Does the proximal screw type affect stress and strain in pastern arthrodesis with locking plate in horses?

IF 2.2 3区 农林科学 Q1 VETERINARY SCIENCES
Anderson Fernando de Souza , César Augusto Martins Pereira , Anton Fürst , Jan Michael Kümmerle , André Luis do Valle De Zoppa
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Abstract

The implantation of unicortical cortex screws in the proximal hole of locking compression plates (LCP) has been recommended for proximal interphalangeal (PIP) arthrodesis in horses to prevent fractures resulting from stress risers in the proximal phalanx (P1). However, this cortex screw fixation technique may limit efficient dorsal compression of the PIP joint by the plate, potentially affecting the stability of the construct. In this study, we aimed to measure stress and strain in P1 and the plate using an ex vivo model of PIP arthrodesis in horses. We employed various implantation methods and proximal screw types in conjunction with two 5.5 mm transarticular cortex screws. Ten pairs of equine forelimbs were divided into four groups based on proximal screw placement: GUC (unicortically placed cortex screw), GBC (bicortically placed cortex screw), GUL (unicortically placed locking screw), and GBL (bicortically placed locking screw). We calculated the magnitude and direction of strain, strain ratio, and stress using strain gauges during an axial compression mechanical testing. The palmar surface of P1 exhibited higher stress and strains than the dorsal surface, with the plate part located at the articular level suffered more stress than the proximal part. Both the implantation method and proximal screw type significantly influenced the analyzed parameters. The GUC promoted greater changes in strain direction in the proximal portion of the P1. Bicortical placement of a cortex screw appears to be the most suitable option for filling the proximal hole of the LCP, because it allows effective dynamic compression via the plate and prevents abrupt shifts in the direction of the forces acting on the proximal part of P1 during loading.

近端螺钉类型是否会影响马匹用锁定钢板进行趾骨关节置换术时的应力和应变?
在马匹近端指骨间(PIP)关节置换术中,建议在锁定加压钢板(LCP)的近端孔中植入单皮质螺钉,以防止近端指骨(P1)的应力升高造成骨折。然而,这种皮质螺钉固定技术可能会限制钢板对 PIP 关节背侧的有效压迫,从而可能影响结构的稳定性。在本研究中,我们旨在使用马匹 PIP 关节固定的体外模型来测量 P1 和钢板的应力和应变。我们采用了不同的植入方法和近端螺钉类型,以及两根 5.5 毫米的经关节皮质螺钉。根据近端螺钉的位置,十对马前肢被分为四组:GUC(单皮质螺钉)、GBC(双皮质螺钉)、GUL(单皮质锁定螺钉)和 GBL(双皮质锁定螺钉)。在轴向压缩机械测试中,我们使用应变仪计算了应变、应变比和应力的大小和方向。P1的掌面显示出比背面更高的应力和应变,位于关节水平的钢板部分比近端部分承受更大的应力。植入方法和近端螺钉类型对分析参数都有显著影响。GUC促进了P1近端应变方向的更大变化。皮质螺钉的双皮质植入似乎是填充 LCP 近端孔的最合适选择,因为它可以通过钢板实现有效的动态压缩,并防止在加载过程中作用于 P1 近端部分的力的方向发生突然变化。
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来源期刊
Research in veterinary science
Research in veterinary science 农林科学-兽医学
CiteScore
4.40
自引率
4.20%
发文量
312
审稿时长
75 days
期刊介绍: Research in Veterinary Science is an International multi-disciplinary journal publishing original articles, reviews and short communications of a high scientific and ethical standard in all aspects of veterinary and biomedical research. The primary aim of the journal is to inform veterinary and biomedical scientists of significant advances in veterinary and related research through prompt publication and dissemination. Secondly, the journal aims to provide a general multi-disciplinary forum for discussion and debate of news and issues concerning veterinary science. Thirdly, to promote the dissemination of knowledge to a broader range of professions, globally. High quality papers on all species of animals are considered, particularly those considered to be of high scientific importance and originality, and with interdisciplinary interest. The journal encourages papers providing results that have clear implications for understanding disease pathogenesis and for the development of control measures or treatments, as well as those dealing with a comparative biomedical approach, which represents a substantial improvement to animal and human health. Studies without a robust scientific hypothesis or that are preliminary, or of weak originality, as well as negative results, are not appropriate for the journal. Furthermore, observational approaches, case studies or field reports lacking an advancement in general knowledge do not fall within the scope of the journal.
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