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Mechanics and mechano-biology of fracture healing in normal and osteoporotic bone.

机译:正常和骨质疏松性骨骨折愈合的力学和力学生物学。

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摘要

Fracture repair, which aims at regaining the functional competence of a bone, is a complex and multifactorial process. For the success of fracture repair biology and mechanics are of immense importance. The biological and mechanical environments must be compatible with the processes of cell and tissue proliferation and differentiation. The biological environment is characterized by the vascular supply and by many biochemical components, the biochemical milieu. A good vascular supply is a prerequisite for the initiation of the fracture repair process. The biochemical milieu involves complex interactions among local and systemic regulatory factors such as growth factors or cytokines. The mechanical environment is determined by the local stress and strain within the fracture. However, the local stress and strain is not accessible, and the mechanical environment, therefore, is described by global mechanical factors, e.g., gap size or interfragmentary movement. The relationship between local stress and strain and the global mechanical factors can be obtained by numerical models (Finite Element Model). Moreover, there is considerable interaction between biological factors and mechanical factors, creating a biomechanical environment for the fracture healing process. The biomechanical environment is characterized by osteoblasts and osteocytes that sense the mechanical signal and express biological markers, which effect the repair process. This review will focus on the effects of biomechanical factors on fracture repair as well as the effects of age and osteoporosis.
机译:旨在恢复骨骼功能能力的骨折修复是一个复杂的多因素过程。对于成功的骨折修复而言,生物学和力学至关重要。生物和机械环境必须与细胞和组织的增殖和分化过程兼容。生物环境的特征是血管供应和许多生化成分,即生化环境。良好的血管供应是开始骨折修复过程的前提。生化环境涉及局部和全身调节因子(例如生长因子或细胞因子)之间的复杂相互作用。机械环境取决于裂缝内的局部应力和应变。但是,局部应力和应变是不可接近的,因此,机械环境由整体机械因素来描述,例如间隙尺寸或碎片间运动。局部应力和应变与整体力学因素之间的关系可以通过数值模型(有限元模型)获得。此外,生物学因素和机械因素之间存在相当大的相互作用,从而为骨折愈合过程创造了生物力学环境。生物力学环境的特征是成骨细胞和成骨细胞能够感知机械信号并表达生物学标记,从而影响修复过程。本文将重点讨论生物力学因素对骨折修复的影响以及年龄和骨质疏松的影响。

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