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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Accurate Measurement of Small Features in X-Ray CT Data Volumes, Demonstrated Using Gold Grains
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Accurate Measurement of Small Features in X-Ray CT Data Volumes, Demonstrated Using Gold Grains

机译:X射线CT数据卷中的小功能的精确测量,使用金谷物证明

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We present a method for measuring small, discrete features near the resolution limit of X-ray computed tomography (CT) data volumes with the aim of providing consistent answers across instruments and data resolutions. The appearances of small features are impacted by the partial volume effect and blurring due to the data point-spread function, and we call our approach the partial-volume and blurring (PVB) method. Features are segmented to encompass their total attenuation signal, which is then converted to a volume, in turn allowing a subset of voxels to be used to measure shape and orientation. We demonstrate the method on a set of gold grains, scanned with two instruments at a range of resolutions and with various surrounding media. We recover volume accurately over a factor of 27 range in grain volume and factor of 5 range in data resolution, successfully characterizing particles as small as 5.4 voxels in true volume. Shape metrics are affected variably by resolution effects and are more reliable when based on image-based caliper measurements than perimeter length or surface area. Orientations are reproducible when maximum or minimum axis lengths are sufficiently different from the intermediate axis. Calibration requires end-member CT numbers for the materials of interest, which we obtained empirically; we describe a first-principles calculation and discuss its challenges. The PVB method is accurate, reproducible, resolution invariant, and objective, all important improvements over any method based on global thresholds.
机译:我们提出了一种测量X射线计算机断层扫描(CT)数据卷的分辨率限制附近的小型离散特征的方法,目的是提供跨仪器和数据分辨率的一致答案。小功能的外表受到部分体积效应和由于数据点扩展功能而模糊的影响,我们称之为部分体积和模糊(PVB)方法。特征被分段为包含它们的总衰减信号,然后将其转换为体积,否则允许使用体素的子集来测量形状和方向。我们展示了一组金粒上的方法,扫描了一系列分辨率和各种周围媒体的两种仪器。我们在数据分辨率中准确地恢复卷在27倍范围内,数据分辨率的5个系数,成功地表征小于5.4体素的粒子。形状度量通过分辨率效应可变地受到可变的影响,并且在基于基于图像的卡尺测量的基于周长长度或表面积时,更可靠。当最大或最小轴长度与中间轴线有足够的不同时,取向是可重复的。校准需要终端成员CT编号,以便我们获得凭经验;我们描述了一个第一个原则的计算并讨论其挑战。 PVB方法是准确的,可重复的,分辨率不变和目标,所有基于全局阈值的方法都有重要改进。

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