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磁共振弹性成像中反演方法的比较:一种用于处理多频剪切波数据的开放获取管道,以及在体模、人肾和人脑中的演示。

Comparison of inversion methods in MR elastography: An open-access pipeline for processing multifrequency shear-wave data and demonstration in a phantom, human kidneys, and brain.

机构信息

Department of Radiology, Charité - Universitätsmedizin Berlin, Berlin, Germany.

Institute of Medical Informatics, Charité - Universitätsmedizin Berlin, Berlin, Germany.

出版信息

Magn Reson Med. 2022 Oct;88(4):1840-1850. doi: 10.1002/mrm.29320. Epub 2022 Jun 12.

Abstract

PURPOSE

Magnetic resonance elastography (MRE) maps the viscoelastic properties of soft tissues for diagnostic purposes. However, different MRE inversion methods yield different results, which hinder comparison of values, standardization, and establishment of quantitative MRE markers. Here, we introduce an expandable, open-access, webserver-based platform that offers multiple inversion techniques for multifrequency, 3D MRE data.

METHODS

The platform comprises a data repository and standard MRE inversion methods including local frequency estimation (LFE), direct-inversion based multifrequency dual elasto-visco (MDEV) inversion, and wavenumber-based (k-) MDEV. The use of the platform is demonstrated in phantom data and in vivo multifrequency MRE data of the kidneys and brains of healthy volunteers.

RESULTS

Detailed maps of stiffness were generated by all inversion methods showing similar detail of anatomy. Specifically, the inner renal cortex had higher shear wave speed (SWS) than renal medulla and outer cortex without lateral differences. k-MDEV yielded higher SWS values than MDEV or LFE (full kidney/brain k-MDEV: 2.71 ± 0.19/1.45 ± 0.14 m/s, MDEV: 2.14 ± 0.16/0.99 ± 0.11 m/s, LFE: 2.12 ± 0.15/0.89 ± 0.06 m/s).

CONCLUSION

The freely accessible platform supports the comparison of MRE results obtained with different inversion methods, filter thresholds, or excitation frequencies, promoting reproducibility in MRE across community-developed methods.

摘要

目的

磁共振弹性成像(MRE)用于诊断目的,可绘制软组织的粘弹性特性图。然而,不同的 MRE 反演方法会产生不同的结果,这阻碍了值的比较、标准化和定量 MRE 标志物的建立。在这里,我们引入了一个可扩展的、开放访问的、基于网络服务器的平台,该平台提供了多种反演技术,适用于多频、3D MRE 数据。

方法

该平台包括一个数据存储库和标准的 MRE 反演方法,包括局部频率估计(LFE)、基于直接反演的多频双弹粘(MDEV)反演以及基于波数(k)的 MDEV。该平台的使用在体模数据和健康志愿者的肾脏和大脑的多频 MRE 数据中得到了演示。

结果

所有反演方法都生成了详细的刚度图,显示了相似的解剖细节。具体来说,肾内皮质的剪切波速度(SWS)高于肾髓质和外皮质,且没有侧向差异。k-MDEV 产生的 SWS 值高于 MDEV 或 LFE(全肾/脑 k-MDEV:2.71±0.19/1.45±0.14 m/s,MDEV:2.14±0.16/0.99±0.11 m/s,LFE:2.12±0.15/0.89±0.06 m/s)。

结论

这个免费访问的平台支持使用不同的反演方法、滤波器阈值或激励频率来比较 MRE 结果,促进了社区开发方法之间的 MRE 重现性。

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