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平面加载下扁平下颌骨中螺钉周围应力分布的分析研究

Analytical Study of Stress Distributions around Screws in Flat Mandibular Bone under In-Plane Loading.

作者信息

Huo Jinxing, Hirsch Jan-Michaél, Gamstedt E Kristofer

机构信息

Division of Applied Mechanics, Department of Materials Science and Engineering, Uppsala Univeristy, Box 35, SE-751 03 Uppsala, Sweden.

Department of Surgical Sciences, Oral & Maxillofacial Surgery, Uppsala University, SE-751 85 Uppsala, Sweden.

出版信息

Bioengineering (Basel). 2023 Jun 30;10(7):786. doi: 10.3390/bioengineering10070786.

Abstract

A known complication for mechanically loaded bone implants is the instability due to screw loosening, resulting in infection and the non-union of fractures. To investigate and eventually prevent such bone degradation, it is useful to know the stress state in the bone around the screw. Considering only in-plane loadings and simplifying the mandibular bone into an orthotropic laminated plate, the analysis was reduced to a two-dimensional pin-loaded plate problem. An analytic model, based on the complex stress analysis, was introduced to the bone biomechanics field to obtain the stress distributions around the screw hole in the bone. The dimensionless normalized stresses were found to be relatively insensitive to the locations of the screw hole over the mandible. Parametric analyses were carried out regarding the friction coefficient and load direction. It was found that the load direction had a negligible influence. On the contrary, the friction coefficient had a significant effect on the stress distributions. Whether the screw was well bonded or not thus played an important role. The proposed analytic model could potentially be used to study bone failure together with stress-based failure criteria.

摘要

机械加载的骨植入物的一个已知并发症是由于螺钉松动导致的不稳定,进而引发感染和骨折不愈合。为了研究并最终预防这种骨质降解,了解螺钉周围骨骼的应力状态是很有用的。仅考虑平面内载荷并将下颌骨简化为正交各向异性层合板,分析就简化为二维销加载板问题。一种基于复应力分析的解析模型被引入到骨生物力学领域,以获得骨中螺钉孔周围的应力分布。发现无量纲归一化应力对下颌骨上螺钉孔的位置相对不敏感。针对摩擦系数和载荷方向进行了参数分析。发现载荷方向的影响可忽略不计。相反,摩擦系数对应力分布有显著影响。因此,螺钉是否良好粘结起着重要作用。所提出的解析模型有可能与基于应力的失效准则一起用于研究骨失效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eeda/10376365/46f6b2604559/bioengineering-10-00786-g001.jpg

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