参考文献/References:
1 Vrancken AC, Buma P, Van Tienen TG. Synthetic meniscus replacement: a review [J]. Int Orthop, 2013, 37(2): 291-299.
2 郑冲, 甄志雷, 杨国夫. 半月板损伤修复与重建研究进展 [J]. 医学研究杂志, 2016, 45(4): 178-180, 112.
3 Carbone A, Howie DW, Mcgee M, et al. Aging performance of a compliant layer bearing acetabular prosthesis in an ovine hip arthroplasty model [J]. J Arthroplasty, 2006, 21(6): 899-906.
4 Khan I, Smith N, Jones E, et al. Analysis and evaluation of a biomedical polycarbonate urethane tested in an in vitro study and an ovine arthroplasty model. Part II: in vivo investigation [J]. Biomaterials, 2005, 26(6): 633-643.
5 Flanagan SF. Lubrication and wear of total joint replacements [D]. Limerick: University of Limerick, 2010.
6 武卫莉, 张琦, 徐国志. 硅橡胶、聚氨酯医用材料 [J]. 高分子通报, 2005 (3): 96-99.
7 Blamey J, Rajan S, Unsworth A, et al. Soft layered prostheses for arthritic hip joints: a study of materials degradation [J]. J Biomed Eng, 1991, 13(3): 180-184.
8 Kaibara M, Kawamoto Y, Yanagida S, et al. In vitro evaluation of antithrombogenicity of hybrid-type vascular vessel models based on analysis of the mechanism of blood coagulation [J]. Biomaterials, 1995, 16(16): 1229-1234.
9 Chandran KB, Kim SH, Han G. Stress distribution on the cusps of a polyurethane trileaflet heart valve prosthesis in the closed position [J]. J Biomech, 1991, 24(6): 385-395.
10 Min BG, Kim HC, Lee SH, et al. A moving-actuator type electromechanical total artificial heart –Part I: Linear type and mock circuIation experiments [J]. IEEE Trans Biomed Eng, 1990, 37(12): 1186-1194.
11 Szycher M, Poirier V, Dempsey D. Synthrsis and fabrication of polyurethane elastomers for cardiac assist devices [C]. Boston: American Society of Mechanical Engineers, Applied Mechanics Di-vision, 1979, 743-747.
12 Sawae Y, Murakami T, Higak H, et al. Frictional behavior of ar-tificial cartilage materials lubricated with synovia constituents [J]. Nippon Kikai Gakkai Ronbunshu, Part C, 1995, 61(589): 3665-3671.
13 Jones DS, Bonne MC, Gorman SP, et al. Seguential polyure-thane-poly(methylmethacrylate)interpenetrating polymer networks as ureteral biomaterials:Mechanical properties and comparative resistance to urinary encrustation [J]. J Mater Sci Mater Med, 1997, 8(11): 713-717.
14 Crabtree JH. Clinical biodurability of aliphatic polyether based polyurethanes as peritoneal dialysis catheters [J]. ASAIO J, 2003, 49(3): 290-294.
15 眭建军, 陈莉, 陈苏. 功能聚氨酯材料在生物医学工程中的研究进展及应用 [J]. 合成橡胶工业, 2005, 28(2): 151-154.
16 刘爱堂, 高桂芝. 医用硅橡胶的最新进展 [J]. 特种橡胶制品, 2003, 24(2): 60-61.
17 林卫江, 黄科林, 彭小玉, 等. 医用聚氨酯的应用进展 [J]. 企业科技与发展, 2010 (12): 20-23.
18 王世哲. 生物材料修复半月板运动损伤:现实与未来 [J]. 中国组织工程研究, 2014, 4(16): 2588-2593.
19 Sommerlath?K, Gillquist J. The effects of an artificial meniscus substitute in a knee joint with a resected anterior cruciate ligament. An experimental study in rabbits [J]. Clin Orthop Relat Res, 1993, 289: 276-284.
20 Messner K, Gillquist J. Prosthetic replacement of the rabbit medial meniscus [J]. J Biomed Mater Res, 1993, 27(9): 1165-1173.
21 Messner K, Lohmander LS, Gillquist J. Cartilage mechanics and morphology,synovitis and proteoglycan fragments in rabbit Joint fluid after prosthetic meniscal substitution [J]. Biomaterials, 1993, 14(3): 163-168.
22 Tienen TG, Heijkants RG, de Groot JH, et al. Replacement of the knee meniscus by a porous polymer implant - A study in dogs [J]. Am J Sports Med, 2006, 34(1): 64-71.
23 Tienen TG, Heijkants RG, De Groot JH, et al. Meniscal replacement in dogs. Tissue regeneration in two different materials with similar properties [J]. J Biomed Mater Res B Appl Biomater, 2006, 76B(2): 389-396.
24 Ramrattan NN, Heijkants RG, Van Tienen TG, et al. Assessment of tissue ingrowth rates in polyurethane scaffolds for tissue engineering [J]. Tissue Eng, 2005, 11(7/8): 1212-1223.
25 Welsing RT, van Tienen TG, Ramrattan NA, et al. Effect on tissue differentiation and articular cartilage degradation of a polymer meniscus implant - A 2-year follow-up study in dogs [J]. Am J Sports Med, 2008, 36(10): 1978-1989.
26 Heijkantsr RG, van Calckr RV, De Groot JH, et al. Design, synthesis and properties of a degradable polyurethane scaffold for meniscus regeneration [J]. J Mater Sci Mater Med, 2004, 15(4): 423-427.
27 De Coninck T, Elsner JJ, Linder-Ganz E, et al. In-vivo evaluation of the kinematic behavior of an artificial medial meniscus implant: A pilot study using open-MRI [J]. Clin Biomech, 2014, 29(8): 898-905.
28 Aspden RM, Yarker YE, Hukins DW. Collagen orientations in the meniscus of the knee joint [J]. J Anat, 1985, 140(Pt3): 371-380.
29 Chiari C, Koller U, Dorotka R, et al. A tissue engineering approach to meniscus regeneration in a sheep model [J]. Osteoarthritis Cartilage, 2006, 14(10): 1056-1065.
30 Shemesh M, Asher R, Zylberberg E, et al. Viscoelastic properties of a synthetic meniscus implant [J]. J Mech Behav Biomed Mater, 2014, 29(SI): 42-55.
31 Vrancken AC, Madej W, Hannink G, et al. Short term evaluation of an anatomically shaped polycarbonate urethane total meniscus replacement in a goat model [J]. PLoS One, 2015, 10(7): e0133138.
32 Vrancken AC, van Tienen TG, Hannink G, et al. Releasing the circumferential fixation of the medial meniscus does not affect its kinematics [J]. Knee, 2014, 21(6): 1033-1038.
33 Khoshgoftar M, Vrancken AC, van Tienen TG, et al. The sensitivity of cartilage contact pressures in the knee jointto the size and shape of an anatomically shaped meniscal implant [J]. J Biomech, 2015, 48(8): 1427-1435.
34 Vrancken AC, Eggermont F, Van Tienen TG, et al. Functional biomechanical performance of a novel anatomically shaped polycarbonate urethane total meniscus replacement [J]. Knee Surg Sports Traumatol Arthrosc, 2016, 24(5): 1485-1494.
35 Vrancken ACT, Hannink G, Madej W, et al. In vivo performance of a novel, anatomically shaped, total meniscal prosthesis made of polycarbonate urethane: a 12-Month evaluation in goats [J]. Am J Sports Med, 2017, 45(12): 2824-2834.
36 Verdonk R, Verdonk P, Huysse W, et al. Tissue ingrowth after implantation of a novel, biodegradable polyurethane scaffold for treatment of partial meniscal lesions [J]. Am J Sports Med, 2011, 39(4): 774-782.
37 Bulgheroni E, Grassi A, Campagnolo M, et al. Comparative study of collagen versus Synthetic-Based meniscal scaffolds in treating meniscal deficiency in young active population [J]. Cartilage, 2016, 7(1): 29-38.
38 Hoburg A, Von Roth P, Roy-Ali S, et al. Biomechanical performance of the Actifit(A (R)) scaffold is significantly improved by selection of irrigation fluid [J]. Arch Orthop Trauma Surg, 2018, 138(4): 537-542.
39 Leroy A, Beaufils P, Faivre B, et al. Actifit?polyurethane meniscal scaffold:MRI and functional out comes after a minimum follow-up of 5years [J]. Orthop Traumatol Surg Res, 2017, 103(4): 609-614.
40 Tapper JE, Fukushima S, Azuma H, et al. Dynamic in vivo three-dimensional (3D) kinematics of the anterior cruciate ligament/medial collateral ligament transected ovine stifle joint [J]. J Orthop Res, 2008, 26(5): 660-672.
41 Brophy RH, Cottrell J, Rodeo SA, et al. Implantation of a synthetic meniscal scaffold improves joint contact mechanics in a partial meniscectomycadaver model [J]. J Biomed Mater Res A, 2010, 92(3): 1154-1161.
42 王鹏. 半月板组织工程支架材料的研究进展 [J]. 临床骨科杂志, 2010, 13(5): 559-562.