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Integrating Degenerative Mechanisms in Bone and Cartilage: a Multiscale Approach

机译:整合骨质和软骨的退化机制:多尺度方法

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At the whole organ level, degenerative mechanisms in bone and cartilage are primarily attributed to modifications in loading pattern. Either a change in magnitude or location can initiate a degenerative path. At the micro scale we often see changes in structure such as porosity increase in bone and fibrillation in cartilage. These changes contribute to a reduced structural integrity that weakens the bulk strength of tissue. Finally, at the cell level we have modeling and remodeling pathways that may be disrupted through disease, drugs and altered stimulus from the micro and macro scales. In order to understand this entire process and the roles each level plays a multiscale modeling framework is necessary. This framework can take whole body loadings and pass information through finer spatial scales in order to understand how everyday dynamic movements influence micro and cellular response. In a similar manner, cellular and microstructural processes regulate whole bulk properties and modify whole organ strength. In this study we highlight the multiscale links developed as part of the open-source ontologies for the Physiome Project using the lower limb as an example. We consider the influence of remodeling in (i) anabolic treatments in cortical bone; and (ii) subchondral bone and cartilage degeneration.
机译:在整个器官水平下,骨和软骨的退行性机制主要归因于装载模式的修改。幅度或位置的变化可以发起退行性路径。在微观级别,我们经常看到结构的变化,例如软骨中骨骼和颤动的孔隙率增加。这些变化有助于降低的结构完整性,削弱组织的体积强度。最后,在细胞层面,我们具有可能通过疾病,药物和来自微观和宏观尺度的改变的刺激来破坏的建模和重塑途径。为了理解这一整个过程,每个级别播放多尺度建模框架的角色都是必要的。该框架可以通过更精细的空间尺度来获取整个身体装载并通过信息,以了解日常动态运动如何影响微观和蜂窝响应。以类似的方式,细胞和微观结构过程调节整个散装性质并改变整个器官强度。在这项研究中,我们突出显示了作为使用下肢作为示例的物理学项目的开源本体部分开发的多尺度链接。我们考虑重塑在皮质骨中(I)合成原因处理的影响; (ii)骨髓内骨和软骨变性。

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