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Quality of alveolar bone - Structure-dependent material properties and design of a novel measurement technique.

机译:牙槽骨的质量-取决于结构的材料特性和一种新颖的测量技术的设计。

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The evidence for the efficiency of clinical methods used to assess the quality of alveolar bone in terms of a density measure prior to and during dental implant surgery is limited. The aim of this paper is to describe the biomechanical background which can be used as a basis for determining the bone quality by measuring the elastic properties of the bone and to design a novel device for the determination of the bone quality during dental implant surgery. Applying material mechanical equations for porous and cellular structured models, the elastic material properties (modulus of elasticity) of cellular and cortical bone as porous structures were approximated over the whole range of relative bone mineral density of trabecular and cortical bone. Based on a circular disc with a central hole reflecting a horizontal cross-section of an implant socket, the mechanical effects of expanding the central hole were studied. Subsequently, the clinical situation of a socket prepared for the placement of a dental implant (depth: 10 mm; diameter 3.5 mm) was simulated using three-dimensional (3D) finite element analysis. A loading device (thickness: 3.5 mm) was placed in the trabecular part of the socket and expanded, while the resulting pressure was recorded and used for the calculation of an elastic modulus. Finite element analysis revealed that it was possible to estimate the bone quality by applying the measurement technique proposed. Maximum deviations of 6% of the experimentally determined elastic modulus from the setpoint elastic modulus were found. Measuring the internal pressure in a drill hole, e.g., in an implant socket caused by a defined expansion of a rotational symmetric loading device, could be used for establishing a clinically meaningful test system for the objective classification of alveolar bone.
机译:关于在种植牙之前和之中通过密度测量来评估牙槽骨质量的临床方法有效性的证据有限。本文的目的是描述可作为通过测量骨骼的弹性特性来确定骨骼质量的基础的生物力学背景,并设计一种新颖的装置,用于在种植牙手术期间确定骨骼质量。应用多孔和多孔结构模型的材料力学方程,在小梁和皮质骨的相对骨矿物质密度的整个范围内,近似多孔和皮质骨作为多孔结构的弹性材料特性(弹性模量)。基于具有中心孔的圆盘,该中心孔反映了种植体插槽的水平横截面,研究了扩展中心孔的机械效果。随后,使用三维(3D)有限元分析模拟了准备放置牙科植入物(深度:10毫米;直径3.5毫米)的插座的临床情况。将装载装置(厚度:3.5mm)放置在承窝的小梁部分中并使其膨胀,同时记录所得的压力并将其用于弹性模量的计算。有限元分析表明,可以通过使用建议的测量技术来估算骨骼质量。发现实验确定的弹性模量与额定弹性模量的最大偏差为6%。测量由旋转对称加载装置的确定的膨胀引起的钻孔中例如植入物窝中的内部压力,可以用于建立临床上有意义的用于牙槽骨客观分类的测试系统。

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