Störk Christoph K, Canivet Philippe, Baidak Alexandre A, Balligand Marc H
Department of Clinical Sciences, Faculty of Veterinary Medicine and the Department of Macromolecular Chemistry and Multi-Materials, Faculty of Applied Sciences, University of Liège, Liège, Belgium.
Vet Surg. 2003 May-Jun;32(3):262-8. doi: 10.1053/jvet.2003.50029.
To investigate the mechanical characteristics of a nontoxic, low-cost, rigid polymer (RP) and to compare the structural and mechanical properties of a full-frame external skeletal fixator (ESF) with either RP connecting bars, polymethylmethacrylate (PMMA) connecting bars, or stainless-steel (SS) clamps and connecting bars.
In vitro mechanical evaluation.
Mechanical properties were assessed using an in vitro bone fracture model with a bilateral uniplanar ESF (type II). Identical ESF were built with connecting bars using RP (n = 8), PMMA (n = 8), and SS connecting bars and clamps (System Meynard; n = 3). Nondestructive mechanical tests were performed in uniaxial compression (AC) and craniocaudal (CC) 4-point bending, as well as fatigue AC. Composite stiffness for each specimen and for each loading mode was calculated from 6 replicate measures using the slope of the load displacement curve at small displacements.
RP, PMMA, and SS ESF constructs yielded mean +/- SD composite stiffness values of 227 +/- 15, 381 +/- 30, and 394 +/- 9 N/mm in AC and of 35 +/- 2, 24 +/- 2, and 15 +/- 0 N/mm in CC, respectively.
Structural and mechanical properties of RP are satisfactorily rigid and fatigue resistant for its use as a connecting bar in ESF.
RP connecting bars in an ESF are a reliable, versatile, nontoxic and inexpensive option for the veterinary surgeon.
研究一种无毒、低成本的刚性聚合物(RP)的力学特性,并比较全框架外骨骼固定器(ESF)采用RP连接杆、聚甲基丙烯酸甲酯(PMMA)连接杆或不锈钢(SS)夹具及连接杆时的结构和力学性能。
体外力学评估。
使用双侧单平面ESF(II型)的体外骨折模型评估力学性能。用RP(n = 8)、PMMA(n = 8)以及SS连接杆和夹具(Meynard系统;n = 3)构建相同的ESF。进行单轴压缩(AC)和头尾向(CC)4点弯曲的无损力学测试以及疲劳AC测试。根据小位移时载荷位移曲线的斜率,通过6次重复测量计算每个标本和每种加载模式的复合刚度。
RP、PMMA和SS ESF结构在AC中的平均±标准差复合刚度值分别为227±15、381±30和394±9 N/mm,在CC中分别为35±2、24±2和15±0 N/mm。
RP的结构和力学性能具有足够的刚性和抗疲劳性,可作为ESF中的连接杆使用。
ESF中的RP连接杆对兽医来说是一种可靠、通用、无毒且廉价的选择。