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用于牙种植体的聚醚醚酮(PEEK)与人工骨的应力屏蔽

PEEK stress-shielding with artificial bone for dental implants.

作者信息

Yoshida Eiji, Nomoto Rie, Amitani Yasuharu, Hayakawa Tohru

机构信息

Department of Dental Engineering, Tsurumi University School of Dental Medicine.

Department of Mathematics, Tsurumi University School of Dental Medicine.

出版信息

Dent Mater J. 2025 Jan 31;44(1):121-127. doi: 10.4012/dmj.2024-203. Epub 2025 Jan 11.

Abstract

Dental titanium implants and their surface modifications markedly improve implant biocompatibility. However, studies evaluating the mechanical biocompatibility of implants are scarce. In particular, the analysis of mechanical biocompatibility deficiencies leading to stress shield-induced bone resorption. Recently, we focused on using PEEK as a dental material. This study explored the hypothesis that PEEK implants improve the stress shielding of titanium. In this study, artificial bone surfaces were examined to measure strains on the artificial bone surface under compressive loading with the implants in place. Additionally, 3D image analysis of the fracture state inside the bone tissue was performed using micro-CT (µCT). This hypothesis was supported by µCT imaging analysis of bone tissue changes under stress, which revealed that PEEK implants transfer greater loads than titanium implants. µCT imaging and statistical analysis showed that bone porosity had little effect on stress shielding.

摘要

牙科钛植入物及其表面改性显著提高了植入物的生物相容性。然而,评估植入物机械生物相容性的研究却很少。特别是对导致应力屏蔽性骨吸收的机械生物相容性缺陷的分析。最近,我们专注于使用聚醚醚酮(PEEK)作为牙科材料。本研究探讨了PEEK植入物可改善钛的应力屏蔽这一假设。在本研究中,对人工骨表面进行了检查,以测量在植入物就位的情况下压缩载荷作用下人工骨表面的应变。此外,使用微型计算机断层扫描(µCT)对骨组织内部的骨折状态进行了三维图像分析。µCT对应力作用下骨组织变化的成像分析支持了这一假设,该分析表明PEEK植入物比钛植入物传递更大的载荷。µCT成像和统计分析表明,骨孔隙率对应力屏蔽的影响很小。

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