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A comprehensive evaluation of increasing temporal resolution with multiband-accelerated protocols and effects on statistical outcome measures in fMRI

机译:综合评价,对多频带加速协议及对FMRI统计结果措施的影响越来越多的时间分辨率

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Accelerated functional Magnetic Resonance Imaging (fMRI) with 'multiband' protocols is now relatively widespread. These protocols can be used to dramatically reduce the repetition time (TR) and produce a time-series sampled at a higher temporal resolution, which may produce benefits in the statistical methods typically used to analyse fMRI data. We tested the effects of higher temporal resolutions for fMRI on statistical outcome measures in a comprehensive manner on two different MRI scanner platforms. Spatial resolution was maintained at a constant of 3mm isotropic voxels, and an in-plane acceleration factor of 2 was used for all experiments. Experiment 1 tested a range of acceleration factors (1-6) against a standard EPI protocol on a single composite task that mapped a number of basic sensory, motor, and cognitive networks. Experiment 2 compared the standard protocol with acceleration factors of 2 and 3 on both resting-state and two task paradigms (an N-back task, and faces/ places task), with a number of different analysis approaches. Results from experiment 1 showed modest but relatively inconsistent effects of the higher sampling rate on statistical outcome measures. Experiment 2 showed strong benefits of the multiband protocols on results derived from resting-state data, but more varied effects on results from the task paradigms. Notably, the multiband protocols were superior when Multi-Voxel Pattern Analysis was used to interrogate the faces/places data, but showed less benefit in conventional General Linear Model analyses of the same data. In general, ROI-derived measures of statistical effects benefitted only modestly from higher sampling resolution, with greater effects seen when using a measure of the top range of statistical values. Across both experiments, results from the two scanner platforms were broadly comparable. The statistical benefits of high temporal resolution fMRI with multiband protocols may therefore depend on a number of factors, including the nature of the investigation (resting-state vs. task-based), the experimental design, the particular statistical outcome measure, and the type of analysis used.
机译:加速功能磁共振成像(FMRI)与“多频带”协议相对普遍。这些协议可用于显着降低重复时间(TR)并以更高的时间分辨率产生时间序列,其可以在通常用于分析FMRI数据的统计方法中产生益处。我们在两种不同的MRI扫描仪平台上以全面的方式测试了对FMRI的统计结果测量较高的时间分辨率的影响。空间分辨率保持在3mm各向同性体素的常数上,并且所有实验使用平面内加速度因子。实验1对单个复合任务的标准EPI协议进行了一系列加速因子(1-6),该任务映射了许多基本感觉,电机和认知网络。实验2与休息状态和两个任务范例(N背部任务和面部/地方任务)的加速因子与2和3的加速因子进行了比较,具有许多不同的分析方法。实验1的结果显示了统计结果措施较高的采样率的适度但相对不一致。实验2显示了多频带协议对来自休息状态数据的结果的强烈优势,但对任务范例的结果产生了更大的影响。值得注意的是,当使用多体素模式分析来询问面部/放置数据时,多频带协议较好,但在相同数据的传统一般线性模型分析中显示出更少的益处。一般来说,ROI衍生的统计效应测量仅受到更高的采样分辨率的统计效应,在使用统计值的顶部范围的度量时,可以看到更大的效果。在两个实验中,两个扫描仪平台的结果广泛可比较。因此,具有多频带协议的高时间分辨率FMRI的统计效益可能取决于许多因素,包括调查的性质(休息状态与任务基础),实验设计,特定统计结果测量和类型分析使用。

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