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光子计数探测器CT:心血管成像的进展与临床应用

Photon-Counting Detector CT: Advances and Clinical Applications in Cardiovascular Imaging.

作者信息

Hagar Muhammad Taha, Schlett Christopher L, Oechsner Tim, Varga-Szemes Akos, Emrich Tilman, Chen Xiao Yan, Kravchenko Dmitrij, Tremamunno Giuseppe, Vecsey-Nagy Milán, Molina-Fuentes Moises Felipe, Krauss Tobias, Taron Jana, Schuppert Christopher, Bamberg Fabian, Soschynski Martin

机构信息

Division of Cardiovascular Imaging, Department of Radiology and Radiological Science, Medical University of South Carolina, Charleston, United States.

Department of Diagnostic and Interventional Radiology, University of Freiburg Faculty of Medicine, Freiburg, Germany.

出版信息

Rofo. 2025 May;197(5):509-517. doi: 10.1055/a-2452-0288. Epub 2024 Nov 20.

Abstract

Since the approval of the first dual-source photon-counting detector CT (PCD-CT) in the fall of 2021, significant insights have been gained in its application for cardiovascular imaging. This review aims to provide a comprehensive overview of the current state of knowledge and the growing body of research literature, illustrating innovative applications and perspectives through case examples.We conducted a structured literature review, identifying relevant studies via Google Scholar and PubMed, using the keywords "photon-counting detector", "cardiovascular CT", "cardiac CT", and "ultra-high-resolution CT". We analyzed studies published since January 2015. Additionally, we integrated our own clinical experiences and case examples.In addition to the well-known benefit of increased temporal resolution offered by dual-source scanners, dual-source PCD-CT provides three key advantages: 1) Optimized geometric dose efficiency with an improved contrast-to-noise ratio, 2) intrinsic spectral sensitivity, and 3) the ability for ultrahigh-resolution CT. This technology enables improved image quality or radiation dose reduction in established cardiovascular protocols. Its use in non-invasive cardiac diagnostics for obese patients, those with a high plaque burden, or after stent implantation appears technically feasible, potentially expanding the scope of CT. The spectral sensitivity also allows tailored image acquisition, reducing metallic artifacts and contrast agent doses in patients with renal impairment. Early studies and clinical experience support these potential applications of PCD-CT in cardiovascular diagnostics, suggesting workflow optimization and improved patient management.However, challenges remain, including high costs, large data volumes, somewhat longer reconstruction times, and technical difficulties in combining spectral sensitivity with ultra-high resolution. Prospective randomized studies with clinical endpoints are lacking to confirm the clear advantage over conventional scanners. Future research should focus on endpoint-based studies and robust cost-benefit analyses to evaluate the potential of this technology and facilitate its evidence-based integration in clinical practice. · Photon-counting detector CT represents a technological advancement in computed tomography.. · Spectral sensitivity enhances iodine signal and minimizes artifacts.. · Ultra-high-resolution CT allows precise imaging, even in stents and advanced sclerosis.. · This technology must be validated through endpoint-based, randomized studies.. · Hagar MT, Schlett CL, Oechsner T et al. Photon-Counting Detector CT: Advances and Clinical Applications in Cardiovascular Imaging. Rofo 2025; 197: 509-516.

摘要

自2021年秋季首款双源光子计数探测器CT(PCD-CT)获批以来,其在心血管成像应用方面已取得了重大进展。本综述旨在全面概述当前的知识状况以及不断增长的研究文献,通过案例说明其创新应用和前景。我们进行了结构化文献综述,通过谷歌学术和PubMed使用关键词“光子计数探测器”、“心血管CT”、“心脏CT”和“超高分辨率CT”来识别相关研究。我们分析了自2015年1月以来发表的研究。此外,我们还纳入了自己的临床经验和案例。除了双源扫描仪提供的增加时间分辨率这一众所周知的优势外,双源PCD-CT还具有三个关键优势:1)优化的几何剂量效率,提高了对比噪声比;2)固有的光谱敏感性;3)超高分辨率CT的能力。这项技术能够在既定的心血管检查方案中提高图像质量或降低辐射剂量。其在肥胖患者、高斑块负荷患者或支架植入术后的无创心脏诊断中的应用在技术上似乎是可行的,可能会扩大CT的应用范围。光谱敏感性还允许进行定制图像采集,减少肾功能损害患者的金属伪影和造影剂剂量。早期研究和临床经验支持PCD-CT在心血管诊断中的这些潜在应用,表明工作流程得到优化,患者管理得到改善。然而,挑战依然存在,包括成本高、数据量大、重建时间稍长以及将光谱敏感性与超高分辨率相结合的技术困难。缺乏以临床终点为依据的前瞻性随机研究来证实其相对于传统扫描仪的明显优势。未来的研究应侧重于以终点为基础的研究和有力的成本效益分析,以评估这项技术的潜力,并促进其在临床实践中的循证整合。· 光子计数探测器CT代表了计算机断层扫描技术的一项进步。· 光谱敏感性增强了碘信号并使伪影最小化。· 超高分辨率CT即使在支架和晚期硬化病变中也能实现精确成像。· 这项技术必须通过以终点为基础的随机研究来验证。· 哈加尔MT、施莱特CL、厄克斯纳T等。光子计数探测器CT:心血管成像的进展与临床应用。《德国放射学杂志》2025年;197:509 - 516。

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