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骶髂关节软骨下骨强度 - 使用计算机断层骨吸收计量学(CT-OAM)成像和生物力学验证的联合方法。

Subchondral bone strength of the sacroiliac joint-a combined approach using computed tomography osteoabsorptiometry (CT-OAM) imaging and biomechanical validation.

机构信息

Department of Anatomy, University of Otago, Dunedin, New Zealand.

Sir John Walsh Research Institute, Faculty of Dentistry, University of Otago, Dunedin, New Zealand.

出版信息

J Mech Behav Biomed Mater. 2020 Nov;111:103978. doi: 10.1016/j.jmbbm.2020.103978. Epub 2020 Aug 2.

DOI:10.1016/j.jmbbm.2020.103978
PMID:32866917
Abstract

Bone mineral density distribution patterns at the sacroiliac joint (SIJ) may reflect long-term adaptation patterns to the loading the joint endures. This study aims to display bone mineralisation patterns of the articular SIJ subchondral lamella using computed tomography (CT) osteoabsorptiometry and mechanical indenting, to determine whether a relationship exists between mineralisation and mechanical strength. Twenty hemipelves were CT-scanned before osteoabsorptiometry densitograms were derived. Each articular side of eleven SIJs was mechanically indented following a 10-mm grid scheme. The sacral surface displayed lower Hounsfield unit (HU) values (≤ 700 HU) than the iliac side (> 700 HU). The apex, superior corner and borders yielded the highest HU scores (> 700 HU). Penetration strength was significantly higher on the iliac side (p < 0.04). Mineral density correlated positively with penetration strength of the subchondral bone layer (p < 0.05). No correlations were found between the HU values, nor between penetration strength of corresponding sides of the same SIJ in the majority of cases (p > 0.05). The iliac subchondral lamella is mechanically denser than the sacral aspect. The non-correlation between density and bone strength of articulating sides indicates biomechanical non-conformity. Loading throughout the SIJ may follow a complex distribution pattern involving the surrounding soft tissues, suspending the sacrum between the ilia.

摘要

骶髂关节 (SIJ) 的骨矿物质密度分布模式可能反映了关节长期承受的负荷的适应模式。本研究旨在使用计算机断层扫描 (CT) 骨吸收计量法和机械压痕术来显示关节 SIJ 软骨下板的骨矿化模式,以确定矿化与机械强度之间是否存在关系。在进行骨吸收计量密度图之前,对 20 个半骨盆进行了 CT 扫描。根据 10-mm 网格方案,对 11 个 SIJ 的每个关节面进行机械压痕。骶骨表面的 Hounsfield 单位 (HU) 值较低(≤700 HU),而髂骨侧较高(>700 HU)。顶点、上顶角和边界处的 HU 值最高(>700 HU)。髂骨侧的穿透强度显著更高(p<0.04)。骨矿物质密度与软骨下骨层的穿透强度呈正相关(p<0.05)。在大多数情况下,HU 值之间以及同一 SIJ 的对应侧的穿透强度之间均无相关性(p>0.05)。髂骨软骨下板的机械密度高于骶骨侧。关节侧的密度与骨强度之间无相关性表明生物力学的不一致性。整个 SIJ 的负荷可能遵循涉及周围软组织的复杂分布模式,将骶骨悬挂在髂骨之间。

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