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An investigation of human cortical bone's response to mechanical stimuli

机译:人体皮质骨对机械刺激反应的调查

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The response of human cortical bone to mechanical stimuli is investigated in this paper. Bone remodeling which is the underlying mechanism that underpins bone formation and absorption is mathematically modelled at cellular level, based on which the numerical analysis has been conducted. The control mechanism of mechanical bone remodeling at cellular level was investigated by means of an extensive parametric study on a theoretical model described in this paper. From a perspective of control mechanism, it was found that there are several control mechanisms working simultaneously in bone remodeling which is a complex process. Typically, an extensive parametric study was carried out for investigating model parameter space related to cell differentiation and apoptosis which can describe the fundamental cell lineage behaviors. After analyzing all the combinations of 728 permutations in six model parameters, we have identified a small number of parameter combinations that can lead to physiologically realistic responses which are similar to theoretically idealized physiological responses. The results presented in the work enhanced our understanding on mechanical bone remodeling and the identified control mechanisms can help researchers to develop combined pharmacological-mechanical therapies to treat bone loss diseases such as osteoporosis.
机译:本文研究了人皮质骨与机械刺激的响应。骨重塑是支撑骨形成和吸收的潜在机制,基于该骨水平在数学上进行数学建模,基于该数值分析已经进行了数值分析。通过对本文描述的理论模型的广泛参数研究研究了细胞水平的机械骨重塑的控制机制。从控制机制的角度来看,发现有几种控制机制在骨重塑中同时工作,这是一个复杂的过程。通常,进行广泛的参数研究,用于调查与细胞分化和细胞凋亡相关的模型参数空间,这可以描述基本细胞谱系行为。在六个模型参数中分析728个排列的所有组合后,我们已经确定了少量参数组合,其可以导致生理上的现实反应,其类似于理论上理想的生理反应。在工作中提出的结果增强了我们对机械骨重塑的理解,并且所确定的对照机制可以帮助研究人员开发组合的药理学疗法,以治疗骨质疏松症等骨丢失疾病。

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