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Bone fracture healing in mechanobiological modeling: A review of principles and methods

机译:机械生物学模型中的骨骨折愈合:原理和方法的综述

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摘要

Bone fracture is a very common body injury. The healing process is physiologically complex, involving both biological and mechanical aspects. Following a fracture, cell migration, cell/tissue differentiation, tissue synthesis, and cytokine and growth factor release occur, regulated by the mechanical environment. Over the past decade, bone healing simulation and modeling has been employed to understand its details and mechanisms, to investigate specific clinical questions, and to design healing strategies. The goal of this effort is to review the history and the most recent work in bone healing simulations with an emphasis on both biological and mechanical properties. Therefore, we provide a brief review of the biology of bone fracture repair, followed by an outline of the key growth factors and mechanical factors influencing it. We then compare different methodologies of bone healing simulation, including conceptual modeling (qualitative modeling of bone healing to understand the general mechanisms), biological modeling (considering only the biological factors and processes), and mechanobiological modeling (considering both biological aspects and mechanical environment). Finally we evaluate different components and clinical applications of bone healing simulation such as mechanical stimuli, phases of bone healing, and angiogenesis.
机译:骨骨折是非常常见的身体伤害。愈合过程在生理上很复杂,涉及生物学和机械方面。骨折后,发生细胞迁移,细胞/组织分化,组织合成以及细胞因子和生长因子的释放,受机械环境的调节。在过去的十年中,已经采用骨骼愈合模拟和建模来了解其细节和机理,研究特定的临床问题以及设计愈合策略。这项工作的目的是回顾骨愈合模拟的历史和最新工作,重点是生物学和机械特性。因此,我们简要回顾了骨折修复的生物学原理,然后概述了影响其生长的关键生长因子和机械因子。然后,我们将比较不同的骨骼愈合模拟方法,包括概念模型(对骨骼愈合进行定性建模以了解一般机制),生物学模型(仅考虑生物学因素和过程)和力学生物学模型(同时考虑生物学方面和机械环境) 。最后,我们评估了骨愈合模拟的不同组成部分和临床应用,例如机械刺激,骨愈合阶段和血管生成。

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