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非均匀图像质量的综合评估:在金属附近成像中的应用。

Comprehensive assessment of nonuniform image quality: Application to imaging near metal.

作者信息

Toews Alexander R, Lee Philip K, Nayak Krishna S, Hargreaves Brian A

机构信息

Radiology, Stanford University, Stanford, California, USA.

Electrical Engineering, Stanford University, Stanford, California, USA.

出版信息

Magn Reson Med. 2024 Dec;92(6):2358-2372. doi: 10.1002/mrm.30222. Epub 2024 Jul 12.

Abstract

PURPOSE

Comprehensive assessment of image quality requires accounting for spatial variations in (i) intensity artifact, (ii) geometric distortion, (iii) signal-to-noise ratio (SNR), and (iv) spatial resolution, among other factors. This work presents an ensemble of methods to meet this need, from phantom design to image analysis, and applies it to the scenario of imaging near metal.

METHODS

A modular phantom design employing a gyroid lattice is developed to enable the co-registered volumetric quantitation of image quality near a metallic hip implant. A method for measuring spatial resolution by means of local point spread function (PSF) estimation is presented and the relative fitness of gyroid and cubic lattices is examined. Intensity artifact, geometric distortion, and SNR maps are also computed. Results are demonstrated with 2D-FSE and MAVRIC-SL scan protocols on a 3T MRI scanner.

RESULTS

The spatial resolution method demonstrates a worst-case error of 0.17 pixels for measuring in-plane blurring up to 3 pixels (full width at half maximum). The gyroid outperforms a cubic lattice design for the local PSF estimation task. The phantom supports four configurations toggling the presence/absence of both metal and structure with good spatial correspondence for co-registered analysis of the four quality factors. The marginal scan time to evaluate one scan protocol amounts to five repetitions. The phantom design can be fabricated in 2 days at negligible material cost.

CONCLUSION

The phantom and associated analysis methods can elucidate complex image quality trade-offs involving intensity artifact, geometric distortion, SNR, and spatial resolution. The ensemble of methods is suitable for benchmarking imaging performance near metal.

摘要

目的

全面评估图像质量需要考虑以下空间变化因素:(i)强度伪影、(ii)几何失真、(iii)信噪比(SNR)以及(iv)空间分辨率等。本研究提出了一套从体模设计到图像分析的方法来满足这一需求,并将其应用于金属附近成像的场景。

方法

开发了一种采用螺旋晶格的模块化体模设计,以实现对金属髋关节植入物附近图像质量的共配准体积定量分析。提出了一种通过局部点扩散函数(PSF)估计来测量空间分辨率的方法,并研究了螺旋晶格和立方晶格的相对适用性。还计算了强度伪影、几何失真和SNR图。在3T MRI扫描仪上使用二维快速自旋回波(2D-FSE)和多视角径向成像与同时多层成像(MAVRIC-SL)扫描协议展示了结果。

结果

空间分辨率方法在测量高达3像素(半高宽)的平面内模糊时,最坏情况下的误差为0.17像素。在局部PSF估计任务中,螺旋晶格的表现优于立方晶格设计。该体模支持四种配置,可切换金属和结构的有无,为四个质量因素的共配准分析提供了良好的空间对应性。评估一个扫描协议的额外扫描时间相当于五次重复扫描。该体模设计可在两天内制造完成,材料成本可忽略不计。

结论

该体模及相关分析方法能够阐明涉及强度伪影、几何失真、SNR和空间分辨率的复杂图像质量权衡。这一套方法适用于对金属附近成像性能进行基准测试。

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