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使用六足外固定器Ortho-SUV Frame™进行足部畸形矫正。

Foot deformity correction with hexapod external fixator, the Ortho-SUV Frame™.

作者信息

Takata Munetomo, Vilensky Victor A, Tsuchiya Hiroyuki, Solomin Leonid N

机构信息

Department of Orthopaedic Surgery, Kanazawa University Graduate School of Medical Science, Kanazawa, Japan.

出版信息

J Foot Ankle Surg. 2013 May-Jun;52(3):324-30. doi: 10.1053/j.jfas.2013.01.013. Epub 2013 Mar 21.

Abstract

External fixators enable distraction osteogenesis and gradual foot deformity corrections. Hexapod fixators have become more popular than the Ilizarov apparatus. The Ortho-SUV Frame™ (OSF; Ortho-SUV Ltd, St. Petersburg, Russia), a hexapod that was developed in 2006, allows flexible joint attachment such that multiple assemblies are available. We assessed the reduction capability of several assemblies. An artificial bone model with a 270-mm-long longitudinal foot was used. A 130-mm tibial full ring was attached 60 mm proximal to the ankle joint. A 140-mm, two-third ring forefoot was attached perpendicular to the metatarsal bone axis. A 130-mm, two-third ring hindfoot was attached parallel to the tibial ring. A V-osteotomy, which was combined with 2 oblique osteotomies at the navicular-cuboid bone and the calcaneus, was performed. The middle part of the foot, including the talus, was connected to the tibial ring. We assessed 5 types of forefoot applications and 4 types of hindfoot applications. The range of correction included flexion/extension in the sagittal plane, adduction/abduction in the horizontal plane, and pronation/supination in the coronal plane. Additionally, we reported the short-term results in 9 clinical cases. The forefoot applications in which the axis of the hexapod was parallel to the axis of the metatarsal bones had good results, with 52°/76° for flexion/extension, 48°/53° for adduction/abduction, and 43°/51° for pronation/supination. The hindfoot applications in which the hexapod encircled the ankle joint also had good results, with corresponding values of 47°/58°, 20°/35°, and 28°/31°. Clinically, all deformities were corrected as planned. Thus, multiple assemblies and a wide range of corrections are available with the OSF.

摘要

外固定器可实现牵张成骨和逐步矫正足部畸形。六足固定器已比伊里扎洛夫器械更受欢迎。2006年研发的六足Ortho-SUV Frame™(OSF;俄罗斯圣彼得堡的Ortho-SUV有限公司)允许灵活的关节连接,从而有多种组件可供使用。我们评估了几种组件的复位能力。使用了一个具有270毫米长纵向足部的人工骨模型。在距踝关节近端60毫米处连接一个130毫米的胫骨全环。一个140毫米、三分之二环的前足垂直于跖骨轴线连接。一个130毫米、三分之二环的后足与胫骨环平行连接。进行了V形截骨,并在舟状骨-骰骨和跟骨处结合了2处斜形截骨。足部中部,包括距骨,与胫骨环相连。我们评估了5种前足应用类型和4种后足应用类型。矫正范围包括矢状面的屈伸、水平面的内收/外展以及冠状面的旋前/旋后。此外,我们报告了9例临床病例的短期结果。六足轴线与跖骨轴线平行的前足应用效果良好,屈伸角度为52°/76°,内收/外展角度为48°/53°,旋前/旋后角度为43°/51°。六足环绕踝关节的后足应用效果也良好,相应角度值为47°/58°、20°/35°和28°/31°。临床上,所有畸形均按计划得到矫正。因此,OSF具有多种组件和广泛的矫正范围。

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