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基于人工和实验数据的人体肝脏准非线性变形建模

Quasi-non-linear deformation modeling of a human liver based on artificial and experimental data.

作者信息

Dogan Firat, Celebi M Serdar

机构信息

Dogus University, Faculty of Engineering, Computer Eng. Dept., Acibadem, Istanbul, 34722, Turkey.

Istanbul Technical University, Informatics Institute, Maslak, Istanbul, 34469, Turkey.

出版信息

Int J Med Robot. 2016 Sep;12(3):410-20. doi: 10.1002/rcs.1704. Epub 2015 Oct 12.

Abstract

BACKGROUND

Researchers working on error-prevention theories have shown that the use of replica models within simulation systems has improved operating skills, resulting in better patient outcomes.

METHODS

This study aims to provide material test data specifically for a human liver to validate the accuracy of viscoelastic soft tissue models. This allows the validation of virtual surgery simulators by comparison with physical test data obtained from material tests on a viscoelastic silicone gel pad.

RESULTS

The results proved that stress behavior and relaxation curves of Aquaflex® experiment and FEM simulation are close if average liver response and respective material parameters and model are used.

CONCLUSIONS

The precise representation of manipulated tissues used in virtual surgery trainers involves the accurate characterization of mechanical properties of the tissue. Consequently, successful implementations of these mechanical properties in a mathematical model of the deforming organ are of major importance. Copyright © 2015 John Wiley & Sons, Ltd.

摘要

背景

致力于防差错理论的研究人员表明,在模拟系统中使用复制模型可提高操作技能,从而改善患者预后。

方法

本研究旨在提供专门针对人体肝脏的材料测试数据,以验证粘弹性软组织模型的准确性。通过与从粘弹性硅胶垫材料测试获得的物理测试数据进行比较,可对虚拟手术模拟器进行验证。

结果

结果证明,如果使用平均肝脏反应以及相应的材料参数和模型,Aquaflex®实验的应力行为和松弛曲线与有限元模拟结果相近。

结论

虚拟手术训练器中使用的被操作组织的精确表示涉及组织力学性能的准确表征。因此,在变形器官的数学模型中成功实现这些力学性能至关重要。版权所有© 2015约翰威立国际出版公司。

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