种植体几何形状对种植体周围骨表面应变行为的影响:三维分析

IF 3.7 2区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE
Moritz Löhlein, Constantin Motel, Manfred Wichmann, Ragai Edward Matta
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引用次数: 0

摘要

为了确保种植体的长期成功,了解种植体到周围骨的力传递是至关重要的。在牙科,生物工程方法被应用于研究这些过程。本研究采用三维光学摄像系统结合数字图像相关技术,分析不同种植体几何形状对猪下颌骨载荷下表面应变行为的影响。四种不同的种植体在三个不同的加载方向(轴向、非轴向15°和非轴向30°)上承受200 N的力。在轴向载荷下,与锥形种植体相比,平行壁种植体对种植体周围骨的表面应变值更低。然而,当受到非轴向载荷时,与轴向条件相比,这些平行壁植入物的应变相对增加了约2.96倍。在30°非轴向角度下,直径较小的长锥形种植体(BLX 3.75)比直径较大、长度较短的种植体产生更低的种植体周围骨应变,而短锥形种植体(BLT)从轴向到非轴向载荷的应变相对增加(系数~1.49)更低。在非轴向载荷下,与直径较大、长度较短的种植体相比,直径较小的长锥形种植体在种植体周围骨中的应变较低。结果表明,非轴向载荷比轴向载荷产生更高的应变。因此,选择合适的种植体几何形状和正确的种植体角度对种植的成功有很大的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Influence of Implant Geometry on the Surface Strain Behavior of Peri-Implant Bone: A 3D Analysis

Influence of Implant Geometry on the Surface Strain Behavior of Peri-Implant Bone: A 3D Analysis

To ensure long-term implant success, it is crucial to understand the force transmission from the implant to the surrounding bone. In dentistry, bioengineering methods are applied to investigate these processes. The aim of this study was to analyze the influence of different implant geometries on the surface strain behavior of porcine mandibles under load using a 3D optical camera system in combination with digital image correlation. Four different implant types were subjected to a force of 200 N in three different loading directions (axial, non-axial 15°, and non-axial 30°). Under axial loading, parallel-walled implants exhibited lower surface strain values on the peri-implant bone compared with tapered implants. However, when subjected to non-axial loading, these parallel-walled implants showed a substantial relative increase in strain by approximately a factor of 2.96 compared with axial conditions. At a 30° non-axial angle, long, tapered implants with a smaller diameter (BLX 3.75) produced lower peri-implant bone strains than implants with larger diameters and shorter lengths, while short, tapered implants (BLT) demonstrated a lower relative increase in strain (factor ~1.49) from axial to non-axial loading. Under non-axial loading, long, tapered implants with a small diameter resulted in lower strains in the peri-implant bone compared with implants with a larger diameter and shorter length. It was found that non-axial loads lead to higher strains than axial loads. Therefore, the success of implantation could be significantly influenced by selecting an appropriate implant geometry and the correct angulation of the implant.

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来源期刊
CiteScore
6.00
自引率
13.90%
发文量
103
审稿时长
4-8 weeks
期刊介绍: The goal of Clinical Implant Dentistry and Related Research is to advance the scientific and technical aspects relating to dental implants and related scientific subjects. Dissemination of new and evolving information related to dental implants and the related science is the primary goal of our journal. The range of topics covered by the journals will include but be not limited to: New scientific developments relating to bone Implant surfaces and their relationship to the surrounding tissues Computer aided implant designs Computer aided prosthetic designs Immediate implant loading Immediate implant placement Materials relating to bone induction and conduction New surgical methods relating to implant placement New materials and methods relating to implant restorations Methods for determining implant stability A primary focus of the journal is publication of evidenced based articles evaluating to new dental implants, techniques and multicenter studies evaluating these treatments. In addition basic science research relating to wound healing and osseointegration will be an important focus for the journal.
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