首页> 外文期刊>British Journal of Radiology >Development of a phantom for morphometric X-ray absorptiometry.
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Development of a phantom for morphometric X-ray absorptiometry.

机译:X射线吸收法形态学模型的开发。

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摘要

Morphometric X-ray absorptiometry (MXA) has recently been developed to assess vertebral deformity status using dual energy X-ray absorptiometry (DXA) machines. In contrast to bone densitometry, a vertebral morphometry phantom is not supplied by any machine manufacturer. The aim of this study was to develop a suitable phantom to quantify the accuracy and precision of the vertebral measurement software on three DXA scanners in vitro and to perform a weekly quality control (QC) scan over a 30-month period to evaluate any drift or changes in measurement accuracy over time. The phantom was constructed from Perspex and aluminium to simulate soft tissue and bone, respectively. 13 aluminium rectangles (each 30 mm wide, 25 mm high and 3 mm thick, with edges ("endplates") 6 mm thick) were set into one side of a solid Perspex block to represent the vertebral bodies from the fourth thoracic (T4) to the fourth lumbar (L4). The phantom was scanned on both the Hologic QDR2000plus and the QDR-4500A as well as the Lunar Expert-XL. Three consecutive lateral MXA scans were acquired on the Hologic machines using each of the scan modes available. On the QDR-2000plus, the lateral scan modes available are fast, array and high definition, which are all dual energy modes. These three scan modes are also available on the QDR-4500A, with the addition of a single energy scan mode. Four lateral scans were acquired on the Expert-XL machine using the single scan mode available. Each MXA scan was analysed twice by a trained operator using the standard software supplied by each manufacturer. A QC scan was performed approximately weekly over a 30-month period on only the QDR-4500A machine, and total phantom height was measured from the inferior edge of L4 to the superior edge of T4. Accuracy of "vertebral" height measurement varied between the three DXA machines and between the scan modes available. All underestimated "true" vertebral height by between 0.4% and 8.6%, with the scan modes using finer collimation producing the most accurate results. Repeat analysis precision of vertebral height measurement was best on the QDR-4500A, followed by the Expert-XL, and was poorest on the QDR-2000plus. The QC scans acquired on the QDR-4500A suggested that it was a highly stable machine, little affected by even major repairs. It must be remembered that these in vitro phantom results may not be representative of the true in vivo situation. The MXA phantom appears to be a useful tool for documenting the stability of the mechanical instruments and for checking the long-term consistency of operator precision.
机译:最近开发了形态X射线吸收仪(MXA),以使用双能X射线吸收仪(DXA)评估椎骨畸形状态。与骨密度测定法相反,任何机器制造商都不提供椎骨形态测定体模。这项研究的目的是开发一种合适的体模,以量化三台DXA扫描仪上的椎体测量软件的准确性和精密度,并在30个月内进行每周质量控制(QC)扫描,以评估任何漂移或测量精度随时间变化。幻影由有机玻璃和铝制成,分别模拟软组织和骨骼。将13个铝制矩形(每个30毫米宽,25毫米高和3毫米厚,边缘(“端板”)6毫米厚)设置在一个有机玻璃块的一侧,以代表第四胸椎(T4)的椎体到第四腰(L4)。在Hologic QDR2000plus和QDR-4500A以及Lunar Expert-XL上扫描了幻像。使用每种可用的扫描模式,在Hologic机器上进行了三个连续的MXA横向扫描。在QDR-2000plus上,可用的横向扫描模式是快速,阵列和高清晰度,它们都是双能量模式。 QDR-4500A还提供了这三种扫描模式,并增加了一个能量扫描模式。使用可用的单扫描模式,在Expert-XL机器上进行了四次横向扫描。训练有素的操作员使用每个制造商提供的标准软件,对每次MXA扫描进行两次分析。仅在QDR-4500A机器上,在30个月内大约每周进行一次QC扫描,并测量了从L4的下边缘到T4的上边缘的总幻像高度。在三台DXA机器之间以及可用的扫描模式之间,“椎骨”高度测量的准确性各不相同。所有的“真实”椎骨高度都被低估了0.4%至8.6%,而采用更精细准直的扫描模式则产生了最准确的结果。椎高测量的重复分析精度在QDR-4500A上最好,其次是Expert-XL,在QDR-2000plus上最差。在QDR-4500A上进行的QC扫描表明,它是一台高度稳定的机器,即使受到大修也几乎没有影响。必须记住,这些体外体模结果可能不能代表真实的体内情况。 MXA幻影似乎是记录机械仪表稳定性和检查操作员精度长期一致性的有用工具。

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