icon fsr

文献詳細

雑誌文献

臨床整形外科56巻9号

2021年09月発行

文献概要

特集 膝周囲骨切り術を成功に導く基礎知識

歴史に学ぶ膝周囲骨切り術を成功に導くためのコツ

著者: 近藤英司1

所属機関: 1北海道大学病院スポーツ医学診療センター

ページ範囲:P.1115 - P.1124

文献購入ページに移動
 膝周囲骨切り術の最大の特徴は,関節温存ができる点にあり,これにより関節可動域も温存され,重労働やスポーツへの復帰も可能である.変形性膝関節症に対する膝周囲骨切り術は,高位脛骨骨切り術および大腿骨遠位骨切り術などがある.良好な成績獲得のためには,正しい適応,術前計画,正確な手術手技,後療法が必要であり,歴史からその合併症を学ぶことができる.現在,膝周囲骨切り術には多くの術式があり,新しい知見が多い分野である.本稿では,膝周囲骨切り術を成功に導くためのコツについて述べる.

参考文献

1) Barton JR. Views and treatment of an important fracture of the wrist. Medical Eaminer 1838;1:365-8.
2) Langenbeck B. Die subkutane Osteotomie. Dtsch Klin 1854;6:327-30.
3) Jackson JP. Osteotomy for osteoarthritis of the knee. in Proceedings of the Sheffield Regional Orthopaedic Club. J Bone Joint Surg Br 1958;40:826.
4) Coventry MB. Osteotomy of the upper portion of the tibia for degenerative arthritis of the knee:a preliminary report. J Bone Joint Surg Am 1965;47:984-90.
5) Koshino T. The treatment of spontaneous osteonecrosis of the knee by high tibial osteotomy with and without bone-grafting or drilling of the lesion. J Bone Joint Surg Am 1982;64(1):47-58.
6) Yasuda K, Majima T, Tsuchida T, et al. A ten to 15-year follow-up observation of high tibial osteotomy in medial compartment osteoarthrosis. Clin Orthop Relat Res 1992;(282):186-95.
7) Staubli AE, De Simoni C, Babst R, et al. TomoFix:a new LCP-concept for open wedge osteotomy of the medial proximal tibia--early results in 92 cases. Injury 2003;34(Suppl 2):B55-62.
8) Shelburne KB, Torry MR, Pandy MG. Contributions of muscles, ligaments, and the ground-reaction force to tibiofemoral joint loading during normal gait. J Orthop Res 2006;24(10):1983-90.
9) Amis AA. Biomechanics of high tibial osteotomy. Knee Surg Sports Traumatol Arthrosc 2013;21(1):197-205.
10) Paley D. Principles of Deformity Corrections. Berlin Heidelberg:Springer-Verlag;2002.
11) Nakayama H, Schröter S, Yamamoto C, et al. Large correction in opening wedge high tibial osteotomy with resultant joint-line obliquity induces excessive shear stress on the articular cartilage. Knee Surg Sports Traumatol Arthrosc 2018;26(6):1873-8.
12) Miniaci A, Ballmer FT, Ballmer PM, et al. Proximal tibial osteotomy. A new fixation device. Clin Orthop Relat Res 1989;(246):250-9.
13) Aoki Y, Yasuda K, Mikami S, et al. Inverted V-shaped high tibial osteotomy compared with closing-wedge high tibial osteotomy for osteoarthritis of the knee. Ten-year follow-up result. J Bone Joint Surg Br 2006;88(10):1336-40.
14) Fujisawa Y, Masuhara K, Shiomi S. The effect of high tibial osteotomy on osteoarthritis of the knee. An arthroscopic study of 54 knee joints. Orthop Clin North Am 1979;10(3):585-608.
15) Koshino T, Tsuchiya K. The effect of high tibial osteotomy on osteoarthritis of the knee. Clinical and histological observations. Int Orthop 1979;3(1):37-45.
16) Sasaki T, Yagi T, Monji J, et al. High tibial osteotomy combined with anterior displacement of the tibial tubercle for osteoarthritis of the knee. Int Orthop 1986;10(1):31-40.
17) Coventry MB, Ilstrup DM, Wallrichs SL. Proximal tibial osteotomy. A critical long-term study of eighty-seven cases. J Bone Joint Surg Am 1993;75(2):196-201.
18) Majima T, Yasuda K, Katsuragi R, et al. Progression of joint arthrosis 10 to 15 years after high tibial osteotomy. Clin Orthop Relat Res 2000;(381):177-84.
19) Koshino T, Yoshida T, Ara Y, et al. Fifteen to twenty-eight years' follow-up results of high tibial valgus osteotomy for osteoarthritic knee. Knee 2004;11(6):439-44.
20) Akizuki S, Shibakawa A, Takizawa T, et al. The long-term outcome of high tibial osteotomy:a ten- to 20-year follow-up. J Bone Joint Surg Br 2008;90(5):592-6.
21) Onodera J, Kondo E, Omizu N, et al. Beta-tricalcium phosphate shows superior absorption rate and osteoconductivity compared to hydroxyapatite in open-wedge high tibial osteotomy. Knee Surg Sports Traumatol Arthrosc 2014;22(11):2763-70.
22) Goshima K, Sawaguchi T, Shigemoto K, et al. Patellofemoral osteoarthritis progression and alignment changes after open-wedge high tibial osteotomy do not affect clinical outcomes at mid-term follow-up. Arthroscopy 2017;33(10):1832-9.
23) Tanaka T, Matsushita T, Miyaji N, et al. Deterioration of patellofemoral cartilage status after medial open-wedge high tibial osteotomy. Knee Surg Sports Traumatol Arthrosc 2019;27(4):1347-54.
24) Akiyama T, Osano K, Mizu-Uchi H, et al. Distal tibial tuberosity arc osteotomy in open-wedge proximal tibial osteotomy to prevent patella infra. Arthrosc Tech 2019;8(6):e655-62.
25) Sato D, Kondo E, Yabuuchi K, et al. Assessment of valgus laxity after release of the medial structure in medial open-wedge high tibial osteotomy:an in vivo biomechanical study using quantitative valgus stress radiography. BMC Musculoskel Disord 2019;20(1):481.
26) Han SB, Lee DH, Shetty GM, et al. A “safe zone” in medial open-wedge high tibia osteotomy to prevent lateral cortex fracture. Knee Surg Sports Traumatol Arthrosc 2013;21(1):90-5.
27) Nakamura R, Komatsu N, Fujita K, et al. Appropriate hinge position for prevention of unstable lateral hinge fracture in open wedge high tibial osteotomy. Bone Joint J 2017;99-B(10):1313-8.
28) Takeuchi R, Ishikawa H, Kumagai K, et al. Fractures around the lateral cortical hinge after a medial opening-wedge high tibial osteotomy:a new classification of lateral hinge fracture. Arthroscopy 2012;28(1):85-94.
29) Chun KC, So BJ, Kang HT, et al. Pseudoaneurysm formation due to popliteal artery injury caused by drilling during medial opening wedge high tibial osteotomy. Knee Surg Relat Res 2018;30(4):364-8.
30) Martin R, Birmingham TB, Willits K, et al. Adverse event rates and classifications in medial opening wedge high tibial osteotomy. Am J Sports Med 2014;42(5):1118-26.
31) Yabuuchi K, Kondo E, Onodera J, et al. Clinical outcomes and complications during and after medial open-wedge high tibial osteotomy using a locking plate:a 3- to 7-year follow-up study. Orthop J Sports Med 2020;8(6):2325967120922535.
32) Kondo E, Yasuda K, Yabuuchi K, et al. Inverted V-shaped high tibial osteotomy for medial osteoarthritic knees with severe varus deformity. Arthrosc Tech 2018;7(10):e999-1012.
33) Yasuda K, Kondo E, Ueda D, et al. An acute oblique osteotomy and suture ligation procedure to shorten the fibula in lateral closing-wedge high tibial osteotomy. Arthrosc Tech 2020;9(9):e1299-308.
34) Shoji H, Insall J. High tibial osteotomy for osteoarthritis of the knee with valgus deformity. J Bone Joint Surg Am 1973;55(5):963-73.
35) Coventry MB. Proximal tibial varus osteotomy for osteoarthritis of the lateral compartment of the knee. J Bone Joint Surg Am 1987;69(1):32-8.
36) Coventry MB. Osteotomy about the knee for degenerative and rheumatoid arthritis. J Bone Joint Surg Am 1973;55(1):23-48.
37) Maquet P. The treatment of choice in osteoarthritis of the knee. Clin Orthop Relat Res 1985;(192):108-12.
38) Healy WL, Anglen JO, Wasilewski SA, et al. Distal femoral varus osteotomy. J Bone Joint Surg Am 1988;70(1):102-9.
39) McDermott AG, Finklestein JA, Farine I, et al. Distal femoral varus osteotomy for valgus deformity of the knee. J Bone Joint Surg Am 1988;70(1):110-6.
40) Brinkman J-M, Hurschler C, Staubli AE, et al. Axial and torsional stability of an improved single-plane and a new bi-plane osteotomy technique for supracondylar femur osteotomies. Knee Surg Sports Traumatol Arthrosc 2011;19(7):1090-8.
41) van Heerwaarden R, Najfeld M, Brinkman M, et al. Wedge volume and osteotomy surface depend on surgical technique for distal femoral osteotomy. Knee Surg Sports Traumatol Arthrosc 2013;21(1):206-12.
42) Wylie JD, Jones DL, Hartley MK, et al. Distal femoral osteotomy for the valgus knee:medial closing wedge versus lateral opening wedge:a systematic review. Arthroscopy 2016;32(10):2141-7.
43) Nakayama H, Kanto R, Onishi S, et al. Hinge fracture in lateral closed-wedge distal femoral osteotomy in knees undergoing double-level osteotomy:assessment of postoperative change in rotational alignment using CT evaluation. Knee Surg Sports Traumatol Arthrosc 2020. doi:10.1007/s00167-020-06197-w. Epub ahead of print.
44) Nakamura R, Akiyama T, Takeuchi R, et al. Medial closed wedge distal femoral osteotomy using a novel plate with an optimal compression system. Arthrosc Tech 2021;10(6):e1497-504.

掲載誌情報

出版社:株式会社医学書院

電子版ISSN:1882-1286

印刷版ISSN:0557-0433

雑誌購入ページに移動
icon up

本サービスは医療関係者に向けた情報提供を目的としております。
一般の方に対する情報提供を目的としたものではない事をご了承ください。
また,本サービスのご利用にあたっては,利用規約およびプライバシーポリシーへの同意が必要です。

※本サービスを使わずにご契約中の電子商品をご利用したい場合はこちら