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Biomechanics of the monopedicle skin flap

机译:单蒂皮瓣的生物力学

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摘要

Objective The design and implementation of skin flaps remains a puzzle for the reconstructive surgeon. The objective of the present study is to use finite element (FE) analysis to characterize and understand the biomechanics of the monopedicle skin flap design. Study Design The current study uses a nonlinear hyperelastic FE model of the human skin to understand the biomechanics of monopedicle-based flap designs as geometric flap parameters are varied. Setting In silico. Subjects and Methods The simulation included the displacement loading, stitching, and relaxation of various forms of the flap design. Stress and strain outcomes, previously correlated with scarring, necrosis, and blood perfusion, are reported for a basic monopedicle design as well as a number of modifications to this design. Results The results suggest that the length of the monopedicle flap should not exceed 3 times the size of the defect, as the benefit in reducing principal strain (deformation) is diminished beyond this point. Further, to minimize skin strain, the ideal Burrow's triangle size can be described as proportional to flap length and inversely proportional to defect height, according to a linear function. Conclusion The ideal flap design should attempt to minimize not only the stress in the skin, but the size of the incisions and the degree of undermining. The results of our analyses provide guidance to increase the general understanding of monopedicle flap mechanics and provide context for the clinician and insight into designing a better monopedicle flap for individual situations.
机译:目的皮瓣的设计和实施仍然是重建外科医师的难题。本研究的目的是使用有限元(FE)分析来表征和理解单蒂皮瓣设计的生物力学。研究设计本研究使用人类皮肤的非线性超弹性有限元模型来了解随着几何瓣参数的变化,基于单蒂的瓣设计的生物力学。设置计算机。对象和方法模拟包括各种形式的襟翼设计的位移加载,缝合和松弛。对于基本的单蒂设计以及对该设计的许多修改,已经报道了以前与疤痕,坏死和血液灌注相关的压力和劳损结果。结果结果表明,单蒂皮瓣的长度不应超过缺损大小的3倍,因为减少主应变(变形)的好处在此点以上已减弱。此外,为了最小化皮肤劳损,理想的Burrow三角形大小可以根据线性函数描述为与瓣长度成正比,与缺陷高度成反比。结论理想的皮瓣设计不仅应尽量减少皮肤的压力,而且应尽量减少切口的大小和破坏程度。我们的分析结果为增加对单瓣皮瓣力学的一般理解提供了指导,并为临床医生提供了背景信息,并为针对个别情况设计更好的单瓣皮瓣提供了见识。

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