization of 1,5-Dioxepan-2-one and L-Lactide with Stannous 2-Ethylhexanoate. A Theoretical Study ![]() |
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