微结构骨动力学模型的计算框架及其评价

Taehyong Kim, W. Hwang, A. Zhang, M. Ramanathan
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引用次数: 4

摘要

骨头是构成身体骨架的坚固的器官。骨由活组织组成,骨重塑在不同部位异步发生,涉及破骨细胞的吸收,然后是成骨细胞形成新骨。虽然骨骼是一种简单的矿物结构的复合材料,但它的结构对骨骼的强度有很大的影响。在本文中,我们开发了一个能够定量评估骨矿物质密度和骨微结构的微结构骨动力学建模计算框架。本文主要研究基于骨网络模型的骨微观结构和骨重塑动力学。首先,我们基于我们的骨模型生成一个反映骨微观结构的骨网络。接下来,我们将介绍成骨细胞和破骨细胞之间自分泌和旁分泌相互作用的数学模型。它允许我们计算细胞种群动态和骨量的变化在骨重塑的多个地点。最后,我们用我们的评估方法分析了代表健康骨和骨质疏松症骨的两种骨网络。我们的研究提供了一个骨重塑模拟的初步框架,可以解释骨生物学中的实验观察,以探索骨质疏松症等骨疾病。
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Computational Framework for Microstructural Bone Dynamics Model and Its Evaluation
Bones are firm and solid organs that form the skeleton of the body. Bone consists of living tissues with which bone remodeling occurs asynchronously at various sites and involves resorption by osteoclast, followed by formation of new bone by osteoblast. Although bone is a simple composite of a mineral structure, its structure highly contributes to the strength of the bone. In this paper, we develop a computational framework for microstructural bone dynamics modeling which is capable of quantitative assessment of bone mineral density and bone micro-architecture. Our paper focuses on bone microstructure and remodeling dynamics based on a bone network model. First, we generate a bone network based on our bone model reflecting bone microstructure. Next, we introduce a mathematical model of autocrine and paracrine interactions among osteoblast and osteoclast. It allows us to calculate cell population dynamics and changes in bone mass at multiple sites of bone remodeling. Last, we analyze two bone networks representing healthy bone and bone with osteoporosis with our evaluation measurements. Our study provides an initial framework of bone remodeling simulation that can explain experimental observations in bone biology to explore bone diseases such as osteoporosis.
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