Kim James H, Wong Brian
Beckman Laser Institute, University of California Irvine, Irvine, California.
Facial Plast Surg. 2013 Dec;29(6):502-5. doi: 10.1055/s-0033-1360593. Epub 2013 Dec 10.
This study presents an analytical investigation into the mechanical behavior of a cartilage-polydioxanone (PDS) plate composite grafts. Numerical methods are used to provide a first-order, numerical model of the flexural stiffness of a cartilage-PDS graft. Flexural stiffness is a measure of resistance to bending and is inversely related to the amount of deformation a structure may experience when subjected to bending forces. The cartilage-PDS graft was modeled as a single composite beam. Using Bernoulli-Euler beam theory, a closed form equation for the theoretical flexural stiffness of the composite graft was developed. A parametric analysis was performed to see how the flexural properties of the composite model changed with varying thicknesses of PDS foil. The stiffness of the cartilage-PDS composite using 0.15-mm-thick PDS was four times higher than cartilage alone. The composite with a 0.5-mm-thick PDS graft was only 1.7 times stiffer than the composite with the 0.15-mm-thick PDS graft. Although a thicker graft material will yield higher flexural stiffness for the composite, the relationship between composite stiffness and PDS thickness is nonlinear. After a critical point, increments in graft thickness produce gradually smaller improvements in flexural stiffness. The small increase in stiffness when using the thicker PDS foils versus the 0.15 mm PDS foil may not be worth the potential complications (prolonged foreign body reaction, reduction in nutrient diffusion to cartilage) of using thicker artificial grafts.
本研究对软骨-聚二氧六环酮(PDS)板复合移植物的力学行为进行了分析研究。采用数值方法建立了软骨-PDS移植物弯曲刚度的一阶数值模型。弯曲刚度是抵抗弯曲的一种度量,与结构在受到弯曲力时可能经历的变形量成反比。将软骨-PDS移植物建模为单个复合梁。利用伯努利-欧拉梁理论,推导了复合移植物理论弯曲刚度的封闭形式方程。进行了参数分析,以观察复合模型的弯曲性能如何随PDS箔厚度的变化而改变。使用0.15毫米厚PDS的软骨-PDS复合材料的刚度比单独的软骨高四倍。使用0.5毫米厚PDS移植物的复合材料的刚度仅比使用0.15毫米厚PDS移植物的复合材料高1.7倍。虽然较厚的移植物材料会使复合材料具有更高的弯曲刚度,但复合材料刚度与PDS厚度之间的关系是非线性的。在达到临界点后,移植物厚度的增加对弯曲刚度的改善逐渐变小。与0.15毫米PDS箔相比,使用较厚PDS箔时刚度的小幅增加可能不值得使用较厚人工移植物带来的潜在并发症(延长的异物反应、软骨营养物质扩散减少)。