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适用于需要精确测量距离或体积的应用的可追溯微 CT 缩放精度体模。

Traceable micro-CT scaling accuracy phantom for applications requiring exact measurement of distances or volumes.

机构信息

Western University, London, Ontario, Canada.

出版信息

Med Phys. 2012 Oct;39(10):6022-7. doi: 10.1118/1.4752083.

Abstract

PURPOSE

Volumetric x-ray microcomputed tomography (CT) can be employed in a variety of quantitative research applications such as image-guided interventions or characterization of medical devices. To ensure the highest geometric fidelity of images for these applications, a phantom and image processing algorithm have been developed to calibrate the scaling accuracy of micro-CT scanners to a traceable standard and provide corrections to image voxel sizing.

METHODS

The calibration phantom contains six borosilicate beads whose separations have been measured to a traceable standard. An image processing algorithm compares the known separations of the beads to their separations in micro-CT images. A least-squares solution is used to determine linear scaling correction factors along each of the three scanner axes to minimize errors in the bead separations within the images by correcting the image voxel size. The correction factors were applied to images of a similar phantom with beads at different positions to evaluate the ability of the correction factors to reduce errors at points independent of the fiducial locations in the calibration phantom. The calibration phantom was used to evaluate the scaling accuracy of five different micro-CT scanners representing four different scanner models.

RESULTS

In two of the five scanners evaluated, the correction factors significantly reduced the mean error in bead separations in the images from 0.17% to 0.05% and from 0.37% to 0.07% of the actual bead separations, respectively. Scanners yielding similar voxel sizes possessed comparable geometric errors after correction using the phantom.

CONCLUSIONS

Although the magnitude of the corrections is small, such corrections can be important for demanding micro-CT applications. Even if no voxel size correction is required, the phantom provides an easily implemented method to verify the geometric fidelity of micro-CT scanners to a traceable standard of measurement.

摘要

目的

容积 X 射线微计算机断层扫描(CT)可用于各种定量研究应用,如影像引导介入或医疗器械的特征描述。为了确保这些应用的图像具有最高的几何保真度,开发了一个体模和图像处理算法,以将微 CT 扫描仪的缩放精度校准到可追溯的标准,并对图像体素尺寸进行校正。

方法

校准体模包含六个硼硅酸盐珠,其间距已用可追溯的标准进行了测量。图像处理算法将珠的已知间距与微 CT 图像中的间距进行比较。最小二乘法用于确定沿每个三个扫描仪轴的线性缩放校正因子,以通过校正图像体素尺寸来最小化图像中珠间距的误差。将校正因子应用于具有不同位置珠的类似体模的图像,以评估校正因子在独立于校准体模中基准位置的点处降低误差的能力。使用校准体模评估了代表四个不同扫描仪模型的五个不同微 CT 扫描仪的缩放精度。

结果

在评估的五个扫描仪中的两个中,校正因子分别将图像中珠间距的平均误差从 0.17%显著降低至 0.05%和从 0.37%降低至 0.07%,与实际珠间距的比例。校正后,使用体模,具有相似体素尺寸的扫描仪具有可比的几何误差。

结论

尽管校正的幅度很小,但对于要求苛刻的微 CT 应用,这种校正可能很重要。即使不需要体素尺寸校正,体模也提供了一种易于实现的方法,可以将微 CT 扫描仪的几何保真度验证到可追溯的测量标准。

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