Pavarotti Greta S, Boudrieau Randy J
Department of Clinical Sciences, Cummings School of Veterinary Medicine at Tufts University, North Grafton, Massachusetts, United States.
Vet Comp Orthop Traumatol. 2018 May;31(3):222-228. doi: 10.1055/s-0038-1637754. Epub 2018 Apr 16.
The aim of this article was to describe the surgical re-alignment technique and stabilization of a distal femoral deformity in a 6-week-old, male, Foxhound.
A healing metaphyseal fracture, resulting in a valgus deformity with internal rotation, was observed just proximal to the distal femoral physis. The deformity was treated by an opening wedge osteotomy with lateral translation and external rotation of the distal epiphysis using a guide-wire technique; a corticocancellous allograft bridged the defect, which was stabilized with a 2.0-mm locking Y-plate designed for human phalangeal fractures.
Successful deformity correction was obtained with subsequent healing of the osteotomy and maintained longitudinal bone growth. Sciatic neurapraxia developed as a result of a migrating adjunct pin (9 days post-operatively), which was removed. At long-term follow-up (4 years), a 12% shortening of the femur did result in addition to an asymptomatic grade 2 medial patellar luxation (MPL). The cause of the MPL was not evident; the owners declined treatment and the dog continued to function as an active hunting dog.
Prior to ossification of the epiphyses in very young animals, which precludes effective radiographic pre-planning, the guide-wire technique can be utilized as the primary tool for performing angular deformity correction. Adequate fixation and stabilization can be obtained with small human specialty locking plates.
本文旨在描述一只6周龄雄性猎狐犬股骨远端畸形的手术复位技术及固定方法。
在股骨远端骨骺近端观察到一处愈合中的干骺端骨折,导致外翻畸形并伴有内旋。采用导丝技术,通过开放楔形截骨、远端骨骺外侧平移和外旋来治疗该畸形;用一块皮质松质骨同种异体骨填充骨缺损,并用专为人类指骨骨折设计的2.0毫米锁定Y形钢板进行固定。
畸形得到成功矫正,截骨处随后愈合,且股骨纵向生长得以维持。术后9天,一枚辅助针移位导致坐骨神经失用,该针被取出。长期随访(4年)时,除出现无症状的2级内侧髌骨脱位(MPL)外,股骨确实缩短了12%。MPL的病因不明;主人拒绝治疗,这只狗继续作为一只活跃的猎犬发挥作用。
在非常年幼动物的骨骺骨化之前,由于无法进行有效的术前影像学规划,导丝技术可作为矫正角度畸形的主要工具。使用小型人类专用锁定钢板可实现充分的固定和稳定。