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六足外固定架系统治疗复杂僵硬性足畸形

Complex rigid foot deformity correction with hexapod external fixator system.

机构信息

Department of Orthopedics and Traumatology, TOBB Economy and Technology University, Ankara, Turkey.

Department of Orthopedics and Traumatology, Giresun University, Giresun, Turkey.

出版信息

Int Orthop. 2023 Nov;47(11):2773-2780. doi: 10.1007/s00264-023-05897-5. Epub 2023 Jul 18.

DOI:10.1007/s00264-023-05897-5
PMID:37460652
Abstract

PURPOSE

Complex rigid foot deformities include three-plane deformities and usually presents with poor soft tissue coverage. In the last decades, gradual correction with computer-assisted fixator became an appropriate option for the treatment rigid foot deformities. This study aims to report our experience about treatment of complex foot deformities using Smart Correction fixator system®.

METHODS

We retrospectively analyzed 13 complex rigid foot deformities of ten consecutive patients treated with Smart Correction fixator system® from 2016 to 2020. Primary outcomes were classified as good, fair, and poor according to previously determined criteria. The outcomes were also assessed with The Manchester-Oxford Foot Questionnaire (MOXFQ). Non-parametric analysis (Wilcoxon test) for continuous variables and the Fisher's exact test for categorical variables were used.

RESULTS

Plantigrade foot was achieved in all patients after correction program. Supramalleolar osteotomy was applied in nine feet, midfoot osteotomy was applied in two feet, hindfoot osteotomy was required in one foot, and only soft tissue distraction performed in two feet. Two patients had recurrent deformity managed by further acute corrections. The mean MOXFQ scores improved from 72.7 preoperatively to 24.8 at last follow-up.

CONCLUSIONS

Present study shows that SCF the reliable option for the treatment of complex foot deformities, which also facilitates three-plane correction and concomitant lengthening with gradual soft tissue balance.

摘要

目的

复杂僵硬性足畸形包括三平面畸形,通常伴有软组织覆盖不良。在过去的几十年中,计算机辅助固定器的逐渐矫正已成为治疗僵硬性足畸形的合适选择。本研究旨在报告我们使用 Smart Correction 固定器系统®治疗复杂足畸形的经验。

方法

我们回顾性分析了 2016 年至 2020 年期间使用 Smart Correction 固定器系统®治疗的 10 例连续患者的 13 例复杂僵硬性足畸形。根据先前确定的标准,主要结果分为良好、一般和差。使用曼彻斯特-牛津足部问卷(MOXFQ)评估结果。连续变量采用非参数分析(Wilcoxon 检验),分类变量采用 Fisher 确切检验。

结果

所有患者在矫正计划后均获得平足。9 只脚行踝上截骨术,2 只脚行中跗骨截骨术,1 只脚行跟骨截骨术,2 只脚仅行软组织牵伸术。2 例患者因复发畸形而行进一步急性矫正。MOXFQ 评分从术前的 72.7 分平均改善至末次随访时的 24.8 分。

结论

本研究表明,SCF 是治疗复杂足畸形的可靠选择,它还便于三平面矫正和同时进行逐渐的软组织平衡延长。

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Knee. 2021 Oct;32:159-165. doi: 10.1016/j.knee.2021.08.014. Epub 2021 Sep 4.
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Cross-cultural adaptation, validity and reliability of Turkish version of Oxford Ankle Foot Questionnaire for children with congenital talipes equinovarus.土耳其版牛津踝关节足畸形问卷用于先天性马蹄内翻足儿童的跨文化适应性、效度和信度。
Foot Ankle Surg. 2021 Jun;27(4):439-442. doi: 10.1016/j.fas.2020.06.002. Epub 2020 Jun 12.
3
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Surgical Correction of Rigid Equinovarus Contracture Utilizing Extensive Soft Tissue Release.采用广泛软组织松解术对僵硬性马蹄内翻挛缩进行手术矫正。
Clin Podiatr Med Surg. 2016 Jan;33(1):139-52. doi: 10.1016/j.cpm.2015.06.009. Epub 2015 Aug 20.
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One-stage reconstruction of complex lower extremity deformity combining Ilizarov external fixation and sural neurocutaneous flap.
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