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光子计数计算机断层扫描在骨与关节微结构成像中的应用。

Photon-Counting Computed Tomography for Microstructural Imaging of Bone and Joints.

机构信息

Department of Mechanical Engineering, KU Leuven, Leuven, Belgium.

出版信息

Curr Osteoporos Rep. 2024 Aug;22(4):387-395. doi: 10.1007/s11914-024-00876-0. Epub 2024 Jun 4.

Abstract

PURPOSE OF REVIEW

Recently, photon-counting computed tomography (PCCT) has been introduced in clinical research and diagnostics. This review describes the technological advances and provides an overview of recent applications with a focus on imaging of bone.

RECENT FINDINGS

PCCT is a full-body scanner with short scanning times that provides better spatial and spectral resolution than conventional energy-integrating-detector CT (EID-CT), along with an up to 50% reduced radiation dose. It can be used to quantify bone mineral density, to perform bone microstructural analyses and to assess cartilage quality with adequate precision and accuracy. Using a virtual monoenergetic image reconstruction, metal artefacts can be greatly reduced when imaging bone-implant interfaces. Current PCCT systems do not allow spectral imaging in ultra-high-resolution (UHR) mode. Given its improved resolution, reduced noise and spectral imaging capabilities PCCT has diagnostic capacities in both qualitative and quantitative imaging that outperform those of conventional CT. Clinical use in monitoring bone health has already been demonstrated. The full potential of PCCT systems will be unlocked when UHR spectral imaging becomes available.

摘要

目的综述

最近,光子计数 CT(PCCT)已在临床研究和诊断中得到应用。本文介绍了其技术进展,并对其最新应用,尤其是在骨骼成像方面的应用进行了综述。

最近的发现

PCCT 是一种全身扫描仪,具有较短的扫描时间,与传统的能量积分探测器 CT(EID-CT)相比,它具有更好的空间和光谱分辨率,同时辐射剂量降低了 50%。它可用于定量骨矿物质密度,进行骨微观结构分析,并以足够的精度和准确性评估软骨质量。在对骨-植入物界面成像时,使用虚拟单能量图像重建可大大减少金属伪影。目前的 PCCT 系统不允许在超高分辨率(UHR)模式下进行光谱成像。鉴于其提高的分辨率、降低的噪声和光谱成像能力,PCCT 在定性和定量成像方面的诊断能力均优于传统 CT。在监测骨骼健康方面的临床应用已经得到证实。当 UHR 光谱成像成为可能时,PCCT 系统的全部潜力将被释放。

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