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New Suggestions for the Mechanical Control of Bone Remodeling

机译:骨重塑机械控制的新建议

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摘要

Bone is constantly renewed over our lifetime through the process of bone (re)modeling. This process is important for bone to allow it to adapt to its mechanical environment and to repair damage from everyday life. Adaptation is thought to occur through the mechanosensitive response controlling the bone-forming and -resorbing cells. This report shows a way to extract quantitative information about the way remodeling is controlled using computer simulations. Bone resorption and deposition are described as two separate stochastic processes, during which a discrete bone packet is removed or deposited from the bone surface. The responses of the bone-forming and -resorbing cells to local mechanical stimuli are described by phenomenological remodeling rules. Our strategy was to test different remodeling rules and to evaluate the time evolution of the trabecular architecture in comparison to what is known from μ-CT measurements of real bone. In particular, we tested the reaction of virtual bone to standard therapeutic strategies for the prevention of bone deterioration, i.e., physical activity and medications to reduce bone resorption. Insensitivity of the bone volume fraction to reductions in bone resorption was observed in the simulations only for a remodeling rule including an activation barrier for the mechanical stimulus above which bone deposition is switched on. This is in disagreement with the commonly used rules having a so-called lazy zone.
机译:通过骨骼(重新)建模的过程,骨骼在我们的一生中不断更新。这个过程对骨骼很重要,以使其适应其机械环境并修复日常生活中的损伤。认为适应是通过控制骨形成和吸收细胞的机械敏感性反应而发生的。该报告显示了一种提取定量信息的方法,该定量信息涉及使用计算机模拟控制重塑的方式。骨骼的吸收和沉积被描述为两个独立的随机过程,在此过程中,离散的骨包从骨骼表面移除或沉积。现象学的重塑规则描述了骨形成和吸收细胞对局部机械刺激的反应。我们的策略是测试不同的重塑规则,并与从真实骨骼的μ-CT测量中得知的结果相比,评估小梁结构的时间演变。尤其是,我们测试了虚拟骨对标准治疗策略的反应,以预防骨退化,即体育锻炼和减少骨吸收的药物。在模拟中,仅对于包括机械刺激的激活屏障的重塑规则,观察到骨体积分数对骨吸收减少的不敏感性,在此之上激活了骨沉积。这与具有所谓的懒惰区的通常使用的规则不同。

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