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Complementary vasoactivity and matrix remodeling in arteries: Theoretical foundations and predicted trends.

机译:血管中的互补血管活性和基质重塑:理论基础和预测趋势。

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摘要

Arteries possess the ability to grow and remodel in response to sustained alterations in biomechanical loading, likely via mechanisms that are similarly involved in diverse arterial pathologies and responses to treatment. In particular, myriad experminental observations suggest that cell and matrix turnover within vasoaltered states enable arteries to adapt to sustained changes in mechanical stimuli. The goal herein is to show explicitly how altered smooth muscle contractility and matrix growth and remodeling work together to adapt the geometry, structure, stiffness, and function of a representative basilar artery. This work seeks to illustrate the importance of complementary vasoactivity and matrix remodeling for basilar arteries in response to sustained alterations in mechanical stimuli. Toward this end, an extended constrained mixture model of the arterial wall is employed whereby the mass fractions, material properties, and natural configurations of individual constituents can evolve separately and thereby dictate overall growth and remodeling. This approach accounts for fundamentally important behaviors. Simulations provide important intuition and insight regarding constitutive functional forms and model parameters.
机译:动脉具有响应生物力学负荷的持续变化而生长和重塑的能力,可能是通过类似地参与多种动脉病理和对治疗的反应的机制进行的。尤其是,无数的实验观察表明,血管改变状态下的细胞和基质更新使动脉能够适应机械刺激的持续变化。本文的目标是明确显示改变后的平滑肌收缩力和基质生长以及重塑如何共同作用以适应代表性基底动脉的几何形状,结构,刚度和功能。这项工作试图说明基础血管对机械刺激持续变化的反应,补充血管活性和基质重塑的重要性。为此,采用了扩展的动脉壁受限混合物模型,由此,各个成分的质量分数,材料特性和自然构型可以分别演化,从而决定了整体的生长和重塑。这种方法解释了根本上重要的行为。模拟提供了有关本构功能形式和模型参数的重要直觉和见识。

著录项

  • 作者

    Valentin, Arturo, III.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 197 p.
  • 总页数 197
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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