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骨密度的区域差异通过生物力学作用增加了经皮椎体成形术后邻近椎体骨折的风险:一项病例对照研究。

Regional differences in bone mineral density biomechanically induce a higher risk of adjacent vertebral fracture after percutaneous vertebroplasty: a case-comparative study.

机构信息

Department of Orthopedics, The Affiliated Traditional Chinese Medicine Hospital of Southwest Medical University, Luzhou, Sichuan Province, Departments of.

Spine Surgery.

出版信息

Int J Surg. 2023 Mar 1;109(3):352-363. doi: 10.1097/JS9.0000000000000273.

Abstract

BACKGROUND

Adjacent vertebral fracture (AVF) is a frequently observed complication after percutaneous vertebroplasty (PVP) in patients with osteoporotic vertebral compressive fracture. Biomechanical deterioration initially induces a higher risk of AVF. Studies demonstrated that the aggravation of regional differences in the elastic modulus of different components might deteriorate the local biomechanical environment and increase the risk of structural failure. Considering the existence of intravertebral regional differences in bone mineral density (BMD) (i.e. elastic modulus), it was hypothesized in the present study that higher intravertebral BMD differences may induce a higher risk of AVF biomechanically.

MATERIALS AND METHODS

The radiographic and demographic data of osteoporotic vertebral compressive fracture patients treated using PVP were reviewed in the present study. The patients were divided into two groups: those with AVF and those without AVF. The Hounsfield unit (HU) values of transverse planes from the superior to the inferior bony endplate were measured, and the differences between the highest and lowest HU values of these planes were considered the regional differences of the HU value. The data from patients with and without AVF were compared, and the independent risk factors were identified through regression analysis. PVP with different grades of regional differences in the elastic modulus of the adjacent vertebral body was simulated using a previously constructed and validated lumbar finite element model, and the biomechanical indicators related to AVF were computed and recorded in surgical models.

RESULTS

Clinical data on 103 patients were collected in this study (with an average follow-up period of 24.1 months). The radiographic review revealed that AVF patients present a significantly higher regional difference in the HU value and that the increase in the regional difference of the HU value was an independent risk factor for AVF. In addition, numerical mechanical simulations recorded a stress concentration tendency (the higher maximum equivalent stress value) in the adjacent vertebral cancellous bone, with a stepwise aggravation of the adjacent cancellous bony regional stiffness differences.

CONCLUSIONS

The aggravation of regional BMD differences induces a higher risk of AVF after PVP surgery through a deterioration of the local biomechanical environment. The maximum differences in the HU value of the adjacent cancellous bone should, therefore, be measured routinely to better predict the risk of AVF. Patients with noticeable regional BMD differences should be considered at high risk for AVF, and greater attention must be paid to these patients to reduce the risk of AVF.

EVIDENCE GRADE

Level III b.

摘要

背景

经皮椎体后凸成形术(PVP)治疗骨质疏松性椎体压缩性骨折后,常发生相邻椎体骨折(AVF)。生物力学恶化最初会增加发生 AVF 的风险。研究表明,不同成分弹性模量的区域性差异加剧可能会恶化局部生物力学环境,增加结构失效的风险。考虑到骨密度(BMD)(即弹性模量)在椎体内存在区域性差异,本研究假设较高的椎体内 BMD 差异可能会在生物力学上增加发生 AVF 的风险。

材料和方法

回顾性分析了接受 PVP 治疗的骨质疏松性椎体压缩性骨折患者的影像学和人口统计学数据。将患者分为两组:发生 AVF 组和未发生 AVF 组。测量从椎体上终板到下终板的横断平面的 Hounsfield 单位(HU)值,并认为这些平面上 HU 值的最高值与最低值之间的差异为 HU 值的区域差异。比较了有和无 AVF 患者的数据,并通过回归分析确定了独立的危险因素。使用先前构建和验证的腰椎有限元模型模拟相邻椎体弹性模量的不同等级的区域性差异,并在手术模型中计算和记录与 AVF 相关的生物力学指标。

结果

本研究共收集了 103 例患者的临床资料(平均随访时间为 24.1 个月)。影像学检查结果显示,AVF 患者的 HU 值区域差异显著增大,且 HU 值区域差异的增大是 AVF 的独立危险因素。此外,数值力学模拟记录了相邻松质骨中应力集中的趋势(即较高的最大等效应力值),相邻松质骨区域刚度差异逐渐加重。

结论

通过局部生物力学环境的恶化,区域性 BMD 差异的加重会增加 PVP 术后发生 AVF 的风险。因此,应常规测量相邻松质骨的 HU 值最大差异,以更好地预测 AVF 的风险。对于明显的区域性 BMD 差异患者,应考虑其发生 AVF 的风险较高,必须更加关注这些患者,以降低 AVF 的风险。

证据等级

IIIb 级。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2d6/10389488/a9827408fd24/js9-109-352-g001.jpg

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