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Mechanical analysis of the effects of cephalic trim on lower lateral cartilage stability.

机译:机械分析头的影响修剪下外侧软骨上的稳定性。

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摘要

To determine how mechanical stability changes in the lower lateral cartilage (LLC) after varying degrees of cephalic resection in a porcine cartilage nasal tip model.Alar cartilage was harvested from fresh porcine crania (n = 14) and sectioned to precisely emulate a human LLC in size and dimension. Flexural mechanical analysis was performed both before and after cephalic trims of 0 (control), 4, and 6 mm. Cantilever deformation tests were performed on the LLC models at 3 locations (4, 6, and 8 mm from the midline), and the integrated reaction force was measured. An equivalent elastic modulus of the crura was calculated assuming that the geometry of the LLC model approximated a modified single cantilever beam. A 3-dimensional finite element model was used to model the stress distribution of the prescribed loading conditions for each of the 3 types of LLC widths.A statistically significant decrease (P = .02) in the equivalent elastic modulus of the LLC model was noted at the most lateral point at 8 mm and only when 4 mm of the strut remained (P = .05). The finite element model revealed that the greatest internal stresses was at the tip of the nose when tissue was flexed 8 mm from the midline.Our results provide the mechanical basis for suggested clinical guidelines stating that a residual strut of less than 6 mm can lead to suboptimal cosmetic results owing to poor structural support of the overlying skin soft-tissue envelope by an overly resected LLC.
机译:确定机械稳定性的变化不同的后外侧软骨(LLC)度头切除猪软骨鼻尖模型。收获从新鲜猪脑壳(n = 14)切割精确地模拟人类LLC大小和尺寸。执行之前和之后都头吗修剪的0(控制)4和6毫米。有限责任公司进行了变形测试模型3的位置(4、6和8毫米的中线)和集成的反作用力测量。腿是假设几何计算LLC的模型近似一个修改单悬臂梁。模型被用于模型的应力分布为每个规定的加载条件LLC宽度的3种类型。显著减少(P = 02)等价的发现LLC模型的弹性模量最外侧点8毫米,只有当4毫米支柱仍然(P = . 05)。模型显示,最大的内部强调在组织时鼻子的顶端从中线弯曲8毫米。提供力学依据临床指南说明残余支柱小于6毫米可以导致次优的化妆品结果由于贫困结构的支持上覆皮肤软组织过度的信封切除LLC。

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