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A comparison of peripheral imaging technologies for bone and muscle quantification: a technical review of image acquisition

机译:用于骨骼和肌肉定量的外围成像技术的比较:图像采集的技术综述

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摘要

The choice of an appropriate imaging technique to quantify bone, muscle, or muscle adiposity needs to be guided by a thorough understanding of its competitive advantages over other modalities balanced by its limitations. This review details the technical machinery and methods behind peripheral quantitative computed tomography (pQCT), high-resolution (HR)-pQCT, and magnetic resonance imaging (MRI) that drive successful depiction of bone and muscle morphometry, densitometry, and structure. It discusses a number of image acquisition settings, the challenges associated with using one versus another, and compares the risk-benefits across the different modalities. Issues related to all modalities including partial volume artifact, beam hardening, calibration, and motion assessment are also detailed. The review further provides data and images to illustrate differences between methods to better guide the reader in selecting an imaging method strategically. Overall, investigators should be cautious of the impact of imaging parameters on image signal or contrast-to-noise-ratios, and the need to report these settings in future publications. The effect of motion should be assessed on images and a decision made to exclude prior to segmentation. A more standardized approach to imaging bone and muscle on pQCT and MRI could enhance comparability across studies and could improve the quality of meta-analyses.
机译:在选择合适的成像技术以量化骨骼,肌肉或肌肉肥胖症时,需要先全面了解其相对于其他方式所受局限性所具有的竞争优势,然后进行指导。这篇综述详细介绍了外围定量计算机断层扫描(pQCT),高分辨率(HR)-pQCT和磁共振成像(MRI)背后的技术机制和方法,这些技术和方法成功地描绘了骨骼和肌肉的形态,密度和结构。它讨论了许多图像采集设置,以及使用一个图像对另一个图像所带来的挑战,并比较了不同模式下的风险收益。还详细介绍了与所有模态有关的问题,包括部分体积伪影,光束硬化,校准和运动评估。该评论还提供了数据和图像,以说明方法之间的差异,以更好地指导读者从策略上选择成像方法。总体而言,研究人员应注意成像参数对图像信号或对比度-噪声比的影响,并需要在以后的出版物中报告这些设置。应该评估运动对图像的影响,并在分割之前做出排除的决定。在pQCT和MRI上对骨骼和肌肉成像的更加标准化的方法可以增强研究之间的可比性,并可以改善荟萃分析的质量。

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