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3T下大静脉对GE BOLD空间定位的影响:位移而非模糊。

The effect of large veins on spatial localization with GE BOLD at 3 T: Displacement, not blurring.

作者信息

Olman Cheryl A, Inati Souheil, Heeger David J

机构信息

Department of Psychology and Radiology, University of Minnesota, N218 Elliott Hall, 75 East River Road, Minneapolis, MN 55455, USA.

出版信息

Neuroimage. 2007 Feb 1;34(3):1126-35. doi: 10.1016/j.neuroimage.2006.08.045. Epub 2006 Dec 6.

Abstract

We used two different methods of region of interest (ROI) definition to investigate the spatial accuracy of functional magnetic resonance imaging (fMRI) at low and high spatial resolution. The "single-condition localizer" consisted of block alternation between a target stimulus and a mean gray background. The "differential localizer" consisted of block alternation between the target stimulus and another stimulus that filled the complement of the visual field. A separate series of scans, in which the target stimulus was presented briefly with long inter-stimulus intervals, was used to measure the hemodynamic impulse response function (HIRF). As expected, the differential localizer defined more restricted ROIs that better matched the predicted cortical representation of the target stimulus. However, at low resolution (3-mm isotropic) many voxels that responded positively to the target stimulus in the differential protocol responded negatively to the target stimulus in the single-condition localizer and in the HIRF measurements. The localization errors were attributed to voxels near large veins, which were identified based on low mean intensity and high variance. At high resolution (1.2-mm isotropic), the effects of large veins were present, but affected a smaller number of voxels. Thus, the use of differential localizers does not necessarily result in a more accurate indication of the underlying neural activity. Localization errors are reduced at higher spatial resolutions and can be eliminated by identification and removal of voxels dominated by large veins.

摘要

我们使用了两种不同的感兴趣区域(ROI)定义方法,来研究低空间分辨率和高空间分辨率下功能磁共振成像(fMRI)的空间准确性。“单条件定位器”由目标刺激与平均灰色背景之间的块交替组成。“差异定位器”由目标刺激与填充视野互补区域的另一种刺激之间的块交替组成。使用单独的一系列扫描来测量血流动力学脉冲响应函数(HIRF),其中目标刺激以较长的刺激间隔短暂呈现。正如预期的那样,差异定位器定义的ROI更受限,与目标刺激的预测皮质表征匹配得更好。然而,在低分辨率(3毫米各向同性)下,差异方案中对目标刺激呈阳性反应的许多体素,在单条件定位器和HIRF测量中对目标刺激呈阴性反应。定位误差归因于大静脉附近的体素,这些体素是根据低平均强度和高方差识别出来的。在高分辨率(1.2毫米各向同性)下,大静脉的影响仍然存在,但影响的体素数量较少。因此,使用差异定位器不一定能更准确地指示潜在的神经活动。在更高的空间分辨率下,定位误差会减少,并且可以通过识别和去除受大静脉主导的体素来消除。

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