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Viscoelastic computational modeling of the human head-neck system: Eigenfrequencies and time-dependent analysis

机译:人体头颈系统的粘弹性计算建模:特征频率和时变分析

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摘要

A subject-specific 3-dimensional viscoelastic finite element model of the human head-neck system is presented and investigated based on computed tomography and magnetic resonance biomedical images. Ad hoc imaging processing tools are developed for the reconstruction of the simulation domain geometry and the internal distribution of bone and soft tissues. Material viscoelastic properties are characterized point-wise through an image-based interpolating function used then for assigning the constitutive prescriptions of a heterogenous viscoelastic continuum model. The numerical study is conducted both for modal and time-dependent analyses, compared with similar studies and validated against experimental evidences. Spatiotemporal analyses are performed upon different exponential swept-sine wave-localized stimulations. The modeling approach proposes a generalized, patient-specific investigation of sound wave transmission and attenuation within the human head-neck system comprising skull and brain tissues. Model extensions and applications are finally discussed.
机译:基于计算机断层扫描和磁共振生物医学图像,提出并研究了人体头部-颈部系统的特定于对象的三维粘弹性有限元模型。开发了专门的成像处理工具来重建模拟域的几何形状以及骨骼和软组织的内部分布。通过基于图像的插值函数对材料的粘弹性特性进行逐点表征,然后将其用于分配非均质粘弹性连续体模型的本构关系。进行了数值研究,既进行了模态分析,又进行了与时间有关的分析,并与类似研​​究进行了比较,并针对实验证据进行了验证。时空分析是对不同的指数正弦波局部化刺激进行的。建模方法提出了对包括颅骨和脑组织在内的人头-颈系统内声波传输和衰减的一般性,针对患者的研究。最后讨论模型扩展和应用。

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