Sir Peter Mansfield Imaging Centre, School of Physics and Astronomy, University of Nottingham, University Park, Nottingham, UK.
Sir Peter Mansfield Imaging Centre, School of Physics and Astronomy, University of Nottingham, University Park, Nottingham, UK.
Neuroimage. 2017 Jul 15;155:565-576. doi: 10.1016/j.neuroimage.2016.11.064. Epub 2016 Nov 27.
The study of functional connectivity using magnetoencephalography (MEG) is an expanding area of neuroimaging, and adds an extra dimension to the more common assessments made using fMRI. The importance of such metrics is growing, with recent demonstrations of their utility in clinical research, however previous reports suggest that whilst group level resting state connectivity is robust, single session recordings lack repeatability. Such robustness is critical if MEG measures in individual subjects are to prove clinically valuable. In the present paper, we test how practical aspects of experimental design affect the intra-subject repeatability of MEG findings; specifically we assess the effect of co-registration method and data recording duration. We show that the use of a foam head-cast, which is known to improve co-registration accuracy, increased significantly the between session repeatability of both beamformer reconstruction and connectivity estimation. We also show that recording duration is a critical parameter, with large improvements in repeatability apparent when using ten minute, compared to five minute recordings. Further analyses suggest that the origin of this latter effect is not underpinned by technical aspects of source reconstruction, but rather by a genuine effect of brain state; short recordings are simply inefficient at capturing the canonical MEG network in a single subject. Our results provide important insights on experimental design and will prove valuable for future MEG connectivity studies.
使用脑磁图(MEG)研究功能连接是神经影像学中一个不断发展的领域,为更常见的 fMRI 评估增加了一个额外的维度。这些指标的重要性日益增加,最近的研究表明它们在临床研究中的实用性,但之前的报告表明,虽然组水平静息状态连接具有稳健性,但单次记录缺乏可重复性。如果要证明 MEG 在个体受试者中的测量具有临床价值,那么这种稳健性至关重要。在本文中,我们测试了实验设计的实际方面如何影响 MEG 结果的个体内可重复性;具体来说,我们评估了配准方法和数据记录持续时间的影响。我们表明,使用泡沫头罩可以提高配准准确性,这显著提高了束形成器重建和连接估计的两次扫描之间的可重复性。我们还表明,记录持续时间是一个关键参数,与使用五分钟记录相比,十分钟记录的可重复性明显提高。进一步的分析表明,这种效果的产生并非源于源重建的技术方面,而是大脑状态的真实影响;短时间记录在单个受试者中捕获典型的 MEG 网络效率低下。我们的研究结果为实验设计提供了重要的见解,并将对未来的 MEG 连接研究具有重要价值。