Department of Neuroradiology, Barrow Neurological Institute, Phoenix, Arizona, USA.
Philips Healthcare, Houston, Texas, USA.
Magn Reson Med. 2023 Dec;90(6):2500-2509. doi: 10.1002/mrm.29809. Epub 2023 Sep 5.
Brain MRI is increasingly used in the emergency department (ED), where -weighted MRI is an essential tool for detecting hemorrhage and stroke. The goal of this study was to develop a rapid -weighted MRI technique capable of correcting motion-induced artifacts, thereby simultaneously improving scan time and motion robustness for ED applications.
A 2D gradient-echo (GRE)-based multishot EPI (msEPI) technique was implemented using a navigator echo for estimating motion-induced errors. Bulk rigid head motion and phase errors were retrospectively corrected using an iterative conjugate gradient approach in the reconstruction pipeline. Three volunteers and select patients were imaged at 3 T and/or 1.5 T with an approximately 1-min full-brain protocol using the proposed msEPI technique and compared to an approximately 3-min standard-of-care GRE protocol to examine its performance.
Data from volunteers demonstrated that in-plane motion artifacts could be effectively corrected with the proposed msEPI technique, and through-plane motion artifacts could be mitigated. Patient images were qualitatively reviewed by one radiologist without a formal statistical analysis. These results suggested the proposed technique could correct motion-induced artifacts in the clinical setting. In addition, the conspicuity of susceptibility-related lesions using the proposed msEPI technique was comparable, or improved, compared to GRE.
A 1-min full-brain -weighted MRI technique was developed using msEPI with a navigator echo to correct motion-induced errors. Preliminary clinical results suggest faster scans and improved motion robustness and lesion conspicuity make msEPI a competitive alternative to traditional -weighted MRI techniques for brain studies in the ED.
脑磁共振成像(MRI)在急诊科(ED)中的应用日益增多,其中梯度回波(GRE)加权 MRI 是检测出血和中风的重要工具。本研究旨在开发一种快速的 GRE 加权 MRI 技术,能够纠正运动伪影,从而同时提高 ED 应用中的扫描速度和运动稳定性。
采用基于 2D 梯度回波(GRE)的多 shot 回波平面成像(msEPI)技术,利用导航回波估计运动引起的误差。采用迭代共轭梯度方法在重建流水线中对整体刚性头动和相位误差进行后向校正。在 3T 和/或 1.5T 上对 3 名志愿者和部分患者进行成像,使用所提出的 msEPI 技术进行大约 1 分钟的全脑扫描,并与大约 3 分钟的标准 GRE 协议进行比较,以检查其性能。
志愿者的数据表明,所提出的 msEPI 技术可以有效纠正平面内运动伪影,并减轻平面外运动伪影。一位放射科医生对患者的图像进行了定性评估,未进行正式的统计学分析。这些结果表明,在临床环境中,该技术可以纠正运动伪影。此外,与 GRE 相比,使用所提出的 msEPI 技术可以提高或改善与磁化率相关的病变的显著性。
采用带有导航回波的多 shot 回波平面成像(msEPI)技术开发了一种 1 分钟的全脑 GRE 加权 MRI 技术,用于校正运动引起的误差。初步临床结果表明,更快的扫描速度、提高的运动稳定性和病变显著性使 msEPI 成为 ED 中脑部研究的传统 GRE 加权 MRI 技术的一种有竞争力的替代方法。