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全口 4 颗种植体即刻负重中不同悬臂长度的倾斜种植体周围的应力的生物力学分析。

Biomechanical analysis of stress around the tilted implants with different cantilever lengths in all-on-4 concept.

机构信息

State Key Laboratory of Military Stomatology & National Clinical Research Center for Oral Diseases & Shaanxi Key Laboratory of Stomatology, Department of Pediatric Dentistry, School of Stomatology, The Fourth Military Medical University, No.145, Changle West Road, Xincheng District, Shaanxi, Xi'an, China.

State Key Laboratory of Military Stomatology & National Clinical Research Center for Oral Diseases & Shaanxi Key Laboratory of Oral Diseases, Department of Prosthodontics, School of Stomatology, The Fourth Military Medical University, No.145, Changle West Road, Xincheng District, Shaanxi, Xi'an, China.

出版信息

BMC Oral Health. 2022 Nov 5;22(1):469. doi: 10.1186/s12903-022-02520-8.

Abstract

BACKGROUND

Many clinical studies have reported the high success rate of the All-on-4 concept. In the present study, we aimed to compare the stress distribution with different tilted distal implants and cantilever lengths in an All-on-4 system using the two-dimensional photoelastic method and to establish the All-on-4 implant photoelastic model by computer-aided design (CAD) and rapid prototyping (RP).  METHODS: The data of the human edentulous mandible were acquired by computed tomography (CT). Three human edentulous mandible All-on-4 implant models with different distally inclined implant holes were fabricated using Mimic, Geomagic Studio software, and a light solidifying fast shaping machine. Then the final photoelastic models were established through the traditional method. Each of the three models had four NobelSpeedy Replace implants between the interforaminal regions. The two posterior implants were placed 0, 15, and 45 degrees distally before the mental foramen. The four implants were splinted by wrought cobalt-chromium alloy frameworks. Each of the three photoelastic models was submitted to a 150 N vertical load at five points on the framework: the central fossa of the mandibular first molar, and 0 mm, 5 mm, 10 mm, and 15 mm of the cantilever length. The stress produced in the models was photographed with a digital camera, and the highest value of the stressed fringe pattern was recorded.

RESULTS

The All-on-4 implant photoelastic model established by CAD and RP was highly controllable and easy to modify. The position and inclination of implants were accurate, and the frameworks could be passively emplaced. The stress values were higher around a single tilted implant compared with the distal implant in All-on-4 with the same inclination. The 0-degree distal implant and 45-degree distal implant demonstrated the highest and lowest stress when loading at the central fossa of the mandibular first molar, respectively. With the same inclination of distal implant, the peri-implant bone stress increased as the length of cantilever increased.

CONCLUSION

The method of establishing the All-on-4 implant photoelastic model by CAD and RP was highly controllable, convenient, fast, and accurate. The tilted implants splinted in the fully fixed prosthesis with reduced cantilever lengths did not increase the stress level compared with the vertical distal implants.And this illustrated that the influence of cantilever on stress distribution was greater than the influence of implant inlination.

摘要

背景

许多临床研究报告了 All-on-4 概念的高成功率。在本研究中,我们旨在使用二维光弹法比较不同倾斜远中种植体和悬臂长度的 All-on-4 系统中的应力分布,并通过计算机辅助设计 (CAD) 和快速成型 (RP) 建立 All-on-4 种植体光弹模型。

方法

通过计算机断层扫描 (CT) 获取无牙下颌的人体数据。使用 Mimic、Geomagic Studio 软件和光固化快速成型机制作了三个具有不同远中倾斜种植孔的无牙下颌 All-on-4 种植体模型。然后通过传统方法建立最终的光弹模型。三个模型中的每一个都在眶下区之间有四个 NobelSpeedy Replace 种植体。两个后牙种植体放置在颏孔前 0、15 和 45 度远中。四个种植体由锻造钴铬合金框架连接。三个光弹模型中的每一个都在框架的五个点上承受 150 N 的垂直载荷:下颌第一磨牙的中央窝,以及悬臂长度为 0、5、10 和 15 mm。用数码相机拍摄模型中产生的应力,记录下应力条纹的最高值。

结果

通过 CAD 和 RP 建立的 All-on-4 种植体光弹模型具有高度的可控性和易于修改性。种植体的位置和倾斜度准确,框架可以被动放置。与具有相同倾斜度的 All-on-4 中的远中倾斜种植体相比,单个倾斜种植体周围的应力值更高。当在下颌第一磨牙的中央窝加载时,0 度远中种植体和 45 度远中种植体分别表现出最高和最低的应力。在相同的远中种植体倾斜度下,随着悬臂长度的增加,种植体周围骨的应力增加。

结论

通过 CAD 和 RP 建立 All-on-4 种植体光弹模型的方法具有高度的可控性、方便、快速和准确。用减小悬臂长度的全固定义齿固定倾斜种植体不会增加与垂直远中种植体相比的应力水平。这表明悬臂对应力分布的影响大于种植体倾斜度的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73fd/9636816/db08b319d43b/12903_2022_2520_Fig1_HTML.jpg

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