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一种用于模拟喉镜检查的上呼吸道生物力学模型。

A biomechanical model of the upper airways for simulating laryngoscopy.

作者信息

Rodrigues M A, Gillies D, Charters P

机构信息

Department of Computing, Imperial College of Science, Technology and Medicine, 180 Queen's Gate, London SW7 2BZ, United Kingdom.

出版信息

Comput Methods Biomech Biomed Engin. 2001 Feb;4(2):127-48. doi: 10.1080/10255840008908001.

Abstract

This paper describes a three-dimensional finite element model of the human upper airways during rigid laryngoscopy. In this procedure, an anaesthetist uses a rigid blade to displace and compress the tongue of the patient, and then inserts a tube into the larynx to allow controlled ventilation of the lungs during an operation. A realistic model of the main biomechanical aspects involved would help anaesthetists in training and in predicting difficult cases in advance. For this purpose, the finite element method was used to model structures such as the tongue, ligaments, larynx, vocal cords, bony landmarks, laryngoscope blade, and their inter-relationships, based on data extracted from X-ray, MRI, and photographic records. The model has been used to investigate how the tongue tissue behaves in response to the insertion of the laryngoscope blade, when it is subjected to a variety of loading conditions. In particular, the mechanical behaviour of the soft tissue of the tongue was simulated, from simple linear elastic material to complex non-linear viscoelastic material. The results show that, within a specific set of tongue material parameters, the simulated outcome can be successfully related to the view of the vocal cords achieved during real laryngoscopies on normal subjects, and on artificially induced difficult laryngoscopy, created by extending the upper incisors teeth experimentally.

摘要

本文描述了硬质喉镜检查过程中人体上呼吸道的三维有限元模型。在该操作中,麻醉师使用硬质喉镜叶片移位并压缩患者的舌头,然后将气管导管插入喉部,以便在手术期间实现对肺部的控制通气。一个涉及主要生物力学方面的逼真模型将有助于麻醉师进行培训并提前预测困难病例。为此,基于从X射线、MRI和摄影记录中提取的数据,采用有限元方法对舌头、韧带、喉部、声带、骨性标志、喉镜叶片等结构及其相互关系进行建模。该模型已用于研究当喉镜叶片插入时,在各种加载条件下舌头组织的行为。特别是,模拟了舌头软组织从简单线性弹性材料到复杂非线性粘弹性材料的力学行为。结果表明,在一组特定的舌头材料参数范围内,模拟结果能够成功地与正常受试者在实际喉镜检查过程中以及通过实验性延长上切牙而人为诱发的困难喉镜检查过程中所获得的声带视野相关联。

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