切换至 "中华医学电子期刊资源库"

中华关节外科杂志(电子版) ›› 2024, Vol. 18 ›› Issue (05) : 658 -671. doi: 10.3877/ cma.j.issn.1674-134X.2024.05.015

综述

全膝关节置换术后胫股关节脱位的研究进展
郭艳波1,2, 马亮1, 李刚1,2,(), 阎伟1, 骆帝1, 岳亮1, 吴伟山1   
  1. 1.250014 济南,山东中医药大学附属医院骨科
    2.250355 济南,山东中医药大学第一临床医学院
  • 收稿日期:2024-07-19 出版日期:2024-10-01
  • 通信作者: 李刚
  • 基金资助:
    国家自然科学基金资助项目(82074453)山东省自然科学基金(ZR2021MH071)泰山学者工程专项经费资助项目(tsqn202211350)齐鲁卫生与健康杰出青年人才培养工程山东省中医药高层次培育项目学科带头人项目

Progress on tibiofemoral dislocation after total knee arthroplasty

Yanbo Guo1,2, Liang Ma1, Gang Li1,2,(), Wei Yan1, Di Luo1, Liang Yue1, Weishan Wu1   

  1. 1.Department of Orthopedics, Affiliated Hospital of Shandong University of Traditional Chinese Medicine, Jinan 250014, China
    2.The First Clinical Medical School, Shandong University of Traditional Chinese Medicine, Jinan 250355, China
  • Received:2024-07-19 Published:2024-10-01
  • Corresponding author: Gang Li
引用本文:

郭艳波, 马亮, 李刚, 阎伟, 骆帝, 岳亮, 吴伟山. 全膝关节置换术后胫股关节脱位的研究进展[J]. 中华关节外科杂志(电子版), 2024, 18(05): 658-671.

Yanbo Guo, Liang Ma, Gang Li, Wei Yan, Di Luo, Liang Yue, Weishan Wu. Progress on tibiofemoral dislocation after total knee arthroplasty[J]. Chinese Journal of Joint Surgery(Electronic Edition), 2024, 18(05): 658-671.

尽管膝关节置换术远期生存率和疗效显著,全膝关节置换术后各种原因所致的翻修仍然不可忽视。与此同时,随着人口老龄化,人的平均预期寿命远超假体使用寿命,医生需要应对不断增长的全膝关节翻修术需求增加的挑战。膝关节置换术后不稳定的发生率显著增长,脱位事件也不断见诸临床。基于此,本文系统性回顾了目前膝关节置换术后发生胫股关节脱位的相关文献,对其诊断、病因、治疗等方面研究展开综述,以期能够提高面对这种罕见但灾难性事件的临床救治能力,最大限度地提高治疗效果,改善临床预后和降低可能的翻修风险提供帮助。

While the long-term survival and outcomes of total knee arthroplasty are remarkable,revisions due to a variety of reasons cannot be ignored. At the same time, as the population is aging and the average life expectancy of a human being far exceeds the life expectancy of a prosthesis, the challenge of rising demand for revisions needs to be addressed. The incidence of instability after total knee arthroplasty has been growing significantly, and dislocation events continue to be observed in the clinic. Based on all these, this article systematically reviewed the current literature with regard to dislocations of the tibiofemoral joints following total knee arthroplasty, and provided an overview of the diagnostic, etiologic, and therapeutic research, with the aim of improving the ability to face this rare but catastrophic clinical episode, as well as to be able to maximize the therapeutic outcome, improve the clinical prognosis, and help to reduce the risk of possible revisions.

续表1
Table 1 Literatures on anterior dislocation of the tibiofemoral joint following TKA
作者(发表时间) 年龄(岁) 性别 侧别 是否首次脱位 脱位时间(距离初次置换) 初次置换假体类型 创伤机制 合并症 治疗方式 随访时间 功能
Hara[44](2022) 72 / 首次 1周 PS:Persona(Zimmer Biomet,美国) 锻炼时 闭合复位,长腿石膏固定后失败;后行铰链膝翻修术(NexGen,RHK;Zimmer Biomet) 1年 良好
Constantinescu[12](2022) 70 非首次(第三次,前两次闭合复位) 5年 CR 摔倒 血管损伤 闭合复位后呈半脱位,膝关节支具固定 / 不满意(感染)
Kim[7](2021) 56 首次 1d PS 摔倒 切开复位,更换更厚的聚乙烯衬垫,术后长腿夹板伸直位固定 3月 良好
Almoguera-Martinez[45](2021) 77 首次 15年 CR:TC-Plus(Smith&Nephew) 就诊前4月曾摔倒 韧带损伤 就诊时已复位,长腿夹板固定,后改为铰链式支具
4个月后,坐位起身时再次摔倒 血管损伤,韧带损伤 外固定架固定,后转为铰链膝翻修术(RHK,Zimmer) 3年 良好
Berliner[46](2021) 88 首次 10年 CR 非创伤性:铺床时屈膝 血管损伤,韧带损伤 闭合复位外固定架固定 6周 10~90°侧方不稳定
Novotny[47](2021) 75 首次 7年 CR 冰面摔倒 血管损伤 闭合复位后伸直位膝关节支具固定 / 截肢-死亡
Addevico[48](2018) 72 首次 3年 CR 旋转:外翻旋转/过伸损伤 血管神经损伤 闭合复位,石膏屈曲20°位固定 至少5月 不满意
Sato[49](2016) 82 首次 16年 CR:Advantim(Wright Medical Technology) 非创伤性:聚乙烯磨损变薄 翻修手术(仅更换聚乙烯衬垫) 2年 良好
Conti[50](2015) 74 首次 10年 PS(Nexgen,Zimmer,美国) 家中摔伤:不明(ad) 韧带损伤 闭合复位,长腿石膏伸直位固定 1年 0°~100°无不稳定
Ahn[51](2015) 65 首次 8年 CR 冰面摔倒:外旋时过伸 韧带损伤 闭合复位,膝关节支具固定;3月后转为铰链膝翻修手术 不详 0°~110°无不稳定
Armstrong[52](2012) 77 首次 27月 CR:Duracon(Stryker,Mahwah) 患者亲属摔倒时撞到患侧大腿的前方 血管损伤,韧带损伤 闭合复位,膝关节支具固定;2月后转为铰链膝翻修手术 3年 良好
Lee[53](2012) 55 首次 11年 PS(Nexgen,Zimmer,美国) 冰面摔倒 韧带损伤 闭合复位,长腿石膏固定,患者拒绝行翻修手术 9月 欠佳0°~130°内侧和前向不稳定
Yan[54](2010) 89 首次 7年 PS:Insall Burstein Ⅱ prosthesis(Zimmer,美国) 非创伤性 翻修手术:压配式Sigma髁假体(DePuy,美国) 2年 功能良好
作者(发表时间) 年龄(岁) 性别 侧别 是否首次脱位 脱位时间(距离初次置换) 初次置换假体类型 创伤机制 合并症 治疗方式 随访时间 功能
Villanueva[55](2010) 65 / / CR / 血管损伤,神经损伤 翻修手术(PS假体,更厚的聚乙烯衬垫) 6年 功能良好
Aderinto[56](2009) 67 首次 6年 CR(Nexgen,Zimmer,美国) 向前弯腰打开烤箱时 血管损伤,韧带损伤 闭合复位,伸直位夹板固定,后转为外固定架固定 至少6月 功能丧失
Wazir[57](2007) 72 首次 10年 CR 卫生间摔倒:聚乙烯磨损(推测) 闭合复位 1月 功能良好
Tuoheti[58](2004) 52 非首次(1年前曾半脱位,行石膏固定) 11年 Kinemax全膝关节假体(Stryker Howmedica,Osteonics,美国) 聚乙烯磨损,内侧副韧带和髌腱撕脱损伤、继发于后倾角增大的腓骨应力性骨折 翻修手术(Total Stabilizer,Stryker) 21月 功能良好
Mine[59](2004) 66 首次 16月 PS:Nagoya City University-type TKA 摔伤 铰链膝翻修手术 半年 功能良好
Pao[60](2004) 56 首次脱位 11月 CR:MG Ⅱ prostheses(Zimmer,美国) 摔倒 闭合复位,长腿夹板后更换为铰链支具 失访
再次脱位 18周后 再次摔倒 血管和韧带损伤 就诊时已复位 2d后 截肢
Wang[13](1997) 73 首次 3年 CR 非创伤性:后交叉韧带和后囊,聚乙烯磨损 翻修手术(PS假体) 20月 功能良好
68 首次 6年 CR 非创伤性:后交叉韧带和后囊 翻修手术(PS假体) 16月 功能良好
79 首次 6月 CR 术后3月摔伤 翻修手术(PS假体) 12月 功能欠佳
表2 CCK假体膝关节置换术后胫股关节脱位相关文献
Table 2 Literatures on tibiofemoral dislocation after CCK prosthesis knee replacement
表3 膝关节置换术后胫股关节特殊脱位类型有关文献
Table 3 Literatures on special types of tibiofemoral dislocation after TKA
作者(发表时间) 脱位率(%) 年龄(岁) 侧别 脱位时间(距离末次置换时间) 脱位原因 并发症 治疗方式 随访时间 结局 假体类型 脱位方向
Smidt[65](2021) 1 66 18月 骑自行车时摔倒 MCL撕裂 闭合复位膝关节固定 9月 重返运动,稳定无痛 CR(使用超形合度衬垫) 外侧
Ugutmen[66](2008) 1 70 2d 尝试站立和行走时 LCL、弧形韧带和腘绳肌腱撕裂 1.翻修手术,更换更厚的深盘样衬垫
2.韧带修复
3.MCL和外侧支持带松解
14月 ROM:0°~100°,无不稳定 CR 外侧
Sisak[67](2011) 1 73 - 1d 试图爬起床时摔倒 多发韧带损伤(MCL、LCL、PCL、后关节囊和后外侧角结构) 翻修手术,更换为旋转铰链膝关节 1.5月 无辅助下行走,ROM:0°~90° CR 外旋并侧向
Gomez[16](2022) 1 71 5周(反复脱位) 创伤 感染 闭合复位后再次脱位,2期翻修,最终关节融合 - 关节融合 CR 后侧
Athanasiou[17](2021) 1 63 1年(6年) 创伤 感染、假体松动和骨溶解 使用旋转铰链膝关节进行2期翻修,并植入骨水泥和金属垫块 22月 完全无痛的全范围膝关节活动 - 后侧
Ross[68](2014) 3 46 1d(2013年9月-2014年3月)* 步行去卧室 髌腱撕裂 使用旋转铰链植入体翻修,并伸膝装置重建 6月 ROM:轻微的伸膝迟滞到刚过90° - 后外侧
65 -(5月) - 翻修TKA,多孔钽锥柄的铰链式假体 6月 疼痛轻微,僵硬明显,ROM0°~40° - 后侧
60 11年(3月) 摔倒 髌腱撕裂 1.翻修手术,更换为铰链式膝关节
2.重建伸膝装置
12月 轻微疼痛,ROM:伸膝迟滞5°~95° - 后侧
Sierra[11](2019) 1 67 5月 旋转平台自发性180°旋转脱位 PCL撕裂 翻修手术,更换新的旋转平台聚乙烯 - - CR(活动平台) 后侧
Thompson[69](2015) 1 62 4d(反复脱位) 旋转平台自发性180°旋转脱位 - 多次闭合复位后,转为2期翻修手术,更换为限制性更高的假体 12月 全范围活动,无不稳定或疼痛 -(活动平台) 后侧
Lee[70](2014) 1 71 5周 滑倒 - 翻修手术,更换更厚的聚乙烯衬垫 数月 膝上截肢(股动脉完全闭塞) PS(活动平台) 后侧
续表4
Table 4 Literatures on tibiofemoral dislocation after RHK prosthesis knee replacement
作者(发表年度) 脱位率(%) 年龄(岁) 侧别 脱位时间(距末次置换) 脱位原因 翻修期间术中所见 治疗方式 随访时间 结局 假体类型 并发症
Makiev[32](2023) 1 72 18月 无创伤 滑膜广泛肥厚,铰链柱延长装置的螺纹完好无损 闭合复位长腿支具固定,3月后转为翻修手术,更换铰链柱延长杆和聚乙烯 3月 ROM:0°~90° NexGen®
Al Hassan[33](2022) 1 44 5年 试图从低坐位站起 聚乙烯衬垫从胫骨组件上脱落,聚乙烯衬套磨损并断裂 切开复位并翻修(细节不详) - - RT-PLUSTM
Zou[34](2022) 1 72 6月 深屈膝 膝盖在屈曲时极不稳定,聚乙烯衬垫和胫骨聚乙烯衬套断裂 1.闭合复位支具固定
2.1月后再次脱位,转为翻修手术,更换铰链柱套筒和聚乙烯衬垫
3.侧副韧带重建
6月 功能良好 -
Kornilov[35](2020) 6/303(2%) 49 20周 创伤(摔倒) 股骨组件的铰链轴损坏,胫骨聚乙烯衬套破损 1.翻修手术,更换全部股骨组件和胫骨衬套
2.伸膝装置重建
1年 KSS评分同术前 NexGen® 髌腱断裂
66 18月 创伤(摔倒) - 闭合复位石膏固定 1年 髌腱断裂
64 8周 深屈膝 - 1.翻修手术,更换更厚的聚乙烯衬垫
2.伸膝装置重建
1年 髌骨骨折
26 24月 深屈膝 - 1.翻修手术,更换更厚的聚乙烯衬垫
2.髌骨成形术(部分边缘切除术)
1年 慢性伸膝装置功能不全
56 40周 行走时打软腿,无外伤 - 1.翻修手术,更换新的锁销和更厚的聚乙烯衬垫
2.髌骨成形术(部分边缘切除术)
1年 -
75 11周 行走时打软腿,无外伤 - 翻修手术,更换新的锁销 1年 -
Gómez[71](2017) 1 69 2.5年 试图从低坐位站起 铰链股骨组件中的聚乙烯衬套断裂 翻修手术,未更换假体组件;3个月后再次脱位,患者拒绝手术并接受闭合复位。 - 稳定,支具辅助下行走 Rotax FII SA® -
Kearns[72](2017) 2/59(3.4%)* 68 60月 铰链柱延长装置自发性分离脱位 - 翻修手术,更换铰链柱延长装置 2年 ROM:0°~125° NexGen® -
作者(发表年度) 脱位率(%) 年龄(岁) 侧别 脱位时间(距末次置换) 脱位原因 翻修期间术中所见 治疗方式 随访时间 结局 假体类型 并发症
Cavaignac[73](2014) 1 87 1月 铰链柱延长装置螺钉分离 铰链柱延长装置的螺纹、铰链柱和聚乙烯衬垫没有磨损 翻修手术,更换更厚的聚乙烯衬垫和铰链柱延长装置 - - NexGen® -
2周后(再次脱位) 屈曲间隙过大,足够的关节牵伸作用下,铰链柱延长装置脱离胫骨基底 铰链柱延长装置部分完好 1.翻修手术,使用翻修专用的模块化旋转铰链假体(GMRS-MRH®,Stryker)
2.伸膝装置加强
12月 ROM:0°~120° -
Manzano[40](2013) 1 83 1年 在户外行走时摔倒 铰链柱脱落和髌骨侧向脱位 1.翻修手术,更换所有的活动铰链部件和更厚的米的聚乙烯衬垫
2.广泛的侧方松解
1年 良好的活动范围,无并发症 Noiles S-ROM 髌骨脱位
Biswas[74](2012) 1 70 10月 铰链柱锁紧螺钉非创伤性的分离 铰链柱延长装置部分和聚乙烯衬垫,螺纹完好无损 翻修手术,更换更厚的聚乙烯衬垫和新的铰链柱延长装置 2年 预后良好 NexGen® -
Friesenbichler[75](2012) 4/40(10%) 49(平均) - 6/34/36/38月 - 胫骨柱在在圆锥形部分向圆柱形部分移行区断裂 所有病例均更换新的聚乙烯衬垫 - - LPSTM/M.B.T. -
Schwarzkopf[76](2011) 2 61 1月 站立时打软腿 胫骨金属柱断裂 翻修手术,更换更厚的聚乙烯衬垫 1年 日常活动不受限 Noiles S-ROM
68 3月 从楼梯摔倒 胫骨金属柱断裂 翻修手术,更换聚乙烯衬垫,4月后再次翻修 1年 能独立行走 Noiles S-ROM -
Bae[77](2009) 2/9(22.2%) 54 2年 - - 翻修手术,更换更厚的聚乙烯衬垫 - 无脱位 LINK Endo Model -
- - 3月 - - 翻修手术,改为带防脱位机制的Endo RHK型假体 - - -
Pacha-Vicente[78](2008) 2/192(1%) 82 - 5年 脱位前摔倒(10d前) 股骨组件松动和旋转通道内聚乙烯衬套断裂,胫骨防脱位聚乙烯衬垫疲劳失效 翻修手术,更换全部股骨假体组件和新的聚乙烯衬垫 3月 关节融合 LINK Endo Model -
68 - 5年 坐位时腿部下垂 防脱位机制的聚乙烯组件的疲劳失效 翻修手术,更换聚乙烯衬垫 - ROM:0°~90° -
作者(发表年度) 脱位率(%) 年龄(岁) 侧别 脱位时间(距末次置换) 脱位原因 翻修期间术中所见 治疗方式 随访时间 结局 假体类型 并发症
Ward[79](2006) 4/152(2.6%) 75 - 1月 - - - - - Kinematic Ⅱ -
48 - 8月 淋浴时摔倒 - - - - Noiles S-ROM -
68 - 3月 - 聚乙烯柱在中央加固柱的下端断裂 翻修手术,使用定制的胫骨托盘和加固的金属柱 - 膝上截肢 Noiles S-ROM -
68 - 2周 坐位时腿部下垂 旋转轴从其柱-通道中脱离 - 2年 ROM:0°~115° Finn -
Wang[13](2000) 2 57 4月 从椅子上站起来时扭伤膝盖 股骨组件的聚乙烯轴承衬套断裂 翻修手术,使用另一种类型的假体 - - LINK Endo Model -
54 5月 无创伤 翻修手术,使用另一种类型的假体
Crova[80](2000) 6/142(4.2%) - - - - - - - - LINK Endo Model -
表5 旋转铰链膝关节置换术后胫股关节脱位率、生存率相关文献(“巨型假体”除外)
Table 5 Literatures on tibiofemoral dislocation rate and survivorship results after RHK prosthesis knee replacemen(tn‘omegaprostheses')
[1]
Jorgensen NB,McAuliffe M,Orschulok T,et al. Major aseptic revision following total knee replacement: a study of 478,081 total knee replacements from the Australian orthopaedic association national joint replacement registry[J]. J Bone Joint Surg Am,2019,101( 4 ): 302-310.
[2]
Tarazi JM,Chen Z,Scuderi GR,et al. The epidemiology of revision total knee arthroplasty[J]. J Knee Surg,2021,34( 13 ): 1396-1401.
[3]
Mathis DT,Hirschmann MT. Why do knees after total knee arthroplasty fail in different parts of the world?[J]. J Orthop,2020,23: 52-59.
[4]
Hauer G,Rasic L,Klim S,et al. Septic complications are on the rise and aseptic loosening has decreased in total joint arthroplasty: an updated complication based analysis using worldwide arthroplasty registers[J/OL]. Arch Orthop Trauma Surg,2024. DOI: 10.1007/s00402-024-05379-2.
[5]
Schwartz AM,Farley KX,Guild GN,et al. Projections and epidemiology of revision hip and knee arthroplasty in the United States to 2030[J]. J Arthroplasty,2020,35( 6S ): S79-S85.
[6]
王远征. 老年膝骨关节炎置换术后患者脱位及其影响因素[J].中国老年学杂志,2021,41( 12 ): 2543-2546.
[7]
Kim TW,Kang SB,Chang CB,et al. Current trends and projected burden of primary and revision total knee arthroplasty in Korea between 2010 and 2030[J]. J Arthroplasty,2021,36( 1 ): 93-101.
[8]
张文娟,付敏. 2010—2020年中国老年人口的健康状况及其变化趋势——基于人口普查和抽样调查数据的分析[J]. 中国人口科学,2022( 5 ): 17-31,126.
[9]
Healy WL,Della Valle CJ,Iorio R,et al. Complications of total knee arthroplasty: standardized list and definitions of the knee society[J]. Clin Orthop Relat Res,2013,471( 1 ): 215-220.
[10]
Diamond OJ,Doran E,Beverland DE. Spinout/dislocation in mobile-bearing total knee arthroplasty: a report of 26 cases[J]. J Arthroplasty,2018,33( 2 ): 537-543.
[11]
Sierra S,Akalonu C,West K,et al. Spontaneous 180-degree rotatory dislocation of rotating-platform total knee arthroplasty[J/OL]. Case Rep Orthop,2019,2019:2038983. DOI: 10.1155/2019/2038983.
[12]
Constantinescu D,Pavlis W,Berge DV,et al. Anterior prosthetic knee dislocation with acute vascular injury: a case report[J/OL].Ann Med Surg( Lond ),2022,75: 103425. DOI: 10.1016/j.amsu.2022.103425.
[13]
Wang CJ,Wang HE. Dislocation of total knee arthroplasty. A report of 6 cases with 2 patterns of instability[J]. Acta Orthop Scand,1997,68( 3 ): 282-285.
[14]
Insall J,Scott WN,Ranawat CS. The total condylar knee prosthesis.A report of two hundred and twenty cases[J]. J Bone Joint Surg Am,1979,61( 2 ): 173-180.
[15]
Rouquette L,Erivan R,Pereira B,et al. Tibiofemoral dislocation after primary total knee arthroplasty: a systematic review[J]. Int Orthop,2019,43( 7 ): 1599-1609.
[16]
Gomez O,Parikh S,Davis T,et al. Chronic posterior tibiofemoral dislocation of a cruciate retaining total knee arthroplasty in the setting of wernicke-korsakoff syndrome: a case report[J]. J Orthop Case Rep,2022,12( 7 ): 60-65.
[17]
Athanasiou V,Panagopoulos A,Gliatis J,et al. Neglected posterior dislocation septic loosening and prolonged flexion contracture of total knee arthroplasty: a case report[J/OL]. Am J Case Rep,2021,22: e931857. DOI: 10.12659/AJCR.931857.
[18]
Lee HM,Kim JP,Chung PH,et al. Posterior dislocation following revision total knee replacement arthroplasty: a case report and literature analysis[J]. Eur J Orthop Surg Traumatol,2018,28( 8 ):1641-1644.
[19]
Chen JS,Bi AS,Slover JD,et al. The cam-post dislocation in posterior-stabilized total knee arthroplasty A case series[J]. Bull Hosp Jt Dis,2022,80( 4 ): 262-268.
[20]
Hossain S,Ayeko C,Anwar M,et al. Dislocation of Insall-Burstein II modified total knee arthroplasty[J]. J Arthroplasty,2001,16( 2 ):233-235.
[21]
Dubin JA,Muskat A,Westrich GH. Design modifications of the posterior-stabilized knee system may reduce anterior knee pain and complications following total knee replacement[J]. HSS J ®,2020,16( Suppl 2 ): 344-348.
[22]
陈瑱贤,张志峰,高永昌,等. 后稳定型全膝关节假体的骨肌多体动力学研究[J]. 生物医学工程学杂志,2022,39( 4 ): 651-659.
[23]
Koh YG,Son J,Kwon OR,et al. Effect of post-cam design for normal knee joint kinematic,ligament,and quadriceps force in patient-specific posterior-stabilized total knee arthroplasty by using finite element analysis[J/OL]. Biomed Res Int,2018,2018:2438980. DOI: 10.1155/2018/2438980.
[24]
Vertullo CJ,Lewis PL,Lorimer M,et al. The effect on longterm survivorship of surgeon preference for posterior-stabilized or minimally stabilized total knee replacement: an analysis of 63,416 prostheses from the Australian orthopaedic association national joint replacement registry[J]. J Bone Joint Surg Am,2017,99( 13 ):1129-1139.
[25]
Meneghini RM,Stefl MD,Hodge WA,et al. A cam-post mechanism is No longer necessary in modern primary total knee arthroplasty[J].J Knee Surg,2019,32( 8 ): 710-713.
[26]
Li F,Liu N,Li Z,et al. Abnormally high dislocation rate following constrained condylar knee arthroplasty for Valgus knee: a casecontrol study[J/OL]. J Orthop Surg Res,2019,14( 1 ): 268. DOI:10.1186/s13018-019-1325-4.
[27]
Alatassi R,Alattas MH,Koaban S,et al. Posterior dislocation of a constrained total knee arthroplasty: a case report[J]. Ann Med Surg,2018,34: 50-53.
[28]
Houfani F,Mainard D,Rubens-Duval B,et al. Rotating-hinge prosthesis for aseptic revision knee arthroplasty: a multicentre retrospective study of 127 cases with a mean follow-up of five years[J/OL]. Orthop Traumatol Surg Res,2021,107( 3 ): 102855.DOI: 10.1016/j.otsr.2021.102855.
[29]
Rouquette L,Batailler C,Muller B,et al. Early complications and causes of revision after rotating-hinge TKA[J]. Arch Orthop Trauma Surg,2020,140( 1 ): 109-119.
[30]
Rodríguez-Merchán EC. Total knee arthroplasty using hinge joints:indications and results[J]. EFORT Open Rev,2019,4( 4 ): 121-132.
[31]
Friesenbichler J,Leithner A,Glehr M,et al. Evaluation of stability of rotating hinge knee prostheses: a biomechanical study[J/OL].ISRN Orthop,2013,2013: 701693. DOI: 10.1155/2013/701693.
[32]
Makiev KG,Vasios IS,Keskinis A,et al. Atraumatic dislocation of a modern rotating hinge total-knee prosthesis. A rare but devastating complication[J/OL]. Med Eng Phys,2023,117: 103991. DOI:10.1016/j.medengphy.2023.103991.
[33]
Al Hassan MA,Salem OA,Alabsi EJ. Dislocation of rotating hinged knee prostheses in a patient with extensor mechanism dysfunction[J/OL]. Cureus,2022,14( 4 ): e24091. DOI: 10.7759/cureus.24091.
[34]
邹华强,孙卫平. 旋转铰链全膝置换假体脱位1例报告[J]. 中国矫形外科杂志,2022,30( 15 ): 1438-1440.
[35]
Kornilov N,Wagenaar FC,Kuliaba T,et al. Dislocation of modern design rotating hinge total knee arthroplasty: case series and narrative review[J]. Acta Orthop Belg,2020,86( 2 ): 303-312.
[36]
张亮,周一新,周乙雄. 全膝关节置换术后胫股关节不稳定[J/CD]. 中华关节外科杂志( 电子版 ),2011,5( 1 ): 92-98.
[37]
Arnout N,Vandenneucker H,Bellemans J. Posterior dislocation in total knee replacement: a price for deep flexion?[J]. Knee Surg Sports Traumatol Arthrosc,2011,19( 6 ): 911-913.
[38]
Al-Jabri T,Brivio A,Maffulli N,et al. Management of instability after primary total knee arthroplasty: an evidence-based review[J/OL].J Orthop Surg Res,2021,16( 1 ): 729. DOI: 10.1186/s13018-021-02878-5.
[39]
Encinas-Ullán CA,Gómez-Cardero P,Ruiz-Pérez JS,et al.Dislocation of rotating-hinge total knee arthroplasty[J]. EFORT Open Rev,2021,6( 2 ): 107-112.
[40]
Manzano G,Schwarzkopf R. Posterior dislocation of the hinge-post extension in a rotating hinge total knee prosthesis[J/OL]. Case Rep Orthop,2013,2013: 756538. DOI: 10.1155/2013/756538.
[41]
Tegethoff JD,Walker-Santiago R,Ralston WM,et al. Isolated liner revision for total knee arthroplasty instability: a road that should remain less taken[J]. J Knee Surg,2022,35( 8 ): 904-908.
[42]
Green CC,Haidukewych GJ. Isolated polyethylene insert exchange for flexion instability after primary total knee arthroplasty demonstrated excellent results in properly selected patients[J]. J Arthroplasty,2020,35( 5 ): 1328-1332.
[43]
Longo UG,Candela V,Pirato F,et al. Midflexion instability in total knee arthroplasty: a systematic review[J]. Knee Surg Sports Traumatol Arthrosc,2021,29( 2 ): 370-380.
[44]
Hara J,Maeyama A,Ishimatsu T,et al. Acute anterior dislocation in a total knee arthroplasty patient with a history of sarcoma resection[J]. Arthroplast Today,2022,13: 76-81.
[45]
Almoguera-Martinez A,Godinho-Soares C,Calcedo Bernal V,et al.Anterior tibiofemoral dislocation after total knee arthroplasty: a case report and literature review[J]. Chin J Traumatol,2022,25( 4 ):237-241.
[46]
Berliner ZP,Novikov D,Ergin C,et al. Knee-spanning external fixation for recurrent traumatic anterior prosthetic knee dislocation with associated vascular injury[J]. Arthroplast Today,2021,10:160-165.
[47]
Novotny T,Vanaskova E,Soukup J. Rare case of traumatic anterior knee dislocation of total knee arthroplasty with a serious neurovascular injury[J]. Arthroplast Today,2021,10: 171-174.
[48]
Addevico F,Nucci AM,Rosati M,et al. Traumatic anterior dislocation of a prosthetic knee,from trauma to delayed onset of vascular injury[J]. Arthroplast Today,2018,4( 4 ): 407-410.
[49]
Sato Y,Saito M,Akagi R,et al. Complete anterior knee dislocation 16 years after cruciate-retaining total knee arthroplasty[J/OL].Orthopedics,2012,35( 4 ): e585-e588. DOI: 10.3928/01477447-20120327-33.
[50]
Conti A,Camarda L,Mannino S,et al. Anterior dislocation in a total knee arthroplasty: a case report and literature review[J]. J Orthop,2014,12( Suppl 1 ): S130-S132.
[51]
Ahn RS,Brown MJ,Santilli MD. Traumatic anterior knee dislocation after total knee arthroplasty[J]. Arthroplast Today,2015,2( 3 ): 97-99.
[52]
Armstrong L,McQueen DA. Anterior dislocation of a total knee prosthesis with vascular compromise: a case report[J/OL]. JBJS Case Connect,2012,2( 3 ): e29. DOI: 10.2106/JBJS.CC.K.00107.
[53]
Lee SC,Jung KA,Nam CH,et al. Anterior dislocation after a posterior stabilized total knee arthroplasty[J]. J Arthroplasty,2012,27( 2 ): 324.e17-324.e20.
[54]
Yan CH,Chiu KY,Ng FY. Anterior dislocation of insall burstein II total knee arthroplasty secondary to polyethylene tibial post fracture:a case report[J]. J Orthop Surg( Hong Kong ),2010,18( 3 ): 385-388.
[55]
Villanueva M,Ríos-Luna A,Pereiro J,et al. Dislocation following total knee arthroplasty: a report of six cases[J]. Indian J Orthop,2010,44( 4 ): 438-443.
[56]
Aderinto J,Gross AW,Rittenhouse B. Non-traumatic anterior dislocation of a total knee replacement associated with neurovascular injury[J]. Ann R Coll Surg Engl,2009,91( 8 ): 658-659.
[57]
Wazir NN,Shan Y,Mukundala VV,et al. Dislocation after total knee arthroplasty[J]. Singapore Med J,2007,48( 5 ): e138-e140.
[58]
Tuoheti Y,Watanabe W,Itoi E. Anterior dislocation after total knee arthroplasty: a case report[J]. J Orthop Sci,2004,9( 6 ): 643-645.
[59]
Mine T,Tanaka H,Taguchi T,et al. Patellar tendon rupture and marked joint instability after total knee arthroplasty[J]. Arch Orthop Trauma Surg,2004,124( 4 ): 267-271.
[60]
Pao JL,Jiang CC. Above-knee amputation after recurrent dislocations of total knee arthroplasty[J]. J Arthroplasty,2003,18( 1 ):105-109.
[61]
Tsai SW,Chen CF,Wu PK,et al. Revision total knee arthroplasty using a constrained condylar knee prosthesis combined with a posterior stabilized articular surface[J]. J Knee Surg,2018,31( 2 ):197-201.
[62]
Vaishya R,Vijay V,Vaish A. Dislocation of a constrained total knee arthroplasty with patellar tendon rupture after trivial trauma[J].Chin J Traumatol,2015,18( 4 ): 241-244.
[63]
Hagedorn J,Levine BR. Revision surgery for a dislocated constrained total knee arthroplasty[J/OL]. Orthopedics,2012,35( 7 ):e1099-e1103. DOI: 10.3928/01477447-20120621-30.
[64]
Lachiewicz PF,Soileau ES. Ten-year survival and clinical results of constrained components in primary total knee arthroplasty[J]. J Arthroplasty,2006,21( 6 ): 803-808.
[65]
Smidt K,Dubose M,Shahrdar C. Traumatic lateral knee dislocation of a well-functioning total knee arthroplasty: a case of medial collateral ligament rupture[J]. Arthroplast Today,2021,11: 168-172.
[66]
Ugutmen E,Ozkan K,Unay K,et al. Lateral dislocation of the knee joint after total knee arthroplasty: a case report[J/OL]. Cases J,2008,1( 1 ): 75. DOI: 10.1186/1757-1626-1-75.
[67]
Sisak K,Lloyd J,Fiddian N. Multi-ligament instability after early dislocation of a primary total knee replacement - case report[J].Knee,2011,18( 1 ): 59-61.
[68]
Ross JP,Brown NM,Levine BR. Chronic knee dislocation after total knee arthroplasty[J/OL]. Orthopedics,2015,38( 12 ): e1155-e1159. DOI: 10.3928/01477447-20151123-07.
[69]
Thompson SF,Peterson BE,Aggarwal A. Acute,recurrent total knee dislocation: polyethylene dislocation and malreduction[J].Arthroplast Today,2015,1( 1 ): 7-10.
[70]
Lee HM,Kim YS,Kim JP. 180° rotatory dislocation of the rotating platform of a posterior-stabilized mobile-bearing knee prosthesis;possible complication after closed reduction of a posterior dislocation-a case report[J]. Knee,2014,21( 1 ): 322-324.
[71]
Gómez DJ,Garabano G,Senes S,et al. Dislocation of hinged knee prosthesis[J/OL]. Rev Asoc Argent Ortop Traumatol,2017,82( 4 ):294-298. https: //doi.org/10.15417/529.
[72]
Kearns SM,Culp BM,Bohl DD,et al. Rotating hinge implants for complex primary and revision total knee arthroplasty[J]. J Arthroplasty,2018,33( 3 ): 766-770.
[73]
Cavaignac E,Tricoire JL,Pailhé R,et al. Recurring intraprosthetic dislocation of rotating-hinge total knee prosthesis. Effect of implant design on intrinsic stability[J]. Orthop Traumatol Surg Res,2014,100( 7 ): 835-837.
[74]
Biswas D,Haughom B,Mayle RE Jr,et al. Case report: Failure of rotating-hinge total knee prosthesis by disengagement of the hingepost extension[J]. Clin Orthop Relat Res,2013,471( 4 ): 1389-1392.
[75]
Friesenbichler J,Schwarzkopf R,Sadoghi P,et al. Failure rate of a rotating hinge knee design due to yoke fracture of the hinged tibial insert: a retrospective data analysis and review of the literature[J].Int Orthop,2012,36( 5 ): 993-998.
[76]
Schwarzkopf R,Chaudhry S,Kummer FJ,et al. Failure of the tibial insert in a rotating hinge total knee arthroplasty[J]. J Arthroplasty,2011,26( 6 ): 977.e5-977.e8.
[77]
Bae DK,Song SJ,Yoon KH,et al. Long-term outcome of total knee arthroplasty in Charcot joint: a 10- to 22-year follow-up[J]. J Arthroplasty,2009,24( 8 ): 1152-1156.
[78]
Pacha-Vicente D,Malik A,Castellet-Feliu E,et al. Dislocation of rotating-hinge knee prostheses with antidislocation mechanism[J]. J Arthroplasty,2008,23( 2 ): 299-303.
[79]
Ward WG,Haight D,Ritchie P,et al. Dislocation of rotating hinge knee prostheses. A report of four cases[J]. J Bone Joint Surg Am,2005,87( 5 ): 1108-1112.
[80]
Crova M,Cenna E,Olivero C. Rotating knee prosthesis. Surface or hinge replacement?[J]. Orthopade,2000,29( Suppl 1 ):S43-S44.
[81]
Farid YR,Thakral R,Finn HA. Intermediate-term results of 142 single-design,rotating-hinge implants: frequent complications may not preclude salvage of severely affected knees[J]. J Arthroplasty,2015,30( 12 ): 2173-2180.
[82]
Sanguineti F,Mangano T,Formica M,et al. Total knee arthroplasty with rotating-hinge endo-model prosthesis: clinical results in complex primary and revision surgery[J]. Arch Orthop Trauma Surg,2014,134( 11 ): 1601-1607.
[83]
Bistolfi A,Lustig S,Rosso F,et al. Results with 98 Endo-Modell rotating hinge prostheses for primary knee arthroplasty[J/OL].Orthopedics,2013,36( 6 ): e746-e752. DOI: 10.3928/01477447-20130523-19.
[84]
Baker P,Critchley R,Gray A,et al. Mid-term survival following primary hinged total knee replacement is good irrespective of the indication for surgery[J]. Knee Surg Sports Traumatol Arthrosc,2014,22( 3 ): 599-608.
[85]
Joshi N,Navarro-Quilis A. Is there a place for rotating-hinge arthroplasty in knee revision surgery for aseptic loosening?[J]. J Arthroplasty,2008,23( 8 ): 1204-1211.
[86]
Petrou G,Petrou H,Tilkeridis C,et al. Medium-term results with a primary cemented rotating-hinge total knee replacement. A 7- to 15-year follow-up[J]. J Bone Joint Surg Br,2004,86( 6 ): 813-817.
[1] 陈晓玲, 钟永洌, 刘巧梨, 李娜, 张志奇, 廖威明, 黄桂武. 超高龄髋膝关节术后谵妄及心血管并发症风险预测[J]. 中华关节外科杂志(电子版), 2024, 18(05): 575-584.
[2] 马桥桥, 张传开, 郭开今, 蒋涛, 王子豪, 刘勇, 郝亮. 可降解止血粉减少初次全膝关节置换术失血量的研究[J]. 中华关节外科杂志(电子版), 2024, 18(05): 585-589.
[3] 刘鹏, 罗天, 许珂媛, 邓红美, 李瑄, 唐翠萍. 八段锦对膝关节炎疗效的初步步态分析[J]. 中华关节外科杂志(电子版), 2024, 18(05): 590-595.
[4] 李焕玺, 何淳诺, 田志敏, 周胜虎, 吴昊越, 张浩强. 全膝关节置换术后股骨远端假体周围骨折治疗现状[J]. 中华关节外科杂志(电子版), 2024, 18(05): 630-637.
[5] 王相迎, 杨长生, 曲铁兵. 固定平台单髁置换假体合适位置的研究进展[J]. 中华关节外科杂志(电子版), 2024, 18(05): 638-645.
[6] 苏介茂, 齐岩松, 王永祥, 魏宝刚, 马秉贤, 张鹏飞, 魏兴华, 徐永胜. 关节镜手术在早中期膝骨关节炎治疗的应用进展[J]. 中华关节外科杂志(电子版), 2024, 18(05): 646-652.
[7] 谢佳乐, 李琦, 芦升升, 姜劲松. 内侧膝骨关节炎伴胫股关节冠状半脱位的手术治疗[J]. 中华关节外科杂志(电子版), 2024, 18(05): 653-657.
[8] 杨滢甄, 黄子荣, 梁家敏, 黄晓芳, 胡艳, 朱伟民. 膝关节前交叉韧带重建术前康复治疗的研究进展[J]. 中华关节外科杂志(电子版), 2024, 18(04): 538-544.
[9] 庄若语, 杭明辉, 李文华, 张霆, 侯炜. 膝骨关节炎半定量磁共振评分研究进展[J]. 中华关节外科杂志(电子版), 2024, 18(04): 545-552.
[10] 丁莹莹, 宋恺, 金姬延, 田华. 机器人辅助膝髋关节置换术后精细化临床护理[J]. 中华关节外科杂志(电子版), 2024, 18(04): 553-557.
[11] 孔德铭, 刘铮, 李睿, 钱文伟, 王飞, 蔡道章, 柴伟. 人工智能辅助全髋关节置换三维术前规划准确性评价[J]. 中华关节外科杂志(电子版), 2024, 18(04): 431-438.
[12] 赵飞鸿, 陈颖杰, 林静芳, 郑晓春, 廖燕凌. 超声引导下周围神经阻滞对髋膝关节置换术后恢复的影响[J]. 中华关节外科杂志(电子版), 2024, 18(04): 457-468.
[13] 茹江英, 廖启宇, 温国洪, 潘思华, 刘栋, 张皓琛, 牛云飞. 直接前方入路和后外侧入路半髋关节置换治疗老年痴呆股骨颈骨折的疗效比较[J]. 中华老年骨科与康复电子杂志, 2024, 10(05): 287-293.
[14] 高广涵, 张耀南, 石磊, 王林, 王飞, 郑子天, 王鸿禹, 郭民政, 薛庆云. 膝骨关节炎患者前交叉韧带功能影像学影响因素分析[J]. 中华老年骨科与康复电子杂志, 2024, 10(05): 301-307.
[15] 于晓光, 秦永辉, 李佳, 贾国兴, 李军, 赵振栓, 刘国彬. 人工单髁置换术治疗膝关节内侧间室骨关节炎合并前交叉韧带功能不良的近期疗效[J]. 中华临床医师杂志(电子版), 2024, 18(04): 337-342.
阅读次数
全文


摘要