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Multigenerational interstitial growth of biological tissues

机译:生物组织的多代间质生长

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This study formulates a theory for multigenerational interstitial growth of biological tissues whereby each generation has a distinct reference configuration determined at the time of its deposition. In this model, the solid matrix of a growing tissue consists of a multiplicity of intermingled porous permeable bodies, each of which represents a generation, all of which are constrained to move together in the current configuration. Each generation’s reference configuration has a one-to-one mapping with the master reference configuration, which is typically that of the first generation. This mapping is postulated based on a constitutive assumption with regard to that generations’ state of stress at the time of its deposition. For example, the newly deposited generation may be assumed to be in a stress-free state, even though the underlying tissue is in a loaded configuration. The mass content of each generation may vary over time as a result of growth or degradation, thereby altering the material properties of the tissue. A finite element implementation of this framework is used to provide several illustrative examples, including interstitial growth by cell division followed by matrix turnover.
机译:这项研究为生物组织的多代间质生长奠定了理论基础,其中每一世代都有在沉积时确定的独特参考构型。在此模型中,生长中的组织的固体基质由多个相互交织的多孔渗透体组成,每个渗透体代表一个世代,所有这些都被限制在当前配置下一起移动。每代的参考配置都与主参考配置(通常是第一代的参考配置)一对一映射。该映射是基于关于该沉积时各代应力状态的本构假设而假定的。例如,即使下面的组织处于负载状态,也可以假定新沉积的世代处于无应力状态。由于生长或降解,每一代的质量含量都可能随时间变化,从而改变组织的材料特性。该框架的有限元实现用于提供几个说明性示例,包括通过细胞分裂进行的间质生长,然后进行基质更新。

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