光子计数检测器CT在肌肉骨骼成像中的应用:优势与展望。

IF 3.4 4区 医学 Q3 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Ahmed O El Sadaney, Andrea Ferrero, Kishore Rajendran, Ronald Booij, Roy Marcus, Reto Sutter, Edwin H G Oei, Francis Baffour
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引用次数: 0

摘要

光子计数检测器CT (PCD-CT)代表了医学成像的重大进步,特别是在肌肉骨骼(MSK)应用方面。它的主要创新在于提高了空间分辨率,这有助于提高对小梁骨、骨赘和软骨下囊肿等小解剖结构的检测。PCD-CT可以在减少辐射剂量的情况下实现高质量的成像,这对需要频繁成像的人群尤其有益,例如儿科患者和多发性骨髓瘤患者。此外,PCD-CT支持高级应用,如骨质量评估,这与金标准测试密切相关,可以帮助诊断骨质疏松症和评估骨折风险。光谱整形和虚拟单能成像等技术进一步优化了该技术,最大限度地减少了伪影并增强了材料分解。这些功能扩展到痛风和血液恶性肿瘤等疾病,提供改进的检测和评估。人工智能的融合可以通过降低图像噪声和改进定量评估来提高pc - ct的性能。最终,PCD-CT的高分辨率、低剂量方案和多能成像能力可能会对MSK成像产生变革性影响,提高诊断准确性、患者护理和临床结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photon-counting detector CT in musculoskeletal imaging: benefits and outlook.

Photon-counting detector CT (PCD-CT) represents a significant advancement in medical imaging, particularly for musculoskeletal (MSK) applications. Its primary innovation lies in enhanced spatial resolution, which facilitates improved detection of small anatomical structures such as trabecular bone, osteophytes, and subchondral cysts. PCD-CT enables high-quality imaging with reduced radiation doses, making it especially beneficial for populations requiring frequent imaging, such as pediatric patients and individuals with multiple myeloma. Additionally, PCD-CT supports advanced applications like bone quality assessment, which correlates well with gold-standard tests, and can aid in diagnosing osteoporosis and assessing fracture risk. Techniques such as spectral shaping and virtual monoenergetic imaging further optimize the technology, minimizing artifacts and enhancing material decomposition. These capabilities extend to conditions like gout and hematologic malignancies, offering improved detection and assessment. The integration of artificial intelligence could enhance PCD-CT's performance by reducing image noise and improving quantitative assessments. Ultimately, PCD-CT's superior resolution, reduced dose protocols, and multi-energy imaging capabilities will likely have a transformative impact on MSK imaging, improving diagnostic accuracy, patient care, and clinical outcomes.

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来源期刊
British Journal of Radiology
British Journal of Radiology 医学-核医学
CiteScore
5.30
自引率
3.80%
发文量
330
审稿时长
2-4 weeks
期刊介绍: BJR is the international research journal of the British Institute of Radiology and is the oldest scientific journal in the field of radiology and related sciences. Dating back to 1896, BJR’s history is radiology’s history, and the journal has featured some landmark papers such as the first description of Computed Tomography "Computerized transverse axial tomography" by Godfrey Hounsfield in 1973. A valuable historical resource, the complete BJR archive has been digitized from 1896. Quick Facts: - 2015 Impact Factor – 1.840 - Receipt to first decision – average of 6 weeks - Acceptance to online publication – average of 3 weeks - ISSN: 0007-1285 - eISSN: 1748-880X Open Access option
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