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基于单光子计数探测器 CT 的标准化与定量成像。

Standardization and Quantitative Imaging With Photon-Counting Detector CT.

机构信息

From the Department of Radiology, Mayo Clinic, Rochester, MN.

出版信息

Invest Radiol. 2023 Jul 1;58(7):451-458. doi: 10.1097/RLI.0000000000000948. Epub 2023 Jan 5.

Abstract

Computed tomography (CT) images display anatomic structures across 3 dimensions and are highly quantitative; they are the reference standard for 3-dimensional geometric measurements and are used for 3-dimensional printing of anatomic models and custom implants, as well as for radiation therapy treatment planning. The pixel intensity in CT images represents the linear x-ray attenuation coefficient of the imaged materials after linearly scaling the coefficients into a quantity known as CT numbers that is conveyed in Hounsfield units. When measured with the same scanner model, acquisition, and reconstruction parameters, the mean CT number of a material is highly reproducible, and quantitative applications of CT scanning that rely on the measured CT number, such as for assessing bone mineral density or coronary artery calcification, are well established. However, the strong dependence of CT numbers on x-ray beam spectra limits quantitative applications and standardization from achieving robust widespread success. This article reviews several quantitative applications of CT and the challenges they face, and describes the benefits brought by photon-counting detector (PCD) CT technology. The discussed benefits of PCD-CT include that it is inherently multienergy, expands material decomposition capabilities, and improves spatial resolution and geometric quantification. Further, the utility of virtual monoenergetic images to standardize CT numbers is discussed, as virtual monoenergetic images can be the default image type in PCD-CT due to the full-time spectral nature of the technology.

摘要

计算机断层扫描(CT)图像以三维形式显示解剖结构,且具有高度的量化性;它们是三维几何测量的参考标准,可用于解剖模型和定制植入物的三维打印,以及放射治疗计划。CT 图像中的像素强度代表经过线性缩放后的成像材料的线性 X 射线衰减系数,这些系数被转化为一种称为 CT 值的量,并以亨氏单位表示。当使用相同的扫描仪型号、采集和重建参数进行测量时,材料的平均 CT 值具有高度可重复性,并且依赖于测量 CT 值的 CT 扫描定量应用,例如评估骨矿物质密度或冠状动脉钙化,已经得到了很好的建立。然而,CT 值对 X 射线束谱的强烈依赖性限制了定量应用和标准化的广泛应用。本文回顾了 CT 的几种定量应用及其面临的挑战,并描述了光子计数探测器(PCD)CT 技术带来的益处。讨论的 PCD-CT 的益处包括其固有的多能量特性、扩展了材料分解能力、提高了空间分辨率和几何量化能力。此外,还讨论了虚拟单能量图像在标准化 CT 值方面的效用,因为由于该技术的全时谱特性,虚拟单能量图像可以成为 PCD-CT 的默认图像类型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08be/10272018/da9ec9ea3e5e/nihms-1853312-f0001.jpg

相似文献

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Standardization and Quantitative Imaging With Photon-Counting Detector CT.基于单光子计数探测器 CT 的标准化与定量成像。
Invest Radiol. 2023 Jul 1;58(7):451-458. doi: 10.1097/RLI.0000000000000948. Epub 2023 Jan 5.

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