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The damage and healing of bone in the disuse state under mechanical and electromagnetic loadings

机译:机械和电磁载荷下骨骨骨损伤及愈合

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摘要

The damage behaviour of bone tissues has attracted many interests of scientists and engineers due to it can repair itself. This renewing process is performed by bone remodelling. In the present paper, we establish a mechanism-based damage model to rationalize the damage evolution law of bone under simultaneously applied mechanical and electromagnetic fields. An evolutionary law of bone damage and the corresponding modelling methodology are presented to analyze the complicated damage/repair behaviour of bone under multi-fields. The model for bone injury under disuse status is established. Then the numerical examples are considered to verify the present theoretical model and the influence of those mechanical and non-mechanical factors on the bone damage and healing are simulated based on the new damage model. It is shown by result that compared with mechanical stimulation, electromagnetic field is a kind of more reliable method for improving disuse osteoporosis with relatively small side effect.
机译:由于它可以修复自己,骨组织的损伤行为吸引了许多科学家和工程师的利益。这种更新过程由骨重塑进行。在本文中,我们建立了一种基于机制的损伤模型,以合理化了机械和电磁场下的骨骼的损伤演化法。提出了一种进化的骨损伤定律和相应的建模方法,分析了多场骨的复杂损伤/修复行为。建立了废弃状态下的骨损伤模型。然后,认为数值示例是为了验证本理论模型,并基于新的损伤模型模拟了对骨损伤和愈合的那些机械和非机械因素的影响。结果表明,与机械刺激相比,电磁场是一种更可靠的方法,用于改善具有相对较小的副作用的废弃物骨质疏松症。

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