Department of Otolaryngology-Head &Neck Surgery, University of California-Irvine, Medical Center, Irvine, California 92617, USA.
Laryngoscope. 2013 Feb;123(2):339-43. doi: 10.1002/lary.23571. Epub 2012 Sep 10.
OBJECTIVES/HYPOTHESIS: This study attempts to characterize the biomechanical properties of a PDS-cartilage composite graft for use in septorhinoplasty.
Experimental Study.
This study used a PDS analog, porcine cartilage cut to 1 × 5 × 20 mm, and a mechanical testing platform to measure flexure of a composite graft. Samples were assessed in four groups based on variations in suture pattern and orientation. The platform measured the force required to deflect the sample 2 mm in single cantilever beam geometry before and after the polymer was affixed to the specimen. Elastic Moduli were calculated before and after application of the polydioxanone polymer.
The average modulus of the cartilage alone was 17 ± 0.9 MPa. The modulus of the composite cartilage-polymer graft with 2 suture fixation was 21.2 ± 1.5 MPa. The 3-suture configuration produced an increase to 25.8 ± 2.23 MPa. The four-suture configuration produced 23.1 ± 3.19 MPa. The five-suture configuration produced 25.7 ± 2.6 MPa. The modulus of the analog alone was 170 ± 30 MPa. The modulus of the 0.5 mm PDS was 692 ± 37.4 MPa. The modulus of the 0.15 mm perforated PDS was 447 ± 34.8 MPa.
The study found that suturing a polymer plate to cartilage resulted in enhanced stiffness of the composite. Under the conditions of the study, there was no significant difference in elastic moduli between suture configurations, making the two-suture linear configuration optimal in the one-plane cantilever deflection model.
目的/假设:本研究试图对用于鼻中隔成形术的 PDS-软骨复合材料移植物的生物力学特性进行表征。
实验研究。
本研究使用 PDS 模拟物、切成 1×5×20mm 的猪软骨和机械测试平台来测量复合移植物的弯曲度。根据缝线模式和方向的变化,将样品分为四组进行评估。在将聚合物固定到样品之前和之后,平台测量使样品在单悬臂梁几何形状中偏 2mm 所需的力。在应用聚二氧杂环己酮聚合物之前和之后计算弹性模量。
单独软骨的平均模量为 17±0.9MPa。用 2 根缝线固定的复合软骨-聚合物移植物的模量为 21.2±1.5MPa。3 缝线构型产生的增加到 25.8±2.23MPa。4 缝线构型产生 23.1±3.19MPa。5 缝线构型产生 25.7±2.6MPa。单独模拟物的模量为 170±30MPa。0.5mm PDS 的模量为 692±37.4MPa。0.15mm 穿孔 PDS 的模量为 447±34.8MPa。
研究发现,将聚合物板缝合到软骨上会导致复合材料的刚度增加。在研究条件下,缝线构型之间的弹性模量没有显著差异,因此在单平面悬臂挠度模型中,两缝线线性构型是最佳的。