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皮肤扩张与生长的轴对称计算模型。

An axisymmetric computational model of skin expansion and growth.

作者信息

Socci L, Pennati G, Gervaso F, Vena P

机构信息

Laboratory of Biological Structure Mechanics, Department of Structural Engineering, Politecnico di Milano, Piazza Leonardo da Vinci 32, Milan, Italy.

出版信息

Biomech Model Mechanobiol. 2007 Apr;6(3):177-88. doi: 10.1007/s10237-006-0047-9. Epub 2006 Jun 10.

Abstract

Skin expansion is the principal technique used in plastic surgery to repair large cutaneous defects, typically after tumour removal, burn care, craniofacial surgery and post-mastectomy breast reconstruction. It allows a gain of new tissue by means of gradual expansion of a prosthesis, surgically implanted beneath the patient's skin. Nevertheless, wide clinical use is not supported by a deep quantitative knowledge of the phenomena occurring during the expansion. A finite element model of the skin expansion was developed to evaluate the stresses and the strains of the skin due to the expander inflation and validated by proper in vitro experiments; furthermore, a growth model based on the mechanical stimulus was implemented to estimate the skin area gain. The developed computational approach, composed of the skin expansion model interaction and the growth law, proved its validity to investigate skin expansion phenomena: its use suggests a new predictive tool to optimize clinical procedures and the expander devices' design.

摘要

皮肤扩张是整形外科用于修复大面积皮肤缺损的主要技术,通常用于肿瘤切除、烧伤护理、颅面外科手术和乳房切除术后乳房重建。它通过在患者皮肤下手术植入的假体逐渐扩张来增加新组织。然而,目前对于扩张过程中发生的现象缺乏深入的定量认识,这限制了其在临床上的广泛应用。为此,我们建立了一个皮肤扩张的有限元模型,以评估扩张器充气引起的皮肤应力和应变,并通过适当的体外实验进行了验证;此外,还实施了一个基于机械刺激的生长模型来估计皮肤面积的增加。由皮肤扩张模型相互作用和生长规律组成的计算方法,证明了其在研究皮肤扩张现象方面的有效性:其应用为优化临床程序和扩张器装置设计提供了一种新的预测工具。

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