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A mathematical model for bone healing predictions under the ultrasound effect

机译:超声作用下骨愈合预测的数学模型

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The bone healing process involves a sequence of cellular actions and interactions, regulated by biochemical and mechanical signals. Experimental studies have shown that ultrasound accelerates bone solidification and enhances the underlying healing mechanisms. We present a mathematical model for deriving predictions of bone healing under the presence of ultrasound. The model consists of i) partial differential equations which describe the spatiotemporal evolution cells, growth factors, tissues and ultrasound acoustic pressure and ii) velocity equations of endothelial tip cells which determine the development of the blood vessel network. The results showed that ultrasound accelerates bone healing primarily by enhancing blood vessel growth. Thus the proposed model could be useful for the ultrasonic evaluation of bone fracture healing.
机译:骨愈合过程涉及一系列由生物化学和机械信号调节的细胞作用和相互作用。实验研究表明,超声加速骨骼固化并增强潜在的愈合机制。我们提出了一种数学模型,用于在超声的存在下推导骨骼愈合的预测。该模型包括:i)偏微分方程,描述了时空演化细胞,生长因子,组织和超声声压; ii)决定血管网络发育的内皮尖端细胞的速度方程。结果表明,超声主要通过增强血管生长来加速骨愈合。因此,所提出的模型可用于超声评估骨折愈合。

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