带电动加长钉和锁定钢板的钢板辅助骨段运输:一种治疗股骨和胫骨骨缺损的技术

U. Olesen, T. Nygaard, Daniel E. Prince, Matthew P. Gardner, Upender M. Singh, M. McNally, C. Green, J. Herzenberg
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引用次数: 30

摘要

背景:本文介绍了一种新的股骨和胫骨骨缺损的骨运输技术:延长钉联合锁定钢板。我们称之为钢板辅助骨段运输(PABST)。方法:2016 - 2018年收治9例开放性骨折或恶性肿瘤所致5例股骨、4例胫骨骨缺损患者。股骨缺损平均长度为9.3 cm(范围7 - 11.5)。胫骨缺损平均8.9 cm(范围4.8 ~ 15)。评估患者的负重时间、固结指数、机械轴偏差和肢体长度差异。结果:9例患者中有7例完全巩固。平均巩固时间为6.6个月。实变指数分别为0.9(股骨)和1.26(胫骨)mo/cm。2例患者需要补充延长。一名患者轻度内翻,一名轻度外翻;其余的有一个正常的机械轴。所有患者均可接受肢体长度差异。主要并发症是异位骨化、愈合延迟和膝关节活动减少。结论:骨运输加延长钉加锁定钢板是治疗骨缺损的一种有效且对患者友好的方法,消除了外固定不良反应,缩短了治疗时间。该板在运输和对接过程中提供稳定性;它可以解决伴随骨折和促进急性缩短。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Plate-assisted Bone Segment Transport With Motorized Lengthening Nails and Locking Plates: A Technique to Treat Femoral and Tibial Bone Defects
Background: This article describes a new bone transport technique for femoral and tibial bone defects using lengthening nails combined with locking plates. We term it plate-assisted bone segment transport (PABST). Methods: Nine patients with five femoral and four tibial bone defects from open fractures or malignancies were treated between 2016 and 2018. Mean femoral defect length was 9.3 cm (range 7 to 11.5). Mean tibial defect was 8.9 cm (range 4.8 to 15). The patients were evaluated for time to weight bearing, consolidation index, mechanical axis deviation, and limb length discrepancy. Results: Seven of nine patients have fully consolidated. The mean consolidation time was 6.6 months. The consolidation index was 0.9 (femur) and 1.26 (tibia) mo/cm. Two patients required supplementary lengthening. One patient had mild varus, one mild valgus; the remainder had a normal mechanical axis. Limb length discrepancy remained acceptable in all patients. The main complications were heterotopic ossification, delayed healing, and reduced knee motion. Conclusion: Bone transport with lengthening nails and locking plates is an effective and patient-friendly way of treating bone defects, eliminating the adverse effects of external fixation and reducing treatment time. The plate provides stability during transport and docking; it can address concomitant fractures and facilitates acute shortenings.
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