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Calcanisation of tibia using Ilizarov fixator in crush injuries of hindfoot: a new method

机译:使用Ilizarov固定器对胫骨进行钙化处理:后足挤压伤:一种新方法

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摘要

Crush injuries of the foot are one of the most difficult and challenging tasks for a trauma surgeon to manage in terms of limb salvage and provision of a painless functional foot. Injuries to the foot, especially the hindfoot, account for almost 24.6% of all the warfare injuries in Afghanistan, of which more than 70% end in amputation for various reasons. We devised a method using the principles of Ilizarov’s distraction osteosynthesis to salvage limbs with bony defects in the hindfoot which otherwise were candidates for amputation. The procedure is done in two stages. Initially, the ring fixator is applied for the soft tissue reconstruction and infection control, and the next stage consists of percutaneous “inverted L”-shaped osteotomy in the posterior half of the lower tibia. The study included 32 patients with hindfoot crush injuries involving talus, calcaneum, a combination of both, or even involving the adjacent tarsal bones. All these crush injuries were classified using the Gustilo and Anderson classification. The postoperative functional assessment of the feet was done using the Maryland Foot Score system with a minimum follow-up of four years. We had good results in 53%, fair in 34% and failure in 13% of our cases. The complications of this procedure were the same as with the use of the ring fixator elsewhere in the body. This method provides a technique to salvage the foot and produce a painless, stable, fused foot in one of the most difficult settings of a hindfoot crush injury.
机译:足部挤压伤是外科医生要进行肢体抢救和提供无痛功能性足方面最困难和最具挑战性的任务之一。足部受伤,尤其是后足受伤,几乎占阿富汗所有战争伤害的24.6%,其中有70%以上因各种原因而截肢。我们设计了一种方法,利用伊利扎洛夫(Ilizarov)的分心接骨术原理来挽救后脚有骨缺损的四肢,否则这些肢体可以进行截肢。该过程分为两个阶段。最初,环固定器用于软组织重建和感染控制,下一阶段包括下胫骨后半部的经皮“倒L”形截骨术。该研究包括32例后足挤压伤,涉及距骨,跟骨,两者的结合,甚至累及相邻的tar骨。所有这些挤压伤都使用Gustilo和Anderson分类进行分类。足部的术后功能评估是使用马里兰足部评分系统进行的,至少需要随访四年。在我们的案例中,我们的结果是53%,33%,33%。该过程的并发症与在身体其他部位使用环固定器的情况相同。此方法提供了一种在后脚压伤最困难的情况下挽救脚并产生无痛,稳定,融合的脚的技术。

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