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Computational modeling of volumetric soft tissue growth: application to the cardiac left ventricle

机译:体积软组织生长的计算模型:在心脏左心室中的应用

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摘要

As an initial step to investigate stimulus–response relations in growth and remodeling (G&R) of cardiac tissue, this study aims to develop a method to simulate 3D-inhomogeneous volumetric growth. Growth is regarded as a deformation that is decomposed into a plastic component which describes unconstrained growth and an elastic component to satisfy continuity of the tissue after growth. In current growth models, a single reference configuration is used that remains fixed throughout the entire growth process. However, considering continuous turnover to occur together with growth, such a fixed reference is unlikely to exist in reality. Therefore, we investigated the effect of tissue turnover on growth by incrementally updating the reference configuration. With both a fixed reference and an updated reference, strain-induced cardiac growth in magnitude of 30% could be simulated. However, with an updated reference, the amplitude of the stimulus for growth decreased over time, whereas with a fixed reference this amplitude increased. We conclude that, when modeling volumetric growth, the choice of the reference configuration is of great importance for the computed growth.
机译:作为研究心脏组织生长和重构(G&R)中的刺激-反应关系的第一步,本研究旨在开发一种模拟3D非均匀体积生长的方法。生长被认为是一种变形,它被分解为描述不受约束的生长的塑性成分和满足生长后组织连续性的弹性成分。在当前的增长模型中,使用单个参考配置,该参考配置在整个增长过程中保持固定。但是,考虑到持续的营业额与增长同时发生,这种固定参考在现实中不太可能存在。因此,我们通过逐步更新参考配置来研究组织更新对生长的影响。既有固定参考,也有更新参考,可以模拟应变诱发的心脏生长,幅度为30%。但是,使用更新的参考,增长刺激的幅度随时间降低,而使用固定的参考,该幅度增加。我们得出的结论是,在对体积增长进行建模时,参考配置的选择对于计算出的增长至关重要。

著录项

  • 来源
    《Biomechanics and Modeling in Mechanobiology》 |2009年第4期|301-309|共9页
  • 作者单位

    Department of Physiology Cardiovascular Research Institute Maastricht Maastricht University PO Box 616 6200 MD Maastricht The Netherlands;

    Department of Physiology Cardiovascular Research Institute Maastricht Maastricht University PO Box 616 6200 MD Maastricht The Netherlands;

    Department of Biophysics Cardiovascular Research Institute Maastricht Maastricht University PO Box 616 6200 MD Maastricht The Netherlands;

    Department of Biomedical Engineering Eindhoven University of Technology PO Box 513 5600 MB Eindhoven The Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cardiac mechanics; Remodeling; Adaptation; Finite element method;

    机译:心脏力学;重塑;适应;有限元法;

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