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全身研究型光子计数探测器CT的光谱性能:衍生图像集的定量准确性

Spectral performance of a whole-body research photon counting detector CT: quantitative accuracy in derived image sets.

作者信息

Leng Shuai, Zhou Wei, Yu Zhicong, Halaweish Ahmed, Krauss Bernhard, Schmidt Bernhard, Yu Lifeng, Kappler Steffen, McCollough Cynthia

机构信息

Department of Radiology, Mayo Clinic, 200 First St SW, Rochester, MN 55905, United States of America.

出版信息

Phys Med Biol. 2017 Aug 21;62(17):7216-7232. doi: 10.1088/1361-6560/aa8103.

Abstract

Photon-counting computed tomography (PCCT) uses a photon counting detector to count individual photons and allocate them to specific energy bins by comparing photon energy to preset thresholds. This enables simultaneous multi-energy CT with a single source and detector. Phantom studies were performed to assess the spectral performance of a research PCCT scanner by assessing the accuracy of derived images sets. Specifically, we assessed the accuracy of iodine quantification in iodine map images and of CT number accuracy in virtual monoenergetic images (VMI). Vials containing iodine with five known concentrations were scanned on the PCCT scanner after being placed in phantoms representing the attenuation of different size patients. For comparison, the same vials and phantoms were also scanned on 2nd and 3rd generation dual-source, dual-energy scanners. After material decomposition, iodine maps were generated, from which iodine concentration was measured for each vial and phantom size and compared with the known concentration. Additionally, VMIs were generated and CT number accuracy was compared to the reference standard, which was calculated based on known iodine concentration and attenuation coefficients at each keV obtained from the U.S. National Institute of Standards and Technology (NIST). Results showed accurate iodine quantification (root mean square error of 0.5 mgI/cc) and accurate CT number of VMIs (percentage error of 8.9%) using the PCCT scanner. The overall performance of the PCCT scanner, in terms of iodine quantification and VMI CT number accuracy, was comparable to that of EID-based dual-source, dual-energy scanners.

摘要

光子计数计算机断层扫描(PCCT)使用光子计数探测器对单个光子进行计数,并通过将光子能量与预设阈值进行比较,将它们分配到特定的能量区间。这使得能够使用单个源和探测器同时进行多能量CT扫描。通过评估导出图像集的准确性,进行了体模研究以评估研究型PCCT扫描仪的光谱性能。具体而言,我们评估了碘图图像中碘定量的准确性以及虚拟单能图像(VMI)中CT值的准确性。将含有五种已知浓度碘的小瓶放置在代表不同体型患者衰减的体模中后,在PCCT扫描仪上进行扫描。为了进行比较,同样的小瓶和体模也在第二代和第三代双源双能扫描仪上进行扫描。在进行物质分解后,生成碘图,从中测量每个小瓶和体模尺寸的碘浓度,并与已知浓度进行比较。此外,生成VMI并将CT值准确性与参考标准进行比较,该参考标准是根据从美国国家标准与技术研究院(NIST)获得的每个keV的已知碘浓度和衰减系数计算得出的。结果显示,使用PCCT扫描仪时碘定量准确(均方根误差为0.5 mgI/cc),VMI的CT值准确(百分比误差为8.9%)。就碘定量和VMI CT值准确性而言,PCCT扫描仪的整体性能与基于能谱成像(EID)的双源双能扫描仪相当。

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