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犬髂骨骨折专用钢板的初步研究。

Preliminary study on a novel dedicated plate for iliac fractures in dogs.

机构信息

Department of Veterinary Clinic and Surgery, Faculty of Agrarian and Veterinary Sciences, São Paulo State University (UNESP), Jaboticabal, São Paulo, Brazil.

Department of Dentistry, Faculty of Dentistry, University of São Paulo (USP), Ribeirão Preto, Brazil.

出版信息

PLoS One. 2022 Aug 26;17(8):e0269313. doi: 10.1371/journal.pone.0269313. eCollection 2022.

Abstract

INTRODUCTION

The aim of this study was to describe and evaluate a novel plate designed specifically for the canine ilium using finite element methods. The cranial portion of the plate had an elliptical shape and contained nine screw holes. The caudal portion of the plate was triangular with three screw holes. Four and three screws were used at the cranial (screw 1 to 4) and caudal (screw 5 to 7) segment of the plate. Finite element models of the plate and canine pelvis were created. A load of 300 N was applied on the femur-hip joint contact area. Values of Von Mises Stress on the plate, screws and the maximum and minimum main stresses in the bone were used to capture the mechanical factors in this study.

RESULTS

The novel implant had a plate stress of 51.9 megapascals (MPa) with higher stress in the dorsal part of the plate. Screws 2 and 4 showed similar stress values of 17.3 MPa. Screws 1 and 3 were the most loaded (51.9 MPa and 75 MPa, respectively). Screws 5, 6, and 7 showed similar dissipation and stress values (21.55 MPa). There was traction force in the dorsal region of the pubis and compression in the ventral part, with dissipation and values of 15.4 MPa and 23.9 MPa, respectively, acquiring balance between them.

CONCLUSION

The novel plate is potentially applicable and specifically suitable for iliac fractures in dogs. The screws distribution modeled proved itself strategical since the simulated stresses were evenly distributed throughout the implant construct.

摘要

简介

本研究旨在描述和评估一种专门为犬髂骨设计的新型钢板,使用有限元方法。钢板的颅侧部分呈椭圆形,包含 9 个螺钉孔。钢板的尾侧部分呈三角形,有 3 个螺钉孔。颅侧(螺钉 1 至 4)和尾侧(螺钉 5 至 7)部分的钢板分别使用 4 个和 3 个螺钉。创建了钢板和犬骨盆的有限元模型。在股骨-髋关节接触区域施加 300 N 的载荷。使用钢板、螺钉和骨内最大和最小主应力的 Von Mises 应力值来捕获本研究中的力学因素。

结果

新型植入物的钢板应力为 51.9 兆帕(MPa),钢板背部的应力更高。螺钉 2 和 4 显示出相似的 17.3 MPa 的应力值。螺钉 1 和 3 的负荷最大(分别为 51.9 MPa 和 75 MPa)。螺钉 5、6 和 7 显示出相似的耗散和应力值(21.55 MPa)。耻骨背侧有牵引力,腹侧有压缩力,耗散值和应力值分别为 15.4 MPa 和 23.9 MPa,两者之间取得平衡。

结论

新型钢板具有潜在的适用性,特别适合犬的髂骨骨折。模拟的螺钉分布证明是合理的,因为模拟的应力均匀分布在植入物结构中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0cc1/9416997/c6f4ab0bcf79/pone.0269313.g001.jpg

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