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A continuum treatment of growth in biological tissue: the coupling of mass transport and mechanics

机译:生物组织生长的连续疗法:传质与力学的结合

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Growth (and resorption) of biological tissue is formulated in the continuum setting. The treatment is macroscopic, rather than cellular or sub-cellular. Certain assumptions that are central to classical continuum mechanics are revisited, the theory is reformulated, and consequences for balance laws and constitutive relations are deduced. The treatment incorporates multiple species. Sources and fluxes of mass, and terms for momentum and energy transfer between species are introduced to enhance the classical balance laws. The transported species include: (ⅰ) a fluid phase, and (ⅱ) the precursors and byproducts of the reactions that create and break down tissue. A notable feature is that the full extent of coupling between mass transport and mechanics emerges from the thermodynamics. Contributions to fluxes from the concentration gradient, chemical potential gradient, stress gradient, body force and inertia have not emerged in a unified fashion from previous formulations of the problem. The present work demonstrates these effects via a physically consistent treatment. The presence of multiple, interacting species requires that the formulation be consistent with mixture theory. This requirement has far-reaching consequences. A preliminary numerical example is included to demonstrate some aspects of the coupled formulation.
机译:生物组织的生长(和吸收)是在连续环境中制定的。这种治疗是宏观的,而不是细胞或亚细胞的。重新讨论了经典连续力学重要的某些假设,重新构造了该理论,并推论了对平衡定律和本构关系的影响。该处理方法包括多种物种。引入了质量源和通量,以及物种间动量和能量转移的术语,以增强经典的平衡定律。所运输的物质包括:(a)液相,以及(ⅱ)产生和分解组织的反应的前体和副产物。一个显着的特征是传质与力学之间的耦合完全是由热力学引起的。从浓度梯度,化学势梯度,应力梯度,体力和惯性对通量的贡献还没有以以前的方式统一提出。本工作通过物理上一致的治疗证明了这些作用。多种相互作用物质的存在要求制剂与混合物理论相一致。此要求具有深远的影响。包括一个初步的数值示例来说明耦合公式的某些方面。

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