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使用双层光谱 CT 扫描进行骨密度的 DXA 等效定量。

DXA-equivalent quantification of bone mineral density using dual-layer spectral CT scout scans.

机构信息

Department of Diagnostic and Interventional Radiology, Klinikum rechts der Isar, Technical University of Munich, Ismaninger Str 22, 81675, Munich, Germany.

Biomedical Physics & Munich School of BioEngineering, Technical University of Munich, Garching, Germany.

出版信息

Eur Radiol. 2019 Sep;29(9):4624-4634. doi: 10.1007/s00330-019-6005-6. Epub 2019 Feb 13.

Abstract

OBJECTIVES

To develop and evaluate a method for areal bone mineral density (aBMD) measurement based on dual-layer spectral CT scout scans.

METHODS

A post-processing algorithm using a pair of 2D virtual mono-energetic scout images (VMSIs) was established in order to semi-automatically compute the aBMD at the spine similarly to DXA, using manual soft tissue segmentation, semi-automatic segmentation for the vertebrae, and automatic segmentation for the background. The method was assessed based on repetitive measurements of the standardized European Spine Phantom (ESP) using the standard scout scan tube current (30 mA) and other tube currents (10 to 200 mA), as well as using fat-equivalent extension rings simulating different patient habitus, and was compared to dual-energy X-ray absorptiometry (DXA). Moreover, the feasibility of the method was assessed in vivo in female patients.

RESULTS

Derived from standard scout scans, aBMD values measured with the proposed method significantly correlated with DXA measurements (r = 0.9925, p < 0.001), and mean accuracy (DXA, 4.12%; scout, 1.60%) and precision (DXA, 2.64%; scout, 2.03%) were comparable between the two methods. Moreover, aBMD values assessed at different tube currents did not differ significantly (p ≥ 0.20 for all), suggesting that the presented method could be applied to scout scans with different settings. Finally, data derived from sample patients were concordant with BMD values from a reference age-matched population.

CONCLUSIONS

Based on dual-layer spectral scout scans, aBMD measurements were fast and reliable and significantly correlated with the according DXA measurements in phantoms. Considering the number of CT acquisitions performed worldwide, this method could allow truly opportunistic osteoporosis screening.

KEY POINTS

• 2D scout scans (localizer radiographs) from a dual-layer spectral CT scanner, which are mandatory parts of a CT examination, can be used to automatically determine areal bone mineral density (aBMD) at the spine. • The presented method allowed fast (< 25 s/patient), semi-automatic, and reliable DXA-equivalent aBMD measurements for state-of-the-art DXA phantoms at different tube settings and for various patient habitus, as well as for sample patients. • Considering the number of CT scout scan acquisitions performed worldwide on a daily basis, the presented technique could enable truly opportunistic osteoporosis screening with DXA-equivalent metrics, without involving higher radiation exposure since it only processes existing data that is acquired during each CT scan.

摘要

目的

开发并评估一种基于双层光谱 CT 扫描的骨矿密度(aBMD)测量方法。

方法

建立了一种基于一对 2D 虚拟单能量扫描图像(VMSIs)的后处理算法,以便类似于 DXA,使用手动软组织分割、半自动椎体分割和自动背景分割,半自动计算脊柱的 aBMD。该方法使用标准的脊柱 phantom(ESP)进行了重复性测量,使用标准的扫描管电流(30mA)和其他管电流(10-200mA),以及使用脂肪等效延伸环模拟不同的患者体型,与双能 X 射线吸收法(DXA)进行了比较。此外,还在女性患者体内评估了该方法的可行性。

结果

从标准的扫描图像中,使用所提出的方法测量的 aBMD 值与 DXA 测量值高度相关(r=0.9925,p<0.001),两种方法的平均准确性(DXA,4.12%;扫描,1.60%)和精密度(DXA,2.64%;扫描,2.03%)相当。此外,不同管电流下的 aBMD 值无显著差异(所有 p 值≥0.20),表明该方法可应用于不同设置的扫描图像。最后,从样本患者中获得的数据与参考年龄匹配人群的 BMD 值一致。

结论

基于双层光谱扫描图像,在 phantoms 中,aBMD 测量快速可靠,与相应的 DXA 测量值显著相关。考虑到全球范围内进行的 CT 扫描次数,这种方法可以实现真正的机会性骨质疏松症筛查。

关键点

  1. 来自双层光谱 CT 扫描仪的 2D 扫描(定位片)是 CT 检查的强制性部分,可以用于自动确定脊柱的面积骨矿物质密度(aBMD)。

  2. 本研究提出的方法可在不同管设置和各种患者体型下,以及对样本患者进行快速(<25s/患者)、半自动和可靠的 DXA 等效 aBMD 测量,适用于最先进的 DXA phantom。

  3. 考虑到全球范围内每天进行的 CT 扫描 scout 采集次数,本研究提出的技术可以利用现有的 CT 扫描数据,在不增加辐射暴露的情况下,通过 DXA 等效指标实现真正的机会性骨质疏松症筛查,因为该技术仅处理每次 CT 扫描中获取的数据。

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