Department of Biomedical Engineering, Cornell University, Ithaca, New York.
Department of Radiology, Weill Cornell Medical College, New York, New York.
Magn Reson Med. 2020 Mar;83(3):844-857. doi: 10.1002/mrm.27967. Epub 2019 Sep 10.
To improve the accuracy of QSM plus quantitative blood oxygen level-dependent magnitude (QSM + qBOLD or QQ)-based mapping of the oxygen extraction fraction (OEF) and cerebral metabolic rate of oxygen (CMRO ) using cluster analysis of time evolution (CAT).
3D multi-echo gradient echo and arterial spin labeling images were acquired in 11 healthy subjects and 5 ischemic stroke patients. DWI was also carried out on patients. CAT was developed for analyzing signal evolution over TE. QQ-based OEF and CMRO were reconstructed with and without CAT, and results were compared using region of interest analysis and a paired t-test.
Simulations demonstrated that CAT substantially reduced noise error in QQ-based OEF. In healthy subjects, QQ-based OEF appeared less noisy and more uniform with CAT than without CAT; average OEF with and without CAT in cortical gray matter was 32.7 ± 4.0% and 37.9 ± 4.5%, with corresponding CMRO of 148.4 ± 23.8 and 171.4 ± 22.4 μmol/100 g/min, respectively. In patients, regions of low OEF were confined within the ischemic lesions defined on DWI when using CAT, which was not observed without CAT.
The cluster analysis of time evolution (CAT) significantly improves the robustness of QQ-based OEF against noise.
利用时间演化聚类分析(CAT)提高 QSM 加定量血氧水平依赖幅度(QSM + qBOLD 或 QQ)对氧提取分数(OEF)和脑氧代谢率(CMRO)的定量映射的准确性。
在 11 名健康受试者和 5 名缺血性脑卒中患者中采集了 3D 多回波梯度回波和动脉自旋标记图像。还对患者进行了 DWI。开发了 CAT 来分析 TE 上的信号演化。使用感兴趣区域分析和配对 t 检验比较了有无 CAT 时基于 QQ 的 OEF 和 CMRO 的重建结果。
模拟表明,CAT 可大大降低基于 QQ 的 OEF 的噪声误差。在健康受试者中,与无 CAT 相比,CAT 使基于 QQ 的 OEF 噪声更小且更均匀;皮质灰质的平均 OEF 分别为 32.7 ± 4.0%和 37.9 ± 4.5%,相应的 CMRO 分别为 148.4 ± 23.8 和 171.4 ± 22.4 μmol/100 g/min。在患者中,当使用 CAT 时,低 OEF 区域局限于 DWI 定义的缺血性病变内,而无 CAT 时则未观察到。
时间演化聚类分析(CAT)显著提高了基于 QQ 的 OEF 对噪声的稳健性。