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首页> 外文期刊>Medical Physics >Improved arterial spin labeling method: applications for measurements of cerebral blood flow in human brain at high magnetic field MRI.
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Improved arterial spin labeling method: applications for measurements of cerebral blood flow in human brain at high magnetic field MRI.

机译:改进的动脉自旋标记方法:在高磁场MRI下用于测量人脑中脑血流量的应用。

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摘要

Measurements of cerebral blood flow (CBF) with arterial spin labeling (ASL) MRI are challenging primarily due to a poor signal-to-noise (SNR) ratio. Therefore, methods that improve SNR and minimize measurement errors can play a significant role for better estimations of CBF. The purpose of this work was to develop an ASL method for measurements of CBF at high magnetic field strength. In the proposed multislice ASL method, using in-plane double inversion for labeling, stationary spins are kept at equilibrium to avoid T1 relaxation effects, while blood water is labeled using a lower magnetic field gradient. Improvement for CBF measurements is demonstrated on subjects and by comparison with other multislice ASL MRI methods at 1.5 Tesla. Furthermore, echo-planar imaging (EPI) and Turbo-FLASH (TFL) at 4 T MRI are compared for mapping CBF in human brain using various postlabeling delay times. CBF maps were obtained and analyzed within region-of-interests encompassing either gray matter or white matter. Elimination of T1 dependence of stationary spins in conjunction with avoidance of magnetization transfer mismatch between labeling and control scans lead to improved CBF measurements. Although measurements of CBF in brain tissue are feasible at 4 T using either EPI or TFL, TFL reduced contaminations from an intravascular signal and susceptibility-related artifacts, providing overall more robust CBF measurements than EPI. Therefore, the proposed ASL method in combination with TFL should be used for measuring CBF of human brain at 4T.
机译:主要由于信噪比(SNR)较差,使用动脉自旋标记(ASL)MRI测量脑血流量(CBF)面临挑战。因此,改善SNR并最小化测量误差的方法对于更好地估计CBF可以发挥重要作用。这项工作的目的是开发一种在高磁场强度下测量CBF的ASL方法。在提出的多层ASL方法中,使用面内双重反演进行标记,静止的自旋保持平衡以避免T1弛豫效应,同时使用较低的磁场梯度标记血水。通过在受试者身上以及与其他1.5特斯拉的多层ASL MRI方法进行比较,证明了CBF测量的改进。此外,使用各种标记后延迟时间,比较了在4 T MRI时的平面回波成像(EPI)和Turbo-FLASH(TFL)来绘制人脑中的CBF。在涵盖灰质或白质的感兴趣区域内获得并分析了CBF图。消除固定自旋的T1依赖性以及避免标记和对照扫描之间的磁化传递不匹配,可以改善CBF测量。尽管使用EPI或TFL在4 T下测量脑组织中的CBF都是可行的,但TFL减少了来自血管内信号和易感性伪影的污染,提供了比EPI更全面的CBF测量。因此,建议将ASL方法与TFL结合使用以测量4T时人脑的CBF。

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