A review of computational models of bone fracture healing

被引:0
|
作者
Monan Wang
Ning Yang
Xinyu Wang
机构
[1] Harbin University of Science and Technology,School of Mechanical and Power Engineering
关键词
Fracture healing; Computational biology; Mechanical stimuli; Biochemical signals;
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学科分类号
摘要
In the process of fracture healing, there are many cellular and molecular events that are regulated by mechanical stimuli and biochemical signals. To explore the unknown mechanisms underlying bone fracture healing, optimal fixation configurations, and the design of new treatment strategies, computational healing models provide a good solution. With the simulation of mechanoregulatory healing models, bioregulatory healing models and coupled mechanobioregulatory healing models, healing outcomes can be predicted. In this review, first, we provide an overview of current computational healing models. Their clinical applications are also presented. Then, the limitations of current models and their corresponding solutions are discussed in this review. Finally, future potentials are presented in this review. Multiscale modeling from the intracellular level to the tissue level is essential, and more clinical applications of computational healing models are required in future research.
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页码:1895 / 1914
页数:19
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