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首页> 外文期刊>Journal of orthopaedic research >Endplate deflection is a defining feature of vertebral fracture and is associated with properties of the underlying trabecular bone
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Endplate deflection is a defining feature of vertebral fracture and is associated with properties of the underlying trabecular bone

机译:终板挠度是椎骨骨折的定义特征,并与下面的小梁骨的特性有关

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Endplate deflection frequently occurs with vertebral failure, but the relationship between the two remains poorly defined. This study examined associations between endplate deflection under compressive loading and characteristics of the neighboring subchondral bone and intervertebral disc (IVD). Ten L1 vertebrae with adjacent IVDs were dissected, compressed axially in a stepwise manner to failure, and imaged with micro-computed tomography before each loading step. From the images, deflection was measured across the surface of each endplate at each step. Trabecular microstructure and endplate volume fraction were evaluated in 5-mm regions just under the superior endplate. IVDs were assessed using computed tomography and histology. A marked increase in superior endplate deflection coincided with a drop in the load-displacement curve. Endplate deflection was higher in regions with less robust bone microstructure (p-<-0.009), though these associations tended to weaken as loading progressed. Immediately following the ultimate point, endplate deflection was higher in regions underlying the nucleus pulposus versus annulus fibrosus (p-=-0.035), irrespective of disc grade (p-=-0.346). These results indicate that a sudden increase in endplate deflection signals that the mechanical competence of the vertebra has been compromised. The mechanisms of endplate failure likely relate to anatomical features of the endplate, neighboring trabecular bone, and IVD.
机译:终板偏斜常伴随椎体衰竭而发生,但两者之间的关系仍然定义不清。这项研究检查了压缩载荷下终板挠度与相邻软骨下骨和椎间盘(IVD)特征之间的关联。解剖十个具有相邻IVD的L1椎骨,以逐步的方式轴向压缩直至破裂,并在每个加载步骤之前用微计算机断层扫描成像。根据图像,在每个步骤中测量每个端板表面的挠度。在上端板下方的5毫米区域内评估小梁的微结构和端板体积分数。使用计算机断层扫描和组织学评估IVD。出色的端板挠度明显增加,同时载荷-位移曲线下降。终板挠度在骨微结构较不牢固的区域较高(p-<-0.009),尽管随着载荷的进行,这些关联趋于减弱。紧接最终点之后,无论椎间盘的坡度如何(p-=-0.346),在髓核下方区域与纤维环(p-=-0.035)的终板挠度都较高。这些结果表明,端板挠度的突然增加表明椎骨的机械能力已受到损害。终板失败的机制可能与终板,邻近的小梁骨和IVD的解剖特征有关。

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