Literature DB >> 8156660

Accuracy of correction of complex lower-extremity deformities by the Ilizarov method.

K D Tetsworth1, D Paley.   

Abstract

Gradual mechanical distraction with the Ilizarov external fixator was used on 28 limbs in 23 patients to correct complex lower-extremity deformities of diverse causes. To determine the accuracy of realignment and deformity correction, the charts and radiographs were reviewed retrospectively. Preoperative long-standing anteroposterior radiographs of the entire lower extremity were compared with those obtained at the most recent follow-up visit. The parameters used to assess accuracy of correction were joint alignment and joint orientation. Alignment was determined by mechanical axis deviation (MAD) and mechanical tibiofemoral angle (mTFA). The preoperative MAD averaged 48 mm and the postoperative MAD 8.6 mm. The preoperative mTFA averaged 16 degrees and the postoperative mTFA 3 degrees. The result of deformity correction from early cases was compared with the result obtained from recent cases. Residual MAD averaged 13.2 mm in the early group and 6.4 mm in the recent group. Residual mTFA averaged 4.7 degrees in the early group and 2.2 degrees in the recent group. Gradual correction by dynamic external fixation can restore alignment and correct complex deformities with great accuracy. These results suggest the accuracy of correction increases with surgical experience.

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Mesh:

Year:  1994        PMID: 8156660

Source DB:  PubMed          Journal:  Clin Orthop Relat Res        ISSN: 0009-921X            Impact factor:   4.176


  12 in total

1.  The reverse planning method for lengthening of the lower limb using a straight intramedullary nail with or without deformity correction. A new method.

Authors:  Rainer Baumgart
Journal:  Oper Orthop Traumatol       Date:  2009-06       Impact factor: 1.154

2.  Clinical value of the Taylor Spatial Frame: a comparison with the Ilizarov and Orthofix fixators.

Authors:  D Dammerer; K Kirschbichler; L Donnan; G Kaufmann; M Krismer; R Biedermann
Journal:  J Child Orthop       Date:  2011-08-19       Impact factor: 1.548

3.  Septic knee from Ilizarov transfixation tibial pin.

Authors:  M A Stevens; T A DeCoster; F Garcia; J J Sell
Journal:  Iowa Orthop J       Date:  1995

4.  The Taylor spatial frame for deformity correction in the lower limbs.

Authors:  Mohamed Fadel; Gamal Hosny
Journal:  Int Orthop       Date:  2005-02-10       Impact factor: 3.075

5.  [Analysis on the characteristics of 837 patients with post-traumatic lower limb deformities from QIN Sihe Orthopaedic Surgery Database between May 25, 1978 and December 31, 2020].

Authors:  Sihe Qin; Baofeng Guo; Xuejian Zheng; Lei Shi; Yilan Wang; Jun Zhao
Journal:  Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi       Date:  2022-08-15

6.  Integrating various common indexes of bony alignment in femoral supracondyle.

Authors:  Chi-Chuan Wu
Journal:  Eur J Orthop Surg Traumatol       Date:  2013-12-01

7.  Correction of post-traumatic lower limb deformities using the Taylor spatial frame.

Authors:  Rudolf Ganger; Christof Radler; Bernhard Speigner; Franz Grill
Journal:  Int Orthop       Date:  2009-07-24       Impact factor: 3.075

8.  Computer-aided design and custom-made guide in corrective osteotomy for complex femoral deformity.

Authors:  Wei Chai; Meng Xu; Guo-Qiang Zhang; Li-Hai Zhang; Wen-Long Gou; Ming Ni; Ji-Ying Chen
Journal:  J Huazhong Univ Sci Technolog Med Sci       Date:  2013-06-17

9.  A comparative study of the correction of femoral deformity between the Ilizarov apparatus and Ortho-SUV Frame.

Authors:  Leonid N Solomin; Dror Paley; Elena A Shchepkina; Victor A Vilensky; Petr V Skomoroshko
Journal:  Int Orthop       Date:  2013-12-28       Impact factor: 3.075

10.  Accuracy of complex lower-limb deformity correction with external fixation: a comparison of the Taylor Spatial Frame with the Ilizarov ring fixator.

Authors:  Hans Michael Manner; Michael Huebl; Christof Radler; Rudolf Ganger; Gert Petje; Franz Grill
Journal:  J Child Orthop       Date:  2006-12-30       Impact factor: 1.548

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