Photon-Counting Detector CT Applications in Musculoskeletal Radiology.

IF 7 1区 医学 Q1 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Jan-Peter Grunz, Henner Huflage
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引用次数: 0

Abstract

Abstract: Photon-counting detectors (PCDs) have emerged as one of the most influential technical developments for medical imaging in recent memory. Surpassing conventional systems with energy-integrating detector technology in many aspects, PCD-CT scanners provide superior spatial resolution and dose efficiency for all radiological subspecialities. Demanding detailed display of trabecular microarchitecture and extensive anatomical coverage frequently within the same scan, musculoskeletal (MSK) imaging in particular can be a beneficiary of PCD-CT's remarkable performance. Since PCD-CT provides users with a plethora of customization options for both image acquisition and reconstruction, however, MSK radiologists need to be familiar with the scanner to unlock its full potential. From filter-based spectral shaping for artifact reduction over full field-of-view ultra-high-resolution scans to postprocessing of single- or dual-source multienergy data, almost every imaging task can be met with an optimized approach in PCD-CT. The objectives of this review were to give an overview of the most promising applications of PCD-CT in MSK imaging to date, to state current limitations, and to highlight directions for future research and developments.

光子计数探测器 CT 在肌肉骨骼放射学中的应用。
摘要:光子计数探测器(PCD)是近年来医学成像领域最具影响力的技术发展之一。PCD-CT 扫描仪在许多方面都超越了采用能量集成探测器技术的传统系统,可为所有放射亚专科提供卓越的空间分辨率和剂量效率。肌肉骨骼(MSK)成像需要在同一次扫描中详细显示骨小梁微结构和广泛的解剖学覆盖范围,因此 PCD-CT 的卓越性能尤其使其受益匪浅。然而,由于 PCD-CT 为用户提供了大量图像采集和重建的定制选项,因此 MSK 放射科医生需要熟悉该扫描仪,才能充分挖掘其潜力。从基于滤波器的光谱整形以减少全视野超高分辨率扫描的伪影,到单源或双源多能数据的后处理,几乎所有成像任务都可以通过 PCD-CT 的优化方法来完成。本综述旨在概述迄今为止 PCD-CT 在 MSK 成像中最有前景的应用,说明目前的局限性,并强调未来研究和发展的方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Investigative Radiology
Investigative Radiology 医学-核医学
CiteScore
15.10
自引率
16.40%
发文量
188
审稿时长
4-8 weeks
期刊介绍: Investigative Radiology publishes original, peer-reviewed reports on clinical and laboratory investigations in diagnostic imaging, the diagnostic use of radioactive isotopes, computed tomography, positron emission tomography, magnetic resonance imaging, ultrasound, digital subtraction angiography, and related modalities. Emphasis is on early and timely publication. Primarily research-oriented, the journal also includes a wide variety of features of interest to clinical radiologists.
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