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Multiscale aspects of mechanical properties of biological materials.

机译:生物材料力学性能的多尺度方面。

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Multiscale aspects of mechanical properties of biological materials have developed into an emerging area of research with impact in a broad range of disciplines ranging from medicine to materials science, defining a biomateriomics approach that facilitates a new paradigm in understanding the interplay of structure and function. Mechanical properties of biological materials are critical for virtually all physiological processes and cover all the scales, from the molecular to the macroscale, and provide access to mechanistic understanding and engineering design of novel tools for disease diagnosis, disease treatment and biomaterials development or for the transfer of biologically inspired materials and structures. The integrated use of simulation and experiment can address key challenges in this field and will result in new tools for the analysis and synthesis of complex materials.
机译:生物材料力学特性的多尺度方面已发展成为一个新兴的研究领域,其影响范围从医学到材料科学,涵盖了广泛的学科,定义了一种生物材料学方法,该方法有助于理解结构与功能之间相互作用的新范式。生物材料的机械性能对于几乎所有生理过程都是至关重要的,并且涵盖了从分子到宏观的所有尺度,并提供了用于疾病诊断,疾病治疗和生物材料开发或转移的新颖工具的机械理解和工程设计的途径。受生物启发的材料和结构。仿真和实验的集成使用可以解决该领域的关键挑战,并将为分析和合成复杂材料提供新的工具。

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