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不同种植体螺纹结构及其有无平台转移设计的三维有限元分析比较。

Comparative Evaluation of Stress Distribution around Various Threaded Implants with and without Platform Switch: A 3-D Finite Element Analysis.

机构信息

Department of Prosthodontics, Institute of Dental Sciences, Siksha 'O' Anusandhan (Deemed to be University), Bhubaneswar, Odisha, India.

Department of Prosthodontics, Institute of Dental Sciences, Siksha 'O' Anusandhan (Deemed to be University), Bhubaneswar, Odisha, India, Phone: +91 8457011217; e-mail:

出版信息

J Contemp Dent Pract. 2020 Aug 1;21(8):891-896.

Abstract

AIM

The purpose of this study was to compare the stress distribution around various thread design implants with or without platform switching in the maxillary posterior region.

MATERIALS AND METHODS

Stress-based performances of four different thread design implants (single, double, triple, and asymmetric thread design each with or without platform switching) were analyzed by the three-dimensional finite element method under a static load of 100 N at 15° oblique direction buccolingually at the central portion of the abutment. A geometric model of the posterior maxillary segment (first molar region) with an implant and abutment was modeled using the CATIA V5R19 software. Type IV bone quality was approximated and complete osseous integration was assumed.

RESULTS

The von Mises stresses recorded around the neck of the fourthread design implants without platform switching were greater than the platform switching variety. The single-threaded implant with platform switching showed the lowest amount of von Mises stress. Additionally, total displacement or micromovement of single, triple, and asymmetric thread implants with platform switching was found to be greater than the without platform switching variety. Further, the total displacement of the single-threaded implant without platform switching was lowest.

CONCLUSION

Implant surface design, platform switching, and site of placement affect load transmission mechanisms. Due to low crestal resorption, single thread design with platform switching is preferred. The success of an implant in the maxillary molar region is more challenging in terms of the density of bone and the worst load transfer mechanism. With the right kind of implant surface design selection, this can be reduced to a great extent by the preservation of crest of the ridge.

CLINICAL SIGNIFICANCE

Crestal bone resorption following implant placement is an important issue. An optimum implant design with a single thread having a platform switch could compensate for this issue to a great extent.

摘要

目的

本研究旨在比较上颌后牙区不同螺纹设计种植体(单螺纹、双螺纹、三螺纹和非对称螺纹设计,每种设计均有无平台转移)在有或无平台转移情况下的种植体周围的应力分布。

材料和方法

通过三维有限元法,在 15°颊舌向斜向 100N 的静态载荷下,分析了四种不同螺纹设计种植体(单螺纹、双螺纹、三螺纹和非对称螺纹设计,每种设计均有无平台转移)的基于应力的性能。在后牙上颌段(第一磨牙区)的种植体和基台的几何模型使用 CATIA V5R19 软件建模。模拟了 IV 型骨质量,并假设完全骨整合。

结果

无平台转移的第四种螺纹设计种植体颈部周围记录的 Von Mises 应力大于有平台转移的品种。带平台转移的单螺纹种植体显示出最低的 Von Mises 应力。此外,带平台转移的单、三、非对称螺纹种植体的总位移或微移发现大于无平台转移的品种。进一步,无平台转移的单螺纹种植体的总位移最低。

结论

种植体表面设计、平台转移和放置部位影响负载传递机制。由于冠部吸收低,带平台转移的单螺纹设计更受欢迎。上颌磨牙区种植体的成功更具挑战性,因为骨密度和最差的负载传递机制。通过选择正确的种植体表面设计,可以在很大程度上通过保留牙槽嵴来减少这种情况。

临床意义

种植体放置后牙槽嵴骨吸收是一个重要问题。具有单螺纹和平台转换的最佳种植体设计可以在很大程度上补偿这个问题。

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