A qualitative engineering analysis of occlusion effects on mandibular fracture repair mechanics.

Journal of dental biomechanics Pub Date : 2011-01-01 Epub Date: 2011-09-29 DOI:10.4061/2011/752741
Thomas R Katona
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Abstract

Objectives. The purpose of this analytical study was to examine and critique the engineering foundations of commonly accepted biomechanical principles of mandible fracture repair. Materials and Methods. Basic principles of static equilibrium were applied to intact and plated mandibles, but instead of the traditional lever forces, the mandibles were subjected to more realistic occlusal forces. Results. These loading conditions produced stress distributions within the intact mandible that were very different and more complex than the customary lever-based gradient. The analyses also demonstrated the entirely different mechanical environments within intact and plated mandibles. Conclusions. Because the loading and geometry of the lever-idealized mandible is incomplete, the associated widely accepted bone stress distribution (tension on top and compression on the bottom) should not be assumed. Furthermore, the stress gradients within the bone of an intact mandible should not be extrapolated to the mechanical environment within the plated regions of a fractured mandible.

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咬合对下颌骨骨折修复力学影响的定性工程分析。
目的。本分析研究的目的是对下颌骨骨折修复中普遍接受的生物力学原理的工程基础进行检查和批判。材料和方法。将静态平衡的基本原理应用于完整的下颌骨和电镀下颌骨,但下颌骨受到的不是传统的杠杆力,而是更真实的咬合力。结果。这些加载条件在完整下颌骨内产生的应力分布与传统的杠杆梯度截然不同,也更加复杂。分析还显示了完整下颌骨和电镀下颌骨内完全不同的机械环境。结论。由于杠杆理想化下颌骨的载荷和几何形状不完整,因此不应假定相关的公认骨应力分布(上部拉伸,下部压缩)。此外,不应将完整下颌骨骨骼内的应力梯度推断为骨折下颌骨电镀区域内的机械环境。
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