[1] 杨志明. 关节损伤 [M]//王亦璁.骨与关节损伤.第4版.北京:人民卫生出版社,2007:383-399. [2] Ganguly K, McRury ID, Goodwin PM, et al. Histopomorphic evaluation of radiofrequency mediated debridement chondroplasty [J]. Open Orthop J, 2010,4:211-220. [3] Caffey S, McPherson E, Moore B, et al. Effects of radiofrequency energy on human articular cartilage: an analysis of 5 systems [J]. Am J Sports Med, 2005, 33(7):1035-1039. [4] Duran N, John E, Orrin H. Histologic analysis of radiofrequency energy chondroplasty [J]. Clin Sports Med, 2002, 21(4):649-661. [5] Kaab MJ , Bail HJ , Rotter A , et al. Monopolar radiofrequency treatment of partial-thickness cartilage defects in the sheep knee joint leads to extended cartilage injury [J] . Am J Sports Med, 2005, 33 (10) :1472-1478. [6] Zhang J, Wang Y, Hou XK, et al. The study of bipolar radiofrequency chondroplasty to cartilage injure of goats [J] . Zhong hua Wai Ke Za Zhi, 2008,46(6):446-449. [7] Voloshin I, Morse KR, Allred CD, et al. Arthroscopic evaluation of radiofrequency chondroplasty of the knee [J] . Am J Sports Med, 2007,35(10):1702-1707. [8] Cetik O, Cift H, Comert B, et al. Risk of osteonecrosis of the femoral condyle after arthroscopic chondroplasty using radiofrequency: a prospective clinical series [J] . Knee Surg Sports Traumatol Arthrosc , 2009,17(1):24-29. [9] 陈康.关节镜下的射频气化仪原理及应用 [J].中国医疗设备,2009,24(9):29-30. [10]Edwards RB, Lu Y, Nho S, et al. Thermal chondroplasty of chondromalacic human cartilage: An ex vivo comparison of bipolar and monopolar radiofrequency devices [J].Am J Sports Med, 2002, 30(1):90-97. [11]Lu Y, Edwards RB, Nho S, et al. Thermal chondroplasty with bipolar and monopolar radiofrequency energy: effect of treatment time on chondrocyte death and surface contouring [J].Arthroscopy, 2002,18(7):779-788. [12]Uthamanthil RK, Edwards RB, Lu Y, et al. In vivo study on the short-term effect of radiofrequency energy on chondromalacic patellar cartilage and its correlation with calcified cartilage pathology in an equine model [J].J Orthop Res, 2006, 24(4):716-724. [13] Edwards RB, Lu Y, Uthamanthil RK, et al. Comparison of mechanical debridement and radiofrequency energy for chondroplasty in an in vivo equine model of partial thickness cartilage injury [J].Osteoarthritis and Cartilage,2007,15(2):169-178. [14] Spahn G, Klinger HM, Muckley T,et al. Four-year results from a randomized controlled study of knee chondroplasty with concomitant medial meniscectomy: mechanical debridement versus radiofrequency chondroplasty [J].Arthroscopy,2010,26(9):373-380. [15] Allen RT , Tasto J P , Cummings J , et al. Meniscal debridement with an arthroscopic radiofrequency wand versus an arthroscopic shaver : comparative effects on menisci and underlying articular cartilage [J]. Arthroscopy ,2006 , 22 (4) :385-393. [16] 孙建华,刘维钢,史晨辉, 等.射频能量在治疗关节软骨退变中对软骨细胞及基质的影响 [J].中国矫形外科杂志,2005, 13(19):1494-1496. [17] 王立勋. 射频能量在治疗关节软骨面不平中对软骨细胞及基质的作用 [J]. 国际骨科学杂志,2004, 25(2):127-128. [18]Kaplan LD, Chu CR, Bradley JP,et al.Recovery of chondrocyte metabolic activity after thermal exposure [J].Am J Sports Med,2003,31(3):392-398. [19]Lu Y, Edwards RB, Nho S, et al.Lavage solution temperature influences depth of chondrocyte death and surface contouring during thermal chondroplasty with temperature-controlled monopolar radiofrequency energy [J].Am J Sports Med, 2002, 30(5):667-673. [20]Good CR, Shindle MK, Griffith MH, et al.Effect of radiofrequency energy on glenohumeral fluid temperature during shoulder arthroscopy [J]. J Bone Joint Surg Am, 2009,91(2):429-434. [21]Bonutti PM, Seyler TM, Delanois RE, et al.Osteonecrosis of the knee after laser or radiofrequency-assisted arthroscopy: treatment with minimally invasive knee arthroplasty [J].J Bone Joint Surg Am, 2006, 88(S3):69-75.
|