犬用传统和新型异体骨板治疗股骨骨折的临床和影像学评价

B. Aliyu, Az Hassan, G. Ochube, BN Umar, M. Lawal, A. Ibrahim
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引用次数: 0

摘要

股骨骨干骨折通常可以使用传统的固定植入物进行复位,但在大多数情况下,这种固定植入物价格昂贵,并且会给患者带来巨大的压力,因此需要更安全的新型生物材料。本研究评估了异体尸体骨板(CBP-A)和常规骨板在犬股骨干骨折治疗中的应用。4只8-12公斤的尼日利亚土着犬随机分为两组,每组由一只公犬和一只母犬组成。所有犬均采用消毒过的骨切线手术制造股骨中轴横向骨折。I组骨折采用vitalum -alloy骨板作为对照,II组骨折采用CBP-A复位固定。进行为期三个月的临床和影像学评估,比较两组骨折愈合情况。结果显示,I组和II组分别在复位后第4天和第5天过早尝试使用手术肢体,早期稳定了重要参数。x线片显示所有犬的骨折复位和固定良好,骨折线逐渐消失,随着骨折愈合进展到第六周,骨重建进展顺利。在12周时,所有的狗都有明显的髓质和皮质连续性。因此,本研究中使用的新型CBP-A有效地为犬股骨折的修复提供了所需的固定稳定性和最小的外固定;因此,应该推荐使用它。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Clinical and radiographic evaluations of healing femoral fractures managed with conventional and novel allo-cadaveric bone plates in dogs
Femoral diaphyseal fractures are usually amenable to reduction with the use of orthodox fixation implants, which in most cases are expensive and cause intense stress to the patient, hence the need for safer, new biomaterials. This study assessed the use of allo-cadaveric bone plates (CBP-A) and conventional bone plates in managing femoral fractures in dogs. A total of four 8-12 kg Nigerian indigenous dogs were randomly divided into two groups, with each consisting of a male and female dog. Sterilized osteotome wire was employed to surgically create transverse mid-shaft femoral fractures in all the dogs. The fractures in Group I dogs were managed using Vitallium-alloy bone plates and served as control, while Group II fractures were reduced and fixed using CBP-A. Clinical and radiographic assessments for three months were carried out to compare the fracture healing between the groups. Results showed an early stabilization of vital parameters with a premature attempt to use the operated limb on days 4 and 5 post-reduction in groups I and II, respectively. The radiographs revealed good fracture reduction and fixation in all the dogs with the gradual disappearance of the fracture line, as well as progressive bone remodelling as the fracture healing advanced through the sixth week. At 12 weeks, there was distinct medullary and cortical continuity in all the dogs. Therefore, the novel CBP-A used in this study has effectively provided the needed fixation stability with minimal external immobilization for the repair of dog femoral fractures; hence, it should be recommended for use.
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