Kebbach Maeruan, Hucke Lucie, Kluess Daniel, Miehling Jörg, Scherb David, Wartzack Sandro, Wechsler Iris, Wittek Andreas, Woiczinski Matthias, Schwarze Michael
Department of Orthopaedics, Rostock University Medical Center, Rostock, Deutschland.
Fachbereich 2: Informatik und Ingenieurwissenschaften, Frankfurt University of Applied Sciences, Frankfurt am Main, Deutschland.
Orthopadie (Heidelb). 2024 Jul;53(7):487-493. doi: 10.1007/s00132-024-04515-5. Epub 2024 Jun 3.
Computational research methods, such as finite element analysis (FEA) and musculoskeletal multi-body simulation (MBS), are important in musculoskeletal biomechanics because they enable a better understanding of the mechanics of the musculoskeletal system, as well as the development and evaluation of orthopaedic implants. These methods are used to analyze clinically relevant issues in various anatomical regions, such as the hip, knee, shoulder joints and spine. Preoperative simulation can improve surgical planning in orthopaedics and predict individual results.
In this article, the methods of FE analysis and MBS are explained using two practical examples, and the activities of the "Numerical Simulation" cluster of the "Musculoskeletal Biomechanics Research Network (MSB-NET)" are presented in more detail. An outlook classifies numerical simulation in the age of artificial intelligence and draws attention to the relevance of simulation in the (re)approval of implants.
计算研究方法,如有限元分析(FEA)和肌肉骨骼多体模拟(MBS),在肌肉骨骼生物力学中很重要,因为它们有助于更好地理解肌肉骨骼系统的力学原理,以及骨科植入物的开发和评估。这些方法用于分析各个解剖区域的临床相关问题,如髋关节、膝关节、肩关节和脊柱。术前模拟可以改善骨科手术规划并预测个体结果。
在本文中,通过两个实际例子解释了有限元分析和多体模拟的方法,并更详细地介绍了“肌肉骨骼生物力学研究网络(MSB-NET)”的“数值模拟”集群的活动。展望对人工智能时代的数值模拟进行了分类,并提请注意模拟在植入物(重新)批准中的相关性。