Preliminary experimental identification of a FEM human knee model

P. Arpaia, Federica Crauso, S. Grassini, S. Minucci, N. Moccaldi, I. Sannino
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引用次数: 1

Abstract

A customizable Finite Elements Model of human knee is proposed for improving inter-individual reproducibility in NSAIDs transdermal delivery measurement. The model simulates: (i) the measurement system, based on Bio-Impedance Spectroscopy, and (ii) the system under test, namely the knee by five parallel, homogeneous, and concentric layers: bone, muscle, adipose tissue, wet skin, and dry skin. In this paper, first the equations and the architecture of the model are described. Then, the results of the numerical characterization and the preliminary experimental validation are reported. A sensitivity analysis was realized for reducing computational burden during Model customization. Only five parameters out of the 64 used in the Cole-Cole equation were sufficient for fitting experimental data of different subjects.
有限元人体膝关节模型的初步实验鉴定
提出了一种可定制的人体膝关节有限元模型,以提高非甾体抗炎药经皮给药测量的个体间再现性。该模型模拟:(i)基于生物阻抗谱的测量系统,以及(ii)被测系统,即膝关节五个平行、均匀和同心的层:骨骼、肌肉、脂肪组织、湿皮肤和干皮肤。本文首先描述了该模型的方程和结构。然后,报告了数值表征结果和初步实验验证。为了减少模型定制过程中的计算量,实现了灵敏度分析。在Cole-Cole方程的64个参数中,只有5个参数足以拟合不同受试者的实验数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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