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使用二维选择性射频激发以高时间分辨率同时采集分布式脑区的功能磁共振成像。

Simultaneous functional MRI acquisition of distributed brain regions with high temporal resolution using a 2D-selective radiofrequency excitation.

作者信息

Finsterbusch Jürgen

机构信息

Department of Systems Neuroscience, University Medical Center Hamburg-Eppendorf, Hamburg, Germany; Neuroimage Nord, University Medical Centers Hamburg-Kiel-Lübeck, Germany.

出版信息

Magn Reson Med. 2015 Feb;73(2):683-91. doi: 10.1002/mrm.25143. Epub 2014 Feb 26.

Abstract

PURPOSE

To perform simultaneous functional MRI of multiple, distributed brain regions at high temporal resolution using a 2D-selective radiofrequency (2DRF) excitation.

METHODS

A tailored 2DRF excitation is used to excite several, small regions-of-interest distributed in the brain. They are acquired in a single projection image with an appropriately chosen orientation such that the different regions-of-interest can be discriminated by their position in the projection plane. Thus, they are excited and acquired simultaneously with a temporal resolution comparable to that of a single-slice measurement. The feasibility of this approach for functional neuroimaging (in-plane resolution 2 × 2 mm(2) ) at high temporal resolution (80 ms) is demonstrated in healthy volunteers for regions-of-interest in the visual and motor system using checkerboard and finger tapping block-design paradigms.

RESULTS

Task-related brain activation could be observed in both the visual and the motor system simultaneously with a high temporal resolution. For an onset shift of 240 ms for half of the checkerboard, a delay of the hemodynamic response in the corresponding hemisphere of the visual cortex could be detected.

CONCLUSION

Limiting the excited magnetization to the desired target regions with a 2DRF excitation reduces the imaging sampling requirements which can improve the temporal resolution significantly.

摘要

目的

使用二维选择性射频(2DRF)激发,以高时间分辨率对多个分布的脑区进行同步功能磁共振成像。

方法

采用定制的2DRF激发来激发分布在大脑中的几个小感兴趣区域。它们在具有适当选择方向的单个投影图像中采集,使得不同的感兴趣区域可以通过它们在投影平面中的位置来区分。因此,它们以与单切片测量相当的时间分辨率同时被激发和采集。在健康志愿者中,使用棋盘格和手指敲击块设计范式,在视觉和运动系统的感兴趣区域,证明了这种方法在高时间分辨率(80毫秒)下用于功能神经成像(平面分辨率2×2毫米²)的可行性。

结果

在视觉和运动系统中均能同时观察到与任务相关的脑激活,且具有高时间分辨率。对于棋盘格一半的240毫秒起始偏移,可检测到视觉皮层相应半球血流动力学反应的延迟。

结论

用2DRF激发将激发的磁化限制在所需的目标区域可降低成像采样要求,从而显著提高时间分辨率。

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