Costi John J, Ledet Eric H, O'Connell Grace D
Biomechanics and Implants Research Group, Medical Device Research Institute, College of Science and Engineering Flinders University Adelaide Australia.
Department of Biomedical Engineering Rensselaer Polytechnic Institute Troy New York USA.
JOR Spine. 2021 Jan 5;4(1):e1138. doi: 10.1002/jsp2.1138. eCollection 2021 Mar.
Biomechanical testing methodologies for the spine have developed over the past 50 years. During that time, there have been several paradigm shifts with respect to techniques. These techniques evolved by incorporating state-of-the-art engineering principles, in vivo measurements, anatomical structure-function relationships, and the scientific method. Multiple parametric studies have focused on the effects that the experimental technique has on outcomes. As a result, testing methodologies have evolved, but there are no standard testing protocols, which makes the comparison of findings between experiments difficult and conclusions about in vivo performance challenging. In 2019, the international spine research community was surveyed to determine the consensus on spine biomechanical testing and if the consensus opinion was consistent with the scientific evidence. More than 80 responses to the survey were received. The findings of this survey confirmed that while some methods have been commonly adopted, not all are consistent with the scientific evidence. This review summarizes the scientific literature, the current consensus, and the authors' recommendations on best practices based on the compendium of available evidence.
在过去50年里,脊柱生物力学测试方法不断发展。在此期间,技术方面发生了几次范式转变。这些技术通过融入最先进的工程原理、体内测量、解剖结构 - 功能关系和科学方法而不断演变。多项参数研究聚焦于实验技术对结果的影响。因此,测试方法不断发展,但目前尚无标准测试方案,这使得不同实验结果之间的比较变得困难,关于体内性能的结论也颇具挑战。2019年,对国际脊柱研究团体进行了调查,以确定脊柱生物力学测试方面的共识,以及该共识意见是否与科学证据一致。共收到80多份调查问卷回复。该调查结果证实,虽然一些方法已被普遍采用,但并非所有方法都与科学证据一致。本综述基于现有证据汇编,总结了科学文献、当前共识以及作者关于最佳实践的建议。