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Evaluating the Utility of EPIK in a Finger Tapping fMRI Experiment using BOLD Detection and Effective Connectivity

机译:使用粗体检测和有效连通性评估EPIK在手指攻丝FMRI实验中的效用

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EPI with Keyhole (EPIK) is a hybrid imaging technique that overcomes many of the performance disadvantages associated with EPI. Previously, EPIK was shown to provide a higher temporal resolution and fewer image distortions than EPI whilst maintaining comparable performance for the detection of BOLD-based signals. This work carefully examines the putative enhanced sensitivity of EPIK in a typical fMRI setting by using a robust fMRI paradigm - visually guided finger tapping - to demonstrate the advantages of EPIK for fMRI at 3?T. The data acquired were directly compared to the community standard fMRI protocol using single-shot EPI to ascertain a clear comparison. Each sequence was optimised to offer its highest possible spatial resolution for a given set of imaging conditions, i.e., EPIK and EPI achieved an in-planar resolution of 2.08?×?2.08 mmsup2/sup with 32 slices and 3.13?×?3.13 mmsup2/sup with 36 slices, respectively. EPIK demonstrated a number of clear improvements, such as superior spatial resolution with favourable robustness against susceptibility artefacts. Both imaging sequences revealed robust activation within primary motor, premotor and visual regions, although significantly higher BOLD amplitudes were detected using EPIK within the primary and supplementary motor areas. Dynamic causal modelling, in combination with Bayesian model selection, identified identical winning models for EPIK and EPI data. Coupling parameters reflecting task-related modulations and the connectivity of fixed connections were comparably robust for both sequences. However, fixed connections from the left motor cortex to the right visual cortex were estimated as being significantly more robust for EPIK data.
机译:带钥匙孔(EPIK)的EPI是一种混合成像技术,克服了与EPI相关的许多性能缺点。以前,Epik被示出为提供比EPI更高的时间分辨率和更少的图像扭曲,而保持用于检测基于粗基信号的相当性能。这项工作仔细检查了通过使用强大的FMRI范式 - 视觉引导的手指攻丝来审查典型的FMRI设置中EPIK的推定增强敏感性 - 以展示epik在3〜t的优势。使用的数据与社区标准FMRI协议相比,使用单次EPI直接与社区标准FMRI协议进行了明确的比较。优化每个序列以提供其给定的一组成像条件的最高可能的空间分辨率,即EPIK和EPI,实现了2.08×××2.2.08mm 2 的平面分辨率,32片和3.13 ?×3.13mm 2 ,分别有36个切片。 Epik展示了一些明显的改进,例如卓越的空间分辨率,具有良好的稳健性,防止易感性人工制品。两种成像序列都在主电动机,热量和视觉区域内显示出鲁棒的激活,尽管使用初级和补充电动机区域内使用EPIK检测到明显较高的粗振幅度。动态因果建模与贝叶斯模型选择相结合,确定了EPIK和EPI数据的相同获胜模型。反映任务相关的调制的耦合参数和固定连接的连接对于两个序列相对较强。但是,估计从右视觉皮质到右视觉皮层的固定连接被估计为EPIK数据的强大更加强大。

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