Hasegawa S, Ishii S, Tamura J, et al. A 5-7 year in vivo study of high-strength hydroxyapatite/poly(L-lactide) composite rods for internal fixation of bone fractures [J]. Biomaterials, 2006, 27: 1327 -1332.
[2]
Chun Sung-su, Jeong Jae-Ho, Kim Kyo-Han, et al. Biodegradation study of amorphous and crystalline calcium metaphosphate in the SBF and tris-buffer solution [J]. Key Engineering Materials, 2001, 192 -195: 131 -134.
[3]
邱 凯, 万昌秀, 陈 馨, 等. 骨组织工程支架材料聚磷酸钙体外降解规律的研究 [J]. 四川大学学报: 工程科学版, 2005, 37(1): 61 -64. Qiu Kai, Wan Changxiu, Chen Xin, et al. Study on the degradation in vitro of calcium polyphosphate for bone tissue engineering [J]. Journal of Sichuan University: Engineering Science Edition, 2005, 37(1): 61 -6 4.
[4]
Lee Y M, Seol Y J, Lim Y T, et al. Tissue-engineered growth of bone by marrow cell transplantation using porous calcium metaphosphate matrices [J]. Biomaterials Research, 2001, 54(2): 216 -223.
Li S M, Hendren R W, Jensen K, et al. Synthesis, properties and biodegradation of poly(1, 3-trimethylene carbonate) [J]. Macromolecules, 1991, 24(8): 1736 -1740.
[7]
Gogolewski S, Jovanovic M, Perren S M, et al. Tissue response and in vivo degradation of selected polyhydroxyacids: Polylactides(PLA), poly(3-hydroxybutyrate) (PHB), and poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHB/VA) [J]. Journal of Biomedical Materials Research, 1993, 27(9): 1135 -1148.
[8]
吴岳恒, 邱垂源, 毛 萱, 等. 多孔钙磷玻璃陶瓷的制备及性能评价 [J]. 暨南大学学报: 自然科学版, 2005, 26(3): 364 -368. Wu Yueheng, Qiu Chuiyuan, Mao Xuan, et al. Preparation and properties of porous calcium phosphate glass ceramics [J]. Journal of Jinan University: Natural Science, 2005, 26(3): 364 -368.
[9]
吴之中, 张政朴, 鲁 格, 等. 聚乳酸的合成降解及在骨折内固定材料的应用 [J]. 高分子通报, 2000, 3(1): 73 -79. Wu Zhizhong, Zhang Zhengpu, Lu Ge, et al. Synthesis, degradation and application in internal fixation materials of polylactic acid [J]. Chinese Polymer Bulletin, 2000, 3(1): 73 -79.
[10]
Vert M, Li S M, Spenlehauer G, et al. Bioresorbability and biocompatibility of aliphatic polyesters [J]. Journal of Materials Science: Materials in Medicine, 1992, 3(6): 432 -446.
[11]
Hanafusa S, Matsuse Y, Yasunaga T, et al. Biodegradable plate fixation of rabbit femoral shaft osteotomies: A comparative study [J]. Clin Orthop, 1995, 315: 262 -271.
Vainionpa S, Kilpikari J, Laiho J, et al. Strength and strength retention in vitro of absorbable self-reinforced polyglycolide(PGA) rods for fracture fixation [J]. Biomaterials, 1987, 8: 46.
[14]
陈长春, 程海涛, 孙 康, 等. 生物可吸收性甲壳素纤维增强聚乳酸复合材料体内体外降解研究 [J]. 生物医学工程学杂志, 2000, 17(2): 117 -121. Chen Changchun, Cheng Haitao, Sun Kang, et al. The degradation performance of bioabsorbable acylchitin fiber reinforced PLA composite materials in vitro and in vivo [J]. Journal of Biomedical Engineering, 2000, 17(2): 117 -121.
[15]
Taizo Furukawa, Yoshitaka Matsusue, Tsunoru Yasunaga, et al. Biodegradation behavior of ultra-high-strength hydroxy-apatite/poly(L-lactide) composite rods for internal fixation of bone fractures [J]. Biomaterials, 2000, 21: 889 -898.
[16]
Park Eui-Kyun, Lee Young-Eun, Choi Je-Yong, et al. Cellular biocompatibility and stimulatory effects of calcium metaphosphate on osteoblastic differentiation of human bone marrow-derived stromal cells [J]. Biomaterials, 2004, 25: 3403 -3411.