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Changes in fMRI magnitude data and phase data observed in block-design and event-related tasks.

机译:在模块设计和事件相关任务中观察到的fMRI幅值数据和相位数据的变化。

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Functional magnetic resonance imaging (fMRI) data are acquired as a complex image pair including magnitude and phase information. The vast majority of fMRI experiments do not attempt to take advantage of the time varying phase information. The phase of the MRI signal is related to the local magnetic field changes, suggesting it may contain useful information about the source of hemodynamic activity. Analysis of phase data acquired from different fMRI experiments has shown the presence of activity in response to various stimuli. However, there have been no studies that have examined phase data in a larger group of subjects for multiple types of fMRI tasks nor have studies examined phase changes due to event-related stimuli. In this paper, we evaluate the correspondence between the magnitude and phase changes at a group level in a block-design motor tapping task and in an event-related auditory oddball task. The results for both block-design and event-related tasks indicate the presence of task-related information in the phase data with phase-only and magnitude-only approaches showing signal changes in the expected brain regions. Although there is more overall activity detected with magnitude data, the phase-only analysis also reveals activity in regions expected to be involved in the task, some of which were not significantly activated in the magnitude-only analysis, suggesting that the phase might provide some unique information. In addition, the phase can potentially increase sensitivity within regions also showing magnitude changes. Future work should focus on additional methods for combining the magnitude and phase data.
机译:功能性磁共振成像(fMRI)数据作为包含幅度和相位信息的复杂图像对获取。大多数功能磁共振成像实验都没有尝试利用时变相位信息。 MRI信号的相位与局部磁场变化有关,表明它可能包含有关血液动力学活动来源的有用信息。从不同的功能磁共振成像实验获得的相位数据分析表明,存在着对各种刺激的反应。然而,还没有研究针对多种类型的fMRI任务检查较大组受试者的相位数据,也没有研究研究由于事件相关刺激而引起的相位变化。在本文中,我们在块设计的电机攻丝任务和与事件相关的听觉怪异任务中,评估了组水平上幅度和相位变化之间的对应关系。块设计任务和事件相关任务的结果均表明,阶段数据中存在与任务相关的信息,其中仅相位和仅幅度方法显示了预期大脑区域中的信号变化。尽管使用量级数据检测到了更多的总体活动,但仅阶段分析还显示了预期要参与任务的区域中的活动,其中一些活动在仅幅度分析中并未得到明显激活,这表明该阶段可能会提供一些独特的信息。此外,相位还可能会增加同样显示幅度变化的区域内的灵敏度。未来的工作应侧重于组合幅度和相位数据的其他方法。

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