Zander T, Rohlmann A, Bergmann G
Biomechanics Laboratory, Charité-University Medicine Berlin, Campus Benjamin Franklin, Berlin, Germany.
Biomed Tech (Berl). 2004 Jan-Feb;49(1-2):27-32. doi: 10.1515/BMT.2004.006.
The influence of the different lumbar spinal ligaments on intersegmental rotation is not fully understood. In order to explore this effect, a finite element model of the functional spinal unit L3/L4 was loaded with pure moments in the three main anatomic planes. The two extremes--minimum and maximum--ligament stiffness values reported in the literature were applied. After virtual transection of each of the spinal ligaments in turn, the intersegmental rotation and forces in the remaining ligaments were calculated. On flexion, the highest force was found for the posterior longitudinal ligament; on extension and lateral bending for the anterior longitudinal ligament; and on axial rotation for the facet capsular ligament. The strongest influence on intersegmental rotation is exerted by the interspinous ligament on flexion, by the anterior longitudinal ligament on extension and lateral bending, and by the facet capsular ligaments on axial rotation. Ligament stiffness has a strong influence on intersegmental rotation and forces in the ligaments, so that finite element models of spinal segments must be validated by experimental data. This study should help to elucidate the role of the various ligaments.
不同腰椎韧带对节段间旋转的影响尚未完全明确。为探究此效应,对功能性脊柱单元L3/L4的有限元模型在三个主要解剖平面施加纯力矩。应用了文献中报道的两个极端值——最小和最大——韧带刚度值。依次对每条脊柱韧带进行虚拟横断后,计算剩余韧带中的节段间旋转和力。在屈曲时,后纵韧带受力最大;在伸展和侧屈时,前纵韧带受力最大;在轴向旋转时,关节囊韧带受力最大。棘间韧带在屈曲时对节段间旋转影响最强,前纵韧带在伸展和侧屈时影响最强,关节囊韧带在轴向旋转时影响最强。韧带刚度对节段间旋转和韧带中的力有很大影响,因此脊柱节段的有限元模型必须通过实验数据进行验证。本研究应有助于阐明各种韧带的作用。