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1.5、3和7特斯拉场强下的功能磁共振成像:表征血氧水平依赖(BOLD)信号变化

fMRI at 1.5, 3 and 7 T: characterising BOLD signal changes.

作者信息

van der Zwaag Wietske, Francis Susan, Head Kay, Peters Andrew, Gowland Penny, Morris Peter, Bowtell Richard

机构信息

Sir Peter Mansfield Magnetic Resonance Centre, School of Physics and Astronomy, University of Nottingham, Nottingham, UK.

出版信息

Neuroimage. 2009 Oct 1;47(4):1425-34. doi: 10.1016/j.neuroimage.2009.05.015. Epub 2009 May 14.

Abstract

Blood oxygenation level dependent (BOLD) signal changes occurring during execution of a simple motor task were measured at field strengths of 1.5, 3 and 7 T using multi-slice, single-shot, gradient echo EPI at a resolution of 1x1x3 mm(3), to quantify the benefits offered by ultra-high magnetic field for functional MRI. Using four different echo times at each field strength allowed quantification of the relaxation rate, R(2)* and the change in relaxation rate on activation, DeltaR(2). This work adds to previous studies of the field strength dependence of BOLD signal characteristics, through its: (i) focus on motor rather than visual cortex; (ii) use of single-shot, multi-slice, gradient echo EPI for data acquisition; (iii) co-registration of images acquired at different field strengths to allow assessment of the BOLD signal changes in the same region at each field strength. DeltaR(2) was found to increase linearly with field strength (0.51+/-0.06 s(-1) at 1.5 T; 0.98+/-0.08 s(-1) at 3 T; 2.55+/-0.22 s(-1) at 7 T), while the ratio of DeltaR(2)/R(2), which dictates the accessible BOLD contrast was also found to increase (0.042+/-0.002 at 1.5 T; 0.054+/-0.002 at 3 T; 0.084+/-0.003 at 7 T). The number of pixels classified as active, the t-value calculated over a common region of interest and the percentage signal change in the same region were all found to peak at TE approximately T(2) and increase significantly with field strength. An earlier onset of the haemodynamic response at higher field provides some evidence for a reduced venous contribution to the BOLD signal at 7 T.

摘要

在执行简单运动任务期间发生的血氧水平依赖(BOLD)信号变化,使用多切片、单次激发、梯度回波EPI,在1.5、3和7 T的场强下,以1x1x3 mm(3)的分辨率进行测量,以量化超高磁场对功能磁共振成像(fMRI)的益处。在每个场强下使用四个不同的回波时间,可以量化弛豫率R(2)以及激活时弛豫率的变化DeltaR(2)。这项工作通过以下方面补充了先前关于BOLD信号特征场强依赖性的研究:(i)关注运动皮层而非视觉皮层;(ii)使用单次激发、多切片、梯度回波EPI进行数据采集;(iii)对在不同场强下采集的图像进行配准,以评估每个场强下同一区域的BOLD信号变化。发现DeltaR(2)随场强呈线性增加(1.5 T时为0.51±0.06 s(-1);3 T时为0.98±0.08 s(-1);7 T时为2.55±0.22 s(-1)),而决定可获得的BOLD对比度的DeltaR(2)/R(2)比值也增加(1.5 T时为0.042±0.002;3 T时为0.054±0.002;7 T时为0.084±0.003)。被分类为活跃的像素数量、在共同感兴趣区域计算的t值以及同一区域的信号变化百分比均在TE约为T(2)*时达到峰值,并随场强显著增加。在更高场强下血流动力学反应的更早开始为7 T时静脉对BOLD信号的贡献减少提供了一些证据。

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