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用于生物力学模拟的试验台开发——下颌力的初步研究

Development of a test bench for biomechanical simulation-a preliminary study of mandibular forces.

作者信息

Ben Achour Anas, Apfeld Florian, Lauer Günter, Bräuer Christian, Leonhardt Henry, Franke Adrian, Lipphaus Andreas, Teicher Uwe, Witzel Ulrich, Schröder Tom Alexander

机构信息

Fraunhofer Institute for Machine Tools and Forming Technology IWU, Dresden, Germany.

Biomechanics Research Group, Chair of Product Development, Faculty of Mechanical Engineering, Ruhr University Bochum, Bochum, Germany.

出版信息

Front Bioeng Biotechnol. 2024 Feb 26;12:1335159. doi: 10.3389/fbioe.2024.1335159. eCollection 2024.

Abstract

The aim of this study is to develop a test bench, which integrates different complexity levels and enables in that way a flexible and dynamic testing for mid and long term intervals as well as testing of maximum loads till implant failure of different osteosynthesis systems on the mandible. For this purpose, an analysis of the state of the art regarding existing test benches was combined with interviews of clinical experts to acquire a list of requirements. Based on these requirements a design for a modular test bench was developed. During the implementation of the test stand, functional tests were continuously carried out and improvements made. Depending on the level of complexity, the test bench can be used either as an incorporated variant or as a standalone solution. In order to verify the performance and the degree of fulfilment of the requirements of these two variants of the test bench, preliminary studies were carried out for all levels of complexity. In these preliminary studies, commercially available osteosynthesis and reconstruction plates were investigated for their biomechanical behaviour and compared with data from the literature. In total, fourteen test runs were performed for the different levels of complexity. Firstly, five test runs were executed to test the simplified load scenario in the incorporated variant of the test bench. High forces could be transmitted without failure of the miniplates. Secondly a quasi-static test scenario was examined using the incorporated variant with simplified load insertion. Five experiments with a number of cycles between 40,896 and 100,000 cycles were carried out. In one case the quasi-static testing resulted in a fracture of the tested reconstruction plate with a failure mode similar to the clinical observations of failure. The last four test runs were carried out using the standalone variant of the test bench simulating complex load patterns via the insertion of forces through imitated muscles. During the test runs joint forces were measured and the amplitude and vector of the resulting joint forces were calculated for both temporomandibular joints. Differences in the force transmission depending on the implant system in comparison to the zero sample could be observed. The presented modular test bench showed to be applicable for examination of the biomechanical behavior of the mandible. It is characterized by the adjustability of the complexity regarding the load patterns and enables the subsequent integration of further sensor technologies. Follow-up studies are necessary to further qualify and optimize the test bench.

摘要

本研究的目的是开发一个测试平台,该平台集成了不同的复杂程度,从而能够对中长期时间段进行灵活、动态的测试,并对不同下颌骨接骨系统直至植入物失效的最大负荷进行测试。为此,对现有测试平台的技术现状进行了分析,并与临床专家进行了访谈,以获取一系列需求。基于这些需求,开发了一种模块化测试平台的设计。在测试台的实施过程中,不断进行功能测试并进行改进。根据复杂程度,测试平台既可以作为内置变体使用,也可以作为独立解决方案使用。为了验证测试平台这两种变体的性能和满足需求的程度,对所有复杂程度级别都进行了初步研究。在这些初步研究中,对市售的接骨和重建钢板的生物力学行为进行了研究,并与文献数据进行了比较。总共针对不同的复杂程度级别进行了14次测试运行。首先,进行了5次测试运行,以测试测试平台内置变体中的简化负荷情况。在微型钢板未失效的情况下可以传递高力。其次,使用具有简化负荷插入的内置变体检查了准静态测试情况。进行了5次实验,循环次数在40896至100000次之间。在一个案例中,准静态测试导致测试的重建钢板断裂,其失效模式与临床观察到的失效情况相似。最后4次测试运行是使用测试平台的独立变体进行的,通过模拟肌肉插入力来模拟复杂的负荷模式。在测试运行期间,测量了关节力,并计算了两个颞下颌关节的合成关节力的幅度和矢量。与零样本相比,可以观察到取决于植入系统的力传递差异。所展示的模块化测试平台显示适用于检查下颌骨的生物力学行为。它的特点是负荷模式的复杂程度具有可调节性,并能够随后集成进一步的传感器技术。后续研究对于进一步鉴定和优化测试平台是必要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0469/10925755/39e5e9cc0a5a/fbioe-12-1335159-g001.jpg

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