Department of Mechanical and Aerospace Engineering (DIMEAS), Politecnico di Torino, C.so Duca degli Abruzzi 24, 10129, Turin, Italy.
PolitoBIOMedLab, Politecnico di Torino, Turin, Italy.
Ann Biomed Eng. 2022 Oct;50(10):1243-1254. doi: 10.1007/s10439-022-03015-x. Epub 2022 Jul 29.
The study of the spine range of motion under given external load has been the object of many studies in literature, finalised to a better understanding of the spine biomechanics, its physiology, eventual pathologic conditions and possible rehabilitation strategies. However, the huge amount of experimental work performed so far cannot be straightforwardly analysed due to significant differences among loading set-ups. This work performs a meta-analysis of various boundary conditions in literature, focusing on the flexion/extension behaviour of the lumbar spine. The comparison among range of motions is performed virtually through a validated multibody model. Results clearly illustrated the effect of various boundary conditions which can be met in literature, so justifying differences of biomechanical behaviours reported by authors implementing different set-up: for example, a higher value of the follower load can indeed result in a stiffer behaviour; the application of force producing spurious moments results in an apparently more deformable behaviour, however the respective effects change at various segments along the spine due to its natural curvature. These outcomes are reported not only in qualitative, but also in quantitative terms. The numerical approach here followed to perform the meta-analysis is original and it proved to be effective thanks to the bypass of the natural variability among specimens which might completely or partially hinder the effect of some boundary conditions. In addition, it can provide very complete information since the behaviour of each functional spinal unit can be recorded. On the whole, the work provided an extensive review of lumbar spine loading in flexion/extension.
在给定的外部载荷下研究脊柱运动范围一直是文献中许多研究的对象,旨在更好地了解脊柱生物力学、其生理学、可能的病理状况和可能的康复策略。然而,迄今为止所进行的大量实验工作由于加载设置之间存在显著差异,因此不能直接进行分析。这项工作对文献中的各种边界条件进行了荟萃分析,重点研究了腰椎的屈伸行为。通过经过验证的多体模型对运动范围进行了虚拟比较。结果清楚地说明了在文献中可能遇到的各种边界条件的影响,从而证明了实施不同设置的作者报告的生物力学行为存在差异的合理性:例如,较高的跟随力值确实会导致更硬的行为;产生虚假力矩的力的应用会导致明显更可变形的行为,但是由于脊柱的自然曲率,各自的影响会在脊柱的各个节段发生变化。这些结果不仅以定性的方式报告,而且还以定量的方式报告。这里为执行荟萃分析而采用的数值方法是原创的,并且由于绕过了样本之间的自然变异性,该方法被证明是有效的,这种变异性可能完全或部分阻碍了某些边界条件的效果。此外,它可以提供非常完整的信息,因为可以记录每个功能脊柱单元的行为。总的来说,这项工作对腰椎在屈伸运动中的加载进行了广泛的回顾。