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光谱光子计数计算机断层扫描:技术原理及其在心血管疾病评估中的应用

Spectral Photon-Counting Computed Tomography: Technical Principles and Applications in the Assessment of Cardiovascular Diseases.

作者信息

Meloni Antonella, Maffei Erica, Clemente Alberto, De Gori Carmelo, Occhipinti Mariaelena, Positano Vicenzo, Berti Sergio, La Grutta Ludovico, Saba Luca, Cau Riccardo, Bossone Eduardo, Mantini Cesare, Cavaliere Carlo, Punzo Bruna, Celi Simona, Cademartiri Filippo

机构信息

Bioengineering Unit, Fondazione G. Monasterio CNR-Regione Toscana, 56124 Pisa, Italy.

Department of Radiology, Fondazione G. Monasterio CNR-Regione Toscana, 56124 Pisa, Italy.

出版信息

J Clin Med. 2024 Apr 18;13(8):2359. doi: 10.3390/jcm13082359.

Abstract

Spectral Photon-Counting Computed Tomography (SPCCT) represents a groundbreaking advancement in X-ray imaging technology. The core innovation of SPCCT lies in its photon-counting detectors, which can count the exact number of incoming x-ray photons and individually measure their energy. The first part of this review summarizes the key elements of SPCCT technology, such as energy binning, energy weighting, and material decomposition. Its energy-discriminating ability represents the key to the increase in the contrast between different tissues, the elimination of the electronic noise, and the correction of beam-hardening artifacts. Material decomposition provides valuable insights into specific elements' composition, concentration, and distribution. The capability of SPCCT to operate in three or more energy regimes allows for the differentiation of several contrast agents, facilitating quantitative assessments of elements with specific energy thresholds within the diagnostic energy range. The second part of this review provides a brief overview of the applications of SPCCT in the assessment of various cardiovascular disease processes. SPCCT can support the study of myocardial blood perfusion and enable enhanced tissue characterization and the identification of contrast agents, in a manner that was previously unattainable.

摘要

光谱光子计数计算机断层扫描(SPCCT)代表了X射线成像技术的一项突破性进展。SPCCT的核心创新在于其光子计数探测器,该探测器可以精确计算入射X射线光子的数量,并单独测量它们的能量。本综述的第一部分总结了SPCCT技术的关键要素,如能量分箱、能量加权和物质分解。其能量辨别能力是提高不同组织之间对比度、消除电子噪声以及校正束硬化伪影的关键。物质分解为特定元素的组成、浓度和分布提供了有价值的见解。SPCCT在三种或更多能量状态下运行的能力允许区分几种造影剂,有助于在诊断能量范围内对具有特定能量阈值的元素进行定量评估。本综述的第二部分简要概述了SPCCT在评估各种心血管疾病过程中的应用。SPCCT可以支持心肌血流灌注的研究,并能够以前所未有的方式实现增强的组织表征和造影剂识别。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d92e/11051476/0fb84f311536/jcm-13-02359-g001.jpg

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