期刊文献+

计算机辅助下的全膝关节置换术早期疗效分析 被引量:3

Analysis of early postoperative curative effect for computer-assisted total knee arthroplasty
暂未订购
导出
摘要 目的通过对计算机辅助下的全膝关节置换术与传统膝关节置换术在术后1年的近期疗效对比,探讨计算机辅助下的膝关节置换术的优势。方法 2013年9月至2014年9月将60例患者分成两组,分别进行计算机辅助下的全膝关节置换术(导航组)和传统的全膝关节置换术(传统组)。并对每例患者进行术前、术后1年的KSS评分、WOMAC评分、Oxford评分、下肢全长X线片进行统计分析。结果患者随访时间12~14个月,平均12个月,导航组的下肢机械轴为-0.033°±1.470°,传统组的下肢机械轴为0.600°±2.989°;获得3°以内的内外翻力线的比例分别为86.70%和73.30%,术后KSS评分两组分别为(88.80±3.71)分和(82.63±4.15)分;WOMAC评分为(23.57±3.64)分和(30.00±4.89)分、Oxford评分为(18.53±3.66)分和(21.83±3.99)分,上述4项数据两组间差异均有统计学意义(P〈0.05)。结论通过计算机辅助下的全膝关节置换术,可获得更精确的下肢力线,且临床康复效果更具有优势。 Objective To explore the advantages of computer assisted total knee arthroplasty(TKA)by comparing the postoperative 1year short term effect of the computer assisted TKA and the conventional TKA.Methods A total of 60 patients from September 2013 to September 2014 were randomly divided into two groups and performed TKA by adopting the computer-assisted technology and the conventional technology respectively.The KSS score,WOMAC score,Oxford score and long-leg weight-bearing X-ray before operation and at postoperative 1year were performed for each case and the statistical analysis was conducted.Results All cases were followed up for an average of 12months(12-14months).The mechanical limb axis in the navigation assisted group was-0.033°±1.470°,which in the traditional group was 0.600°±2.989°(t=-1.711,P〈0.05);the proportions of within 3°varus/valgus force lines were 86.70% and 73.30%respectively,the KSS scores were 88.80±3.71 and 82.63±4.15;the postoperative WOMAC scores were 23.57±3.64 and 30.00±4.89respectively;the Oxford scores were 18.53±3.66 and 21.83±3.99,the differences between the two groups were statistically significant(P〈0.005).Conclusion TKA by computer navigation guidance can obtain more accurate lower limb force lines,moreover the navigation group has more advantages in the clinical rehabilitation effect.
出处 《重庆医学》 CAS 北大核心 2016年第9期1206-1209,共4页 Chongqing medicine
关键词 关节成形术 置换 计算机辅助 随访 arthroplasty replacement total computer-assisted follow up
  • 相关文献

参考文献19

  • 1LSer I, Plitz W. Tibial malalignment of mobile-bearing prostheses: a simulator study [ J]. Orthopade, 2003, 32 (4) .. 296-304.
  • 2孙荣彬,徐南伟,周栋.计算机导航辅助下全膝关节置换术早期临床分析[J].中国骨与关节损伤杂志,2009,24(4):298-300. 被引量:4
  • 3Krackow KA, Bayers-Thering M, Phillips MJ, et al. A new technique for determining proper mechanical axis a- lignment during total knee arthroplasty: progress toward computer-assisted TKA [J]. Orthopedics, 1999,22 ( 7 ) .. 698-7O2.
  • 4Bonner T J, Eardley WG, Patterson P, et al. The effect of post-operative mechanical axis alignment on the survival of primary total knee replacements after a follow-up of 15 years[J]. J Bone Joint Surg Br,2011,93(9) : 1217-1222.
  • 5Parratte S, Pagnano MW, Trousdale RT, et al. Eifect of postoperative mechanical axis effect of postoperative me- chanical axis alignment on the fifteen-year survival of modern, cemented total knee replacements [J]. J Bone Joint Surg Am,2010(92) :2143.
  • 6Haaker RG, Stockheim M, Kamp M, et al. Computer-as- sisted navigation increases precision of component place- ment in total knee arthroplasty[J]. Clin Orthop Relat Res, 2005 (433) : 152-159.
  • 7Herndndez-Vaquero D,Suarez-Vazquez A, Sandoval-Gar- cia MA, et al. Computer assistance increases precision of component placement in total knee arthroplasty with Ar- ticular deformity[J]. Clin Orthop Relat Res, 2010 (468) : 1237.
  • 8Martin A, Wohlgenannt O, Prenn M, et al. Imageless navi- gation for TKA increases implantation accuracy[J]. Clin Orthop Relat Res,2007(460):178-184.
  • 9Sparmann M, Wolke B, Czupalla H, et al. Positioning of total knee arthroplasty with and without navigation sup- port. a prospective, randomised study[J]. J Bone Joint Surg Br,2003,85(6) ..830-835.
  • 10Hoffart HE, Langenstein E, Vasak N, et al. A prospective study comparing the functional outcome of computer-as- sisted and conventional total knee replacement[J]. J Bone Joint Surg Br, 2012,94(2) : 194-199.

二级参考文献101

  • 1徐江波,梅仁强,袁宏.全膝关节表面置换治疗严重膝关节畸形[J].临床骨科杂志,2011,14(6):651-653. 被引量:5
  • 2张先龙,邵俊杰,王琦,沈灏,蒋垚.计算机导航辅助下微创人工全膝关节置换的初步经验[J].中华骨科杂志,2006,26(10):654-660. 被引量:14
  • 3Mielke RK, Clemens U, Jens JH, et al. Navigation in knee endoprosthesis implantation: preliminary experiences and prospective comparative study with conventional implantation technique. Z Orthop Ihre Grenzgeb, 2001,139:109
  • 4Decking R, Markmann Y, Fuchs J, et al. Leg axis after computer-navigated total knee arthroplasty: a prospective randomized trial comparing navigated and manual implantation. J Arthroplasty,2005,20:282
  • 5Hart R, Janecek M, Chaker A, et al. Total knee arthroplasty implanted with and without kinematic navigation.Int Orthop ,2003,27:366
  • 6Lotke PA, Ecker ML. Influence of positioning of prosthesisin total knee replacement. J Bone Joint Surg (Am), 1977,59:77
  • 7Mihalko WM, Duquin T, Axelrod JR ,et al. Effect of one- and two-pin reference anchoring systems on marker stability during total knee arthroplasty computer navigation. Comput Aided Surg, 2006, 11:93
  • 8Hart R. Total knee arthroplasty implanted with and without kinematic navigation International Orthopaedics (SICOT), 2003,27:366
  • 9Hollister AM, Jatana S, Singh AK. The axes of rotation of the knee. Clin Orthop, 1993,290:259
  • 10Jerosch J, Peuker E, Philipps B, et al.Interindividual reproducibility in perioperative rotational alignement of femoral components in knee prosthetic surgery using the transepicondylar axis. Knee Surg Sports Traumatol Arthrosc, 2002,10 : 194

共引文献32

同被引文献30

引证文献3

二级引证文献23

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部