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患者配准系统的误差分析视角。

An error analysis perspective for patient alignment systems.

机构信息

Vienna General Hospital, Center for Medical Physics and Biomedical Engineering, Medical University of Vienna, Waehringer Guertel 18-20, 1090 , Vienna, Austria.

出版信息

Int J Comput Assist Radiol Surg. 2013 Sep;8(5):849-56. doi: 10.1007/s11548-013-0819-5. Epub 2013 Mar 6.

Abstract

PURPOSE

This paper analyses the effects of error sources which can be found in patient alignment systems. As an example, an ultrasound (US) repositioning system and its transformation chain are assessed. The findings of this concept can also be applied to any navigation system.

METHODS AND MATERIALS

In a first step, all error sources were identified and where applicable, corresponding target registration errors were computed. By applying error propagation calculations on these commonly used registration/calibration and tracking errors, we were able to analyse the components of the overall error. Furthermore, we defined a special situation where the whole registration chain reduces to the error caused by the tracking system. Additionally, we used a phantom to evaluate the errors arising from the image-to-image registration procedure, depending on the image metric used. We have also discussed how this analysis can be applied to other positioning systems such as Cone Beam CT-based systems or Brainlab's ExacTrac.

RESULTS

The estimates found by our error propagation analysis are in good agreement with the numbers found in the phantom study but significantly smaller than results from patient evaluations. We probably underestimated human influences such as the US scan head positioning by the operator and tissue deformation. Rotational errors of the tracking system can multiply these errors, depending on the relative position of tracker and probe.

CONCLUSIONS

We were able to analyse the components of the overall error of a typical patient positioning system. We consider this to be a contribution to the optimization of the positioning accuracy for computer guidance systems.

摘要

目的

本文分析了在患者定位系统中可能出现的误差源的影响。以超声(US)重定位系统及其转换链为例进行评估。该概念的发现也可以应用于任何导航系统。

方法与材料

在第一步中,我们确定了所有的误差源,并在适用的情况下,计算了相应的目标注册误差。通过对这些常用的注册/校准和跟踪误差进行误差传播计算,我们能够分析整体误差的组成部分。此外,我们定义了一种特殊情况,其中整个注册链简化为跟踪系统引起的误差。此外,我们还使用一个体模,根据使用的图像度量,评估了图像到图像注册过程中产生的误差。我们还讨论了如何将这种分析应用于其他定位系统,如基于锥形束 CT 的系统或 Brainlab 的 ExacTrac。

结果

我们的误差传播分析得出的估计值与体模研究中发现的数值非常吻合,但明显小于患者评估结果。我们可能低估了操作人员的 US 扫描头定位和组织变形等人为影响。跟踪系统的旋转误差会根据跟踪器和探头的相对位置放大这些误差。

结论

我们能够分析典型患者定位系统的整体误差组成部分。我们认为这是对计算机引导系统定位精度优化的贡献。

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