参考文献/References:
[1]Leontaritis N, Hinojosa L, Panchbhavi VK. Arthroscopically detected intraarticular lesions associated with acute ankle fractures.J Bone Joint Surg Am,2009,91(2):333-339.
[2]郭秦炜,胡跃林,焦晨,等.踝关节距骨骨软骨损伤的影像学及关节镜下表现.中华关节外科杂志(电子版),2010,4(6):723-728.
[3]Fernández á, Poggio D, Llusá M, et al.Graphic representation of intraosseous and extraosseous talus blood supply. Illustrated anatomy. Rev Esp Cir Ortop Traumatol,2022,66(5):341-347.
[4]Berndt AL, Harty M. Transchondral fractures (osteochondritis dissecans) of the talus. J Bone Joint Surg Am,1959,41-A:988-1020.
[5]Loomer R, Fisher C, LloydSmith R, et al. Osteochondral lesions of the talus. Am J Sports Med,1993,21(1):13-19.
[6]Hepple S, Winson IG, Glew D. Osteochondral lesions of the talus: a revised classification.Foot Ankle Int,1999,20(12):789-793.
[7]Mintz DN, Tashjian GS, Connell DA, et al. Osteochondral lesions of the talus: A new magnetic resonance grading system with arthroscopic correlation. Arthroscopy,2003,19(4):353-359.
[8]Dombrowski ME, Yasui Y, Murawski CD, et al. Conservative management and biological treatment strategies: proceedings of the international consensus meeting on cartilage repair of the ankle. Foot Ankle Int,2018,39(1 Suppl):9S-15S.
[9]Powers RT, Dowd TC, Giza E. Surgical treatment for osteochondral lesions of the talus. Arthroscopy,2021,37(12):3393-3396.
[10]Rak Choi Y, Soo Kim B, Kim YM, et al. Internal fixation of osteochondral lesion of the talus involving a large bone fragment. Am J Sports Med,2021,49(4):1031-1039.
[11]Haraguchi N, Shiratsuchi T, Ota K, et al. Fixation of the osteochondral talar fragment yields good results regardless of lesion size or chronicity. Knee Surg Sports Traumatol Arthrosc,2020,28(1):291-297.
[12]Rikken QGH, Favier BJC, Dahmen J, et al. Open liftdrillfillfix for medial osteochondral lesions of the talus: surgical technique. Oper Orthop Traumatol,2024,36(2):132-144.
[13]Rikken QGH, Altink JN, Dahmen J, et al. Sustained clinical success at 7year followup after arthroscopic LiftDrillFillFix(LDFF) of primary osteochondral lesions of the talus. Knee Surg Sports Traumatol Arthrosc,2023,31(5):1978-1985.
[14]Nakasa T, Ikuta Y, Tsuyuguchi Y, et al. MRI tracking of the effect of bioabsorbable pins on bone marrow edema after fixation of the osteochondral fragment in the talus. Foot Ankle Int,2019,40(3):323-329.
[15]Guelfi M, DiGiovanni CW, Calder J, et al. Large variation in management of talar osteochondral lesions among foot and ankle surgeons: results from an international survey. Knee Surg Sports Traumatol Arthrosc,2021,29(5):1593-1603.
[16]Gianakos AL, Yasui Y, Hannon CP, et al. Current management of talar osteochondral lesions. World J Orthop,2017,8(1):12-20.
[17]Shimozono Y, Hurley ET, Yasui Y, et al. The presence and degree of bone marrow edema influence midterm clinical outcomes after microfracture for osteochondral lesions of the talus. Am J Sports Med,2018,46(10):2503-2508.
[18]Choi WJ, Park KK, Kim BS, et al. Osteochondral lesion of the talus: is there a critical defect size for poor outcome? Am J Sports Med,2009,37(10):1974-1980.
[19]Aurich M, Albrecht D, Angele P, et al. Treatment of osteochondral lesions in the ankle: a guideline from the Group" Clinical Tissue Regeneration" of the German Society of Orthopaedics and Traumatology (DGOU). Z Orthop Unfall,2017,155(1):92-99.
[20]Ramponi L, Yasui Y, Murawski CD, et al. Lesion size is a predictor of clinical outcomes after bone marrow stimulation for osteochondral lesions of the talus: a systematic review. Am J Sports Med,2017,45(7):1698-1705.
[21]Jungesblut OD, BergerGroch J, Hoffmann M, et al. Electromagnetic navigation reduces radiation exposure for retrograde drilling in osteochondrosis dissecans of the talus. BMC Musculoskelet Disord,2021,22(1):135.
[22]Krner D, Gonser CE, Dbele S, et al. Reoperation rate after surgical treatment of osteochondral lesions of the talus in paediatric and adolescent patients. J Orthop Surg Res,2021,16(1):187.
[23]Shimozono Y, Brown AJ, Batista JP, et al. Subchondral pathology: proceedings of the international consensus meeting on cartilage repair of the ankle. Foot Ankle Int,2018,39(1 Suppl):48S-53S.
[24]Anders S, Lechler P, Rackl W, et al. Fluoroscopyguided retrograde core drilling and cancellous bone grafting in osteochondral defects of the talus. Int Orthop,2012,36(8):1635-1640.
[25]Huber T, Schwertner A, Breuer R, et al. Retrograde drilling, ossoscopy, and autologous bone grafting: An alternative technique for treatment of osteochondral lesion of the talus stage 2 and 3 in adults. Foot Ankle Int,2023,44(6):488-496.
[26]Wixted CM, Dekker TJ, Adams SB. Particulated juvenile articular cartilage allograft transplantation for osteochondral lesions of the knee and ankle.Expert Rev Med Devices,2020,17(3):235-244.
[27]Shimozono Y, Hurley ET, Myerson CL, et al. Good clinical and functional outcomes at midterm following autologous osteochondral transplantation for osteochondral lesions of the talus. Knee Surg Sports Traumatol Arthrosc,2018,26:3055-3062.
[28]Wan DD, Huang H, Hu MZ, et al. Results of the osteochondral autologous transplantation for treatment of osteochondral lesions of the talus with harvesting from the ipsilateral talar articular facets. Int Orthop,2022,46(7):1547-1555.
[29]Shimozono Y, Seow D, Yasui Y, et al. Kneetotalus donorsite morbidity following autologous osteochondral transplantation: a metaanalysis with bestcase and worstcase analysis. Clin Orthop Relat Res,2019,477(8):1915-1931.
[30]Winkler PW, Geyer S, Walzl D, et al. Favorable longterm clinical and radiologic outcomes with high survivorship after autologous osteochondral transplantation of the talus. Knee Surg Sports Traumatol Arthrosc,2023,31(6):2166-2173.
[31]Gaul F, Tírico LEP, McCauley JC, et al. Osteochondral allograft transplantation for osteochondral lesions of the talus: midterm followup. Foot Ankle Int,2019,40(2):202-209.
[32]ElRashidy H, Villacis D, Omar I, et al. Fresh osteochondral allograft for the treatment of cartilage defects of the talus: a retrospective review. J Bone Joint Surg Am,2011,93(17):1634-1640.
[33]Aldawsari K, Alrabai HM, Sayed A, et al. Role of particulated juvenile cartilage allograft transplantation in osteochondral lesions of the talus: A systematic review. Foot Ankle Surg,2021,27(1):10-14.
[34]Butler JJ, Rizla MRM, Egol AJ, et al. Particulated juvenile cartilage allograft for the treatment of osteochondral lesions of the talus is associated with a high complication rate and a high failure rate at shortterm followup: A systematic review. Knee Surg Sports Traumatol Arthrosc,2024,32(3):529-541.
[35]Nguyen K, Cooperman S, Ng A. Osteochondral injuries of the talus. Clin Podiatr Med Surg,2024,41(3):437-450.
[36]Baums MH, Schultz W, Kostuj T, et al. Cartilage repair techniques of the talus: An update. World J Orthop,2014,5(3):171-179.
[37]LópezAlcorocho JM, GuillénVicente I, RodríguezIigo E, et al. Highdensity autologous chondrocyte implantation as treatment for ankle osteochondral defects. Cartilage,2021,12(3):307-319.
[38]Weigelt L, Hartmann R, Pfirrmann C, et al. Autologous matrixinduced chondrogenesis for osteochondral lesions of the talus: a clinical and radiological 2to 8year followup study. Am J Sports Med,2019,47(7):1679-1686.
[39]Migliorini F, Maffulli N, Baroncini A, et al. Matrixinduced autologous chondrocyte implantation versus autologous matrixinduced chondrogenesis for chondral defects of the talus: a systematic review. Br Med Bull,2021,138(1):144-154.
[40]Jantzen C, Ebskov LB, Johansen JK. AMIC procedure for treatment of osteochondral lesions of talus-A systematic review of the current literature. J Foot Ankle Surg,2022,61(4):888-895.
[41]袁毅,王涛,周兵华,等.自体胫骨带骨膜骨移植治疗距骨内侧骨软骨损伤.中国运动医学杂志,2018,37(4):282-286.
[42]于胜文,常锦磊,纪金斗,等.带骨膜髂骨移植治疗距骨骨软骨损伤13例疗效分析.中国中医骨伤科杂志,2020,28(4):72-75.
[43]Guo H, Chen Z, Wei Y, et al. Autologous osteoperiosteal transplantation for the treatment of large cystic talar osteochondral lesions. Orthop Surg,2023,15(1):103-110.
[44]Basciani S, Longo UG, Papalia GF, et al. Arthroscopic microfracture and associated techniques in the treatment of osteochondral lesions of the talus: A systematic review and metanalysis. Foot Ankle Surg,2024,30(3):219-225.
[45]Huang M, Li Y, Liao C, et al. Microfracture surgery combined with plateletrich plasma injection in treating osteochondral lesions of talus: A system review and update meta analysis. Foot Ankle Surg,2024, 30(1):21-26.
[46]Klein C, Dahmen J, Emanuel KS, et al. Limited evidence in support of bone marrow aspirate concentrate as an additive to the bone marrow stimulation for osteochondral lesions of the talus: a systematic review and metaanalysis. Knee Surg Sports Traumatol Arthrosc,2023,31(12):6088-6103.
[47]Wang W, Wang X, Wang Y, et al. Clinical study of autologous cartilage transplantation based on nanohydroxyapatite in the treatment of talar osteochondral injury. J Nanosci Nanotechnol,2021,21(2):1250-1258.
[48]Albano D, Martinelli N, Bianchi A, et al. Clinical and imaging outcome of osteochondral lesions of the talus treated using autologous matrixinduced chondrogenesis technique with a biomimetic scaffold. BMC Musculoskelet Disord,2017,18(1):306.
[49]王连,侯鹏,蒋涛,等.不同来源间充质干细胞在膝关节软骨修复中的临床研究进展.中国骨伤,2017,30(6):581-586.
[50]Im GI, Shin YW, Lee KB. Do adipose tissuederived mesenchymal stem cells have the same osteogenic and chondrogenic potential as bone marrowderived cells? Osteoarthritis Cartilage,2005,13(10):845-853.
[51]Vannini F, Cavallo M, Ramponi L, et al. Return to sports after bone marrowderived cell transplantation for osteochondral lesions of the talus. Cartilage,2017,8(1):80-87.
[52]张春, 刘娴.关节镜下微创踝关节融合术治疗足踝创伤性关节炎的疗效分析.中外医疗,2020,39(2):49-51.
[53]Li GY, Wang C, Wang JZ, et al. Application of three dimensional printed personalized guide plate assisted arthroscopic ankle arthrodesis in the treatment of ankle arthritis. Zhonghua Wai Ke Za Zhi,2024,62(6):572-580.
[54]陈小强,刘建全,赵喆,等.机器人导航辅助下逆向钻孔术治疗距骨软骨损伤的疗效分析.足踝外科电子杂志,2023,10(3):43-48.
[55]吴潘, 裴卓, 曾文.间质干细胞用于组织工程软骨分化的优化体系.中华骨科杂志,2020,40(4):244-256.