Department of Anatomy and Anthropology, Sackler Faculty of Medicine, Tel Aviv University, 69978, Tel Aviv, Israel.
The Shmunis Family Anthropology Institute, Dan David Center for Human Evolution and Biohistory Research, Tel Aviv University, 69978, Tel Aviv, Israel.
Sci Rep. 2021 Mar 25;11(1):6815. doi: 10.1038/s41598-021-86334-8.
The intervertebral disc's (IVD) annulus fibrosus (AF) retains the hydrostatic pressure of the nucleus pulposus (NP), controls the range of motion, and maintains the integrity of the motion segment. The microstructure of the AF is not yet fully understood and quantitative characterization is lacking, leaving a caveat in modern medicine's ability to prevent and treat disc failure (e.g., disc herniation). In this study, we show a reconstruction of the 3D microstructure of the fibers that constitute the AF via MRI diffusion tensor imaging (DTI) followed by fiber tracking. A quantitative analysis presents an anisotropic structure with significant architectural differences among the annuli along the width of the fibrous belt. These findings indicate that the outer annuli's construction reinforces the IVD while providing a sufficient degree of motion. Our findings also suggest an increased role of the outer annuli in IVD nourishment.
椎间盘的纤维环(AF)保持着髓核的流体静压,控制着运动范围,并维持着运动节段的完整性。AF 的微观结构尚未完全被理解,缺乏定量描述,这使得现代医学在预防和治疗椎间盘失效(例如椎间盘突出)方面存在局限性。在这项研究中,我们通过 MRI 扩散张量成像(DTI)对构成纤维环的纤维进行了 3D 微观结构的重建,然后进行了纤维追踪。定量分析显示出各向异性结构,在纤维带宽度上的各环之间存在显著的结构差异。这些发现表明,外环的结构加强了椎间盘,同时提供了足够的运动自由度。我们的研究结果还表明,外环在椎间盘营养方面的作用增加了。