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首页> 外文期刊>NeuroImage >A deconvolution algorithm for multi-echo functional MRI: Multi-echo Sparse Paradigm Free Mapping
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A deconvolution algorithm for multi-echo functional MRI: Multi-echo Sparse Paradigm Free Mapping

机译:多回声功能MRI的解卷积算法:多回声稀疏范式免费映射

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This work introduces a novel algorithm for deconvolution of the BOLD signal in multi-echo fMRI data: Multi-echo Sparse Paradigm Free Mapping (ME-SPFM). Assuming a linear dependence of the BOLD percent signal change on the echo time (TE) and using sparsity-promoting regularized least squares estimation, ME-SPFM yields voxelwise time-varying estimates of the changes in the apparent transverse relaxation (Delta R-2*) without prior knowledge of the timings of individual BOLD events. Our results in multi-echo fMRI data collected during a multi-task event-related paradigm at 3 Tesla demonstrate that the maps of R-2* changes obtained with ME-SPFM at the times of the stimulus trials show high spatial and temporal concordance with the activation maps and BOLD signals obtained with standard model-based analysis. This method yields estimates of Delta R-2* having physiologically plausible values. Owing to its ability to blindly detect events, ME-SPFM also enables us to map Delta R-2* associated with spontaneous, transient BOLD responses occurring between trials. This framework is a step towards deciphering the dynamic nature of brain activity in naturalistic paradigms, resting-state or experimental paradigms with unknown timing of the BOLD events.
机译:这项工作介绍了一种新颖的多回声FMRI数据中粗体信号的解卷积算法:多回声稀疏范式免费映射(ME-SPFM)。假设粗体百分比信号变化的线性依赖性对回波时间(TE)和使用稀疏性促进正规最小二乘估计,Me-SPFM产生了表观横向松弛的变化的体素时变化估计(Delta R-2 * )没有先验知识的个人大胆事件的时间。我们的结果在3个特斯拉在多任务事件相关范例期间收集的多回声FMRI数据表明,在刺激试验的时间内使用ME-SPFM获得的R-2 *变化显示出高空间和时间的一致性基于标准模型的分析获得的激活图和粗体信号。该方法产生ΔR-2 *具有生理合理值的估计值。由于其盲目检测到事件的能力,ME-SPFM还使我们能够在试验之间进行与自发的瞬态大胆响应映射ΔR-2 *。该框架是朝着自然主义范式,休息状态或实验范式中的大脑活动的动态性质的一步,具有未知的大胆事件的时间。

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