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面浅层的力学行为的实验与数值研究。

Experimental and numerical study on the mechanical behavior of the superficial layers of the face.

机构信息

Department of Mechanical Engineering, ETH Zurich, IMES, Zurich, Switzerland.

出版信息

Skin Res Technol. 2011 Nov;17(4):434-44. doi: 10.1111/j.1600-0846.2011.00515.x. Epub 2011 Mar 1.

Abstract

BACKGROUND/PURPOSE: This paper reports a study on the quasi-static mechanical response of the superficial soft tissue of the face, in particular the skin and the superficial muscoloaponeurotic system (SMAS) plus the superficial fat. The mechanical characterization of soft tissues represents one of the main uncertainties of previously developed numerical models for face simulation.

METHODS

Two instruments based on the suction method were used for collecting experimental data: the Cutometer(®) (2 mm probe aperture diameter) and the Aspiration device (8 mm). Tests were performed in five different regions of the face (jaw, nasolabial, parotideomasseteric, zygomatic and forehead) on the same subject whose magnetic resonance imaging (MRI) scans were used to generate a full 3D finite element model of the face and for whom a series of experimental results for different loading cases are already available. The mechanical parameters of the tissue layers were determined through an inverse finite element analysis. Anatomical data (tissue layers' thickness) were determined through the analysis of a set of high-resolution MRI scans and ultrasound measurements performed in the regions tested.

RESULTS

The results of Cutometer(®) measurements show a relatively homogeneous mechanical response in different face regions, while the results of aspiration device measurements, which involve deeper tissues, show a larger variability. Mechanical model parameters of the skin and SMAS were determined for two constitutive model equations: a hyperelastic model based on the Rubin-Bodner formulation and a reduced polynomial model of second order.

CONCLUSION

The results reported in this work suggest that for simulations of the global behavior of facial soft tissue, such as craniofacial and maxillofacial surgery planning, the skin could be considered as a layer of uniform thickness and of uniform mechanical response through the different regions. Additionally, mechanical models were determined for skin and SMAS that could be used for simulations of surgical procedures requiring a distinction between these tissue layers.

摘要

背景/目的:本文报告了一项关于面部浅层软组织(特别是皮肤和浅筋膜肌肉系统[SMAS]加上浅层脂肪)准静态力学响应的研究。软组织的力学特性是先前开发的面部模拟数值模型的主要不确定性之一。

方法

使用两种基于抽吸法的仪器来收集实验数据:皮肤弹性测量仪(Cutometer(®))(2 毫米探头孔径直径)和抽吸装置(8 毫米)。在同一受试者的五个不同面部区域(下颌、鼻唇沟、腮腺咬肌、颧骨和额部)进行测试,该受试者的磁共振成像(MRI)扫描被用于生成面部的全 3D 有限元模型,并且已经有一系列针对不同加载情况的实验结果。组织层的力学参数通过反向有限元分析确定。通过对一组在测试区域进行的高分辨率 MRI 扫描和超声测量的分析,确定了组织层的解剖学数据(组织层厚度)。

结果

Cutometer(®)测量结果表明,不同面部区域的力学响应相对均匀,而涉及更深组织的抽吸装置测量结果则显示出更大的可变性。针对两种本构模型方程(基于 Rubin-Bodner 公式的超弹性模型和二阶简化多项式模型)确定了皮肤和 SMAS 的力学模型参数。

结论

本工作的结果表明,对于面部软组织整体行为的模拟,如颅面和颌面外科手术规划,可以将皮肤视为具有均匀厚度和在不同区域具有均匀力学响应的一层。此外,确定了用于模拟需要区分这些组织层的手术程序的皮肤和 SMAS 力学模型。

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