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用于测试具有漏液校正功能的软件的动态磁敏感对比 MRI 数字参考对象:背景模拟的影响。

A dynamic susceptibility contrast MRI digital reference object for testing software with leakage correction: Effect of background simulation.

机构信息

Departments of Imaging Physics, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.

Department of Medical Physics, School of Medicine and Public Health, University of Wisconsin-Madison, Madison, WI, USA.

出版信息

Med Phys. 2021 Oct;48(10):6051-6059. doi: 10.1002/mp.15125. Epub 2021 Aug 10.

Abstract

PURPOSE

Dynamic susceptibility contrast (DSC)-MRI is a perfusion imaging technique from which useful quantitative imaging biomarkers can be derived. Relative cerebral blood volume (rCBV) is such a biomarker commonly used for evaluating brain tumors. To account for the extravasation of contrast agents in tumors, post-processing leakage correction is often applied to improve rCBV accuracy. Digital reference objects (DRO) are ideal for testing the post-processing software, because the biophysical model used to generate the DRO can be matched to the one that the software uses. This study aims to develop DROs to validate the leakage correction of software using Weisskoff model and to examine the effect of background signal time curves that are required by the model.

METHODS

Three DROs were generated using the Weisskoff model, each composed of nine foreground lesion objects with combinations of different levels of rCBV and contrast leakage parameter (K2). Three types of background were implemented for these DROs: (1) a multi-compartment brain-like background, (2) a sphere background with a constant signal time curve, and (3) a sphere background with signal time curve identical to that of the brain-like DRO's white matter (WM). The DROs were then analyzed with an FDA-cleared software with and without leakage correction. Leakage correction was tested with and without brain segmentation.

RESULTS

Accuracy of leakage correction was able to be verified using the brain-like phantom and the sphere phantom with WM background. The sphere with constant background did not perform well with leakage correction with or without brain segmentation. The DROs were able to verify that for the particular software tested, leakage correction with brain segmentation achieved the lowest error.

CONCLUSIONS

DSC-MRI DROs with biophysical model matched to that of the post-processing software can be well used for the software's validation, provided that the background signals are also properly simulated for generating the reference time curve required by the model. Care needs to be taken to consider the interaction of the design of the DRO with the software's implementation of brain segmentation to extract the reference time curve.

摘要

目的

动态对比磁共振成像(DSC-MRI)是一种灌注成像技术,从中可以提取出有用的定量成像生物标志物。相对脑血容量(rCBV)是一种常用于评估脑肿瘤的生物标志物。为了考虑到肿瘤中对比剂的渗漏,通常应用后处理渗漏校正来提高 rCBV 的准确性。数字参考对象(DRO)是测试后处理软件的理想选择,因为用于生成 DRO 的生物物理模型可以与软件使用的模型相匹配。本研究旨在开发 DRO 来验证基于 Weisskoff 模型的软件的渗漏校正,并研究模型所需的背景信号时间曲线的影响。

方法

使用 Weisskoff 模型生成了三个 DRO,每个 DRO 由九个具有不同 rCBV 和对比渗漏参数(K2)水平的前景病变对象组成。为这些 DRO 实现了三种类型的背景:(1)多腔脑样背景,(2)具有恒定信号时间曲线的球体背景,以及(3)与脑样 DRO 白质(WM)的信号时间曲线相同的球体背景。然后,使用经过 FDA 批准的软件对 DRO 进行了分析,包括有无渗漏校正。测试了有无脑分割的情况下的渗漏校正。

结果

使用脑样体模和具有 WM 背景的球体体模可以验证渗漏校正的准确性。具有恒定背景的球体在有无脑分割的情况下,渗漏校正效果不佳。DRO 能够验证对于所测试的特定软件,使用脑分割的渗漏校正可以达到最低的误差。

结论

与后处理软件的生物物理模型相匹配的 DSC-MRI DRO 可以很好地用于软件验证,前提是为模型所需的参考时间曲线生成适当模拟背景信号。需要注意的是,要考虑 DRO 的设计与软件实现脑分割之间的相互作用,以提取参考时间曲线。

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