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NON-LINEAR DYNAMIC RESPONSE OF THORAX TO IMPULSIVE LOADING OF CARDIOPULMONARY RESUSCITATION (CPR)

机译:胸腔对心肺复苏(CPR)脉冲负荷的非线性动力响应

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The purpose of this paper is, to provide the non-linear biodynamic response of thorax through the analytical and numerical simulation methods. Adult thorax data considering sagittal and coronal stiffness in addition to soft and hard tissue material properties will undergo CPR impulsive loading. The numerical simulation is conducted using finite element analysis (FEA) software for modeling biomechanical correct Thorax model to CPR transient loading. AMTI force plate was utilized to record the CPR forces, it accounts for realistic load evaluation during CPR procedure. A dynamic model for numerical simulation includes resonance frequency, damping coefficient, stiffness constant and extinction time for a different kind of physique. The model deflections and forces were analyzed. The maximum deflection obtained from mathematical modelling and ANSYS is found closely related. The result strongly depends on the modeling of the thorax which is used in the numerical simulation. This indicates the necessity of the correlation of the results with the experimental data if available.
机译:本文的目的是通过分析和数值模拟方法提供胸部的非线性生物动力响应。考虑到矢状和冠状刚度以及软组织和硬组织材料特性的成人胸部数据将经受CPR脉冲载荷。使用有限元分析(FEA)软件进行数值模拟,以对CPR瞬态载荷的生物力学正确的Thorax模型进行建模。利用AMTI测力板记录CPR力,可在CPR程序中考虑实际载荷评估。用于数值模拟的动态模型包括共振频率,阻尼系数,刚度常数和不同种类物体的消光时间。分析了模型的挠度和力。发现从数学建模和ANSYS获得的最大挠度密切相关。结果很大程度上取决于在数值模拟中使用的胸部建模。这表明必须将结果与实验数据进行关联(如果有)。

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