首页> 美国卫生研究院文献>Global Spine Journal >Annulus Fibrosus Can Strip Hyaline Cartilage End Plate from Subchondral Bone: A Study of the Intervertebral Disk in Tension
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Annulus Fibrosus Can Strip Hyaline Cartilage End Plate from Subchondral Bone: A Study of the Intervertebral Disk in Tension

机译:纤维环可以从软骨下骨剥离透明软骨端板:椎间盘张力的研究

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摘要

>Study Design Biomechanical study on cadaveric spines. >Objective Spinal bending causes the annulus to pull vertically (axially) on the end plate, but failure mechanisms in response to this type of loading are poorly understood. Therefore, the objective of this study was to identify the weak point of the intervertebral disk in tension. >Methods Cadaveric motion segments (aged 79 to 88 years) were dissected to create midsagittal blocks of tissue, with ∼10 mm of bone superior and inferior to the disk. From these blocks, 14 bone–disk–bone slices (average 4.8 mm thick) were cut in the frontal plane. Each slice was gripped by its bony ends and stretched to failure at 1 mm/s. Mode of failure was recorded using a digital camera. >Results Of the 14 slices, 10 failed by the hyaline cartilage being peeled off the subchondral bone, with the failure starting opposite the lateral annulus and proceeding medially. Two slices failed by rupturing of the trabecular bone, and a further two failed in the annulus. >Conclusions The hyaline cartilage–bone junction is the disk's weak link in tension. These findings provide a plausible mechanism for the appearance of bone and cartilage fragments in herniated material. Stripping cartilage from the bony end plate would result in the herniated mass containing relatively stiff cartilage that does not easily resorb.
机译:>研究设计尸体脊椎的生物力学研究。 >客观脊柱弯曲会导致瓣环在端板上垂直(轴向)拉动,但对这种载荷的破坏机理了解甚少。因此,本研究的目的是确定椎间盘张力的弱点。 >方法解剖尸体运动段(年龄79至88岁)以形成矢状中段组织,其上端和下端约有10 mm的骨骼。从这些块中,在额平面切出14个骨-盘-骨切片(平均4.8?mm厚)。每个切片都被其骨质末端夹持,并以1 mm / s的速度拉伸至破坏。使用数码相机记录故障模式。 >结果在14片切片中,有10片因软骨软骨从软骨下骨剥离而失败,失败发生于外侧环的正对面,并向内侧进行。两片由于小梁骨破裂而破裂,另外两片在环中破裂。 >结论透明软骨-骨连接是椎间盘张力的薄弱环节。这些发现为在突出的材料中出现骨骼和软骨碎片提供了一个合理的机制。从骨端板剥离软骨会导致突出的肿块包含相对较硬的软骨,不易吸收。

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