Augat Peter, Hast Michael W, Schemitsch Geoffrey, Heyland Mark, Trepczynski Adam, Borgiani Edoardo, Russow Gabriele, Märdian Sven, Duda Georg N, Hollensteiner Marianne, Bottlang Michael, Schemitsch Emil H
Institute for Biomechanics, Berufsgenossenschaftliche Unfallklinik Murnau, Murnau, Germany.
Paracelsus Medical University, Salzburg, Austria.
OTA Int. 2021 Apr 15;4(2 Suppl). doi: 10.1097/OI9.0000000000000099. eCollection 2021 Apr.
This manuscript summarizes presentations of a symposium on key considerations in design of biomechanical models at the 2019 Basic Science Focus Forum of the Orthopaedic Trauma Association. The first section outlines the most important characteristics of a high-quality biomechanical study. The second section considers choices associated with designing experiments using finite element modeling versus synthetic bones versus human specimens. The third section discusses appropriate selection of experimental protocols and finite element analyses. The fourth section considers the pros and cons of use of biomechanical research for implant design. Finally, the fifth section examines how results from biomechanical studies can be used when clinical evidence is lacking or contradictory. When taken together, these presentations emphasize the critical importance of biomechanical research and the need to carefully consider and optimize models when designing a biomechanical study.
本手稿总结了在2019年骨科创伤协会基础科学聚焦论坛上关于生物力学模型设计关键考量因素研讨会的报告内容。第一部分概述了高质量生物力学研究的最重要特征。第二部分探讨了在设计实验时,使用有限元建模、合成骨和人体标本的相关选择。第三部分讨论了实验方案和有限元分析的恰当选择。第四部分考量了将生物力学研究用于植入物设计的利弊。最后,第五部分探讨了在临床证据不足或相互矛盾时,如何运用生物力学研究的结果。综合来看,这些报告强调了生物力学研究的至关重要性,以及在设计生物力学研究时仔细考虑和优化模型的必要性。
OTA Int. 2021-4-15
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