首页> 外文期刊>Physics in medicine and biology. >Comparison of anatomic coordinate systems with rigid multi-resolution 3D registration for the reproducible positioning of analysis volumes of interest in QCT.
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Comparison of anatomic coordinate systems with rigid multi-resolution 3D registration for the reproducible positioning of analysis volumes of interest in QCT.

机译:具有刚性多分辨率3D配准的解剖坐标系的比较,可重现QCT中感兴趣的分析体积的位置。

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摘要

In this study we compared two approaches that have recently been used to minimize precision errors in 3D quantitative computed tomography (QCT) images of the hip and the spine in order to optimize the detection of longitudinal changes in bone mineral density (BMD). In 30 subjects we obtained baseline and 1 year follow-up 3D CT scans of the proximal femur and the spine. QCT analysis was applied to a variety of volumes of interest (VOIs) automatically positioned relative to anatomic coordinate systems (ACS). In the first approach (A1) baseline and follow-up scans were analyzed independently. In the second approach (A2) a 3D versor-based rigid intensity registration method was applied to match baseline and follow-up images, and the baseline ACS was mapped on the follow-up image using the registration transformation. Afterwards, the analysis VOIs were again independently calculated for baseline and follow-up images. There were no significant differences of percent BMD changes between baseline and follow-up images between A1 and A2 for any of the VOIs investigated. With advanced image processing methods a time-consuming 3D registration between baseline and follow-up images before the analysis does not improve analysis precision compared to the use of anatomical coordinate systems.
机译:在这项研究中,我们比较了最近用于最小化髋部和脊柱的3D定量计算机断层扫描(QCT)图像中的精度误差的两种方法,以优化对骨矿物质密度(BMD)的纵向变化的检测。在30位受试者中,我们获得了股骨近端和脊柱的基线和1年随访3D CT扫描。 QCT分析应用于相对于解剖坐标系(ACS)自动定位的各种感兴趣的体积(VOI)。在第一种方法(A1)中,对基线和后续扫描进行了独立分析。在第二种方法(A2)中,将基于3D versor的刚性强度配准方法应用于匹配基线图像和后续图像,并使用配准变换将基线ACS映射到后续图像上。然后,再次针对基线和后续图像分别计算分析VOI。对于任何调查的VOI,基线图像和随访图像之间的BMD变化百分比之间均无显着差异。使用高级图像处理方法,与使用解剖坐标系相比,在分析之前在基线图像和后续图像之间进行费时的3D配准不会提高分析精度。

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