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基于强度的非重叠区域配准,支持基于模型的放射立体分析中的“漏失”。

Intensity-Based Nonoverlapping Area Registration Supporting "Drop-Outs" in Terms of Model-Based Radiostereometric Analysis.

机构信息

IT4Innovations Centre of Excellence, Brno University of Technology, Bozetechova 1/2, 612 66 Brno, Czech Republic.

Radiology Institute, University Hospital in Ostrava, 17 Listopadu 1790, 708 52 Ostrava, Czech Republic.

出版信息

J Healthc Eng. 2018 May 3;2018:8538125. doi: 10.1155/2018/8538125. eCollection 2018.

Abstract

A model-based radiostereometric analysis (MBRSA) is a method for precise measurement of prosthesis migration, which does not require marking the implant with tantalum beads. Instead, the prosthesis pose is typically recovered using a feature-based 2D-3D registration of its virtual model into a stereo pair of radiographs. In this study, we evaluate a novel intensity-based formulation of previously published nonoverlapping area (NOA) approach. The registration is capable of performing with both binary radiographic segmentations and nonsegmented X-ray images. In contrast with the feature-based version, it is capable of dealing with unreliable parts of prosthesis. As the straightforward formulation allows efficient acceleration using modern graphics adapters, it is possible to involve precise high-poly virtual models. Moreover, in case of binary segmentations, the nonoverlapping area is simply interpretable and useful for indicating the accuracy of the registration outcome. In silico and phantom evaluations were performed using a cementless Zweymüller femoral stem and its reverse engineered (RE) model. For initial pose estimates with difference from the ground-truth limited to ±4 mm and ±4°, respectively, the mean absolute translational error was not higher than 0.042 ± 0.035 mm. The error in rotation around the proximodistal axis was 0.181 ± 0.265°, and the error for the remaining axes was not higher than 0.035 ± 0.037°.

摘要

一种基于模型的放射立体分析(MBRSA)是一种精确测量假体迁移的方法,它不需要用钽珠标记植入物。相反,假体的位置通常是通过其虚拟模型的基于特征的 2D-3D 配准到一对立体射线照片来恢复。在这项研究中,我们评估了以前发表的非重叠区域(NOA)方法的一种新的基于强度的公式。该配准可以与二进制射线照片分割和非分割 X 射线图像一起使用。与基于特征的版本相比,它能够处理假体不可靠的部分。由于直接公式允许使用现代图形适配器进行高效加速,因此可以涉及精确的高多边形虚拟模型。此外,在二进制分割的情况下,非重叠区域简单易懂,可用于指示配准结果的准确性。使用无水泥 Zweymüller 股骨柄及其逆向工程(RE)模型进行了计算机模拟和体模评估。对于初始位置估计,与真实位置的差异限制在±4mm 和±4°以内,平均绝对平移误差不高于 0.042±0.035mm。围绕近-远轴的旋转误差为 0.181±0.265°,其余轴的误差不高于 0.035±0.037°。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6975/5960567/6dfb1680ddd0/JHE2018-8538125.001.jpg

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