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在扫描过程中头部运动对多种功能连接测量的影响:对青少年神经发育研究的相关性。

Impact of in-scanner head motion on multiple measures of functional connectivity: relevance for studies of neurodevelopment in youth.

机构信息

Department of Psychiatry, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

Neuroimage. 2012 Mar;60(1):623-32. doi: 10.1016/j.neuroimage.2011.12.063. Epub 2012 Jan 2.

Abstract

It has recently been reported (Van Dijk et al., 2011) that in-scanner head motion can have a substantial impact on MRI measurements of resting-state functional connectivity. This finding may be of particular relevance for studies of neurodevelopment in youth, confounding analyses to the extent that motion and subject age are related. Furthermore, while Van Dijk et al. demonstrated the effect of motion on seed-based connectivity analyses, it is not known how motion impacts other common measures of connectivity. Here we expand on the findings of Van Dijk et al. by examining the effect of motion on multiple types of resting-state connectivity analyses in a large sample of children and adolescents (n=456). Following replication of the effect of motion on seed-based analyses, we examine the influence of motion on graphical measures of network modularity, dual-regression of independent component analysis, as well as the amplitude and fractional amplitude of low frequency fluctuation. In the entire sample, subject age was highly related to motion. Using a subsample where age and motion were unrelated, we demonstrate that motion has marked effects on connectivity in every analysis examined. While subject age was associated with increased within-network connectivity even when motion was accounted for, controlling for motion substantially attenuated the strength of this relationship. The results demonstrate the pervasive influence of motion on multiple types functional connectivity analysis, and underline the importance of accounting for motion in studies of neurodevelopment.

摘要

最近有报道称(Van Dijk 等人,2011 年),在扫描过程中的头部运动会对静息状态功能连接的 MRI 测量产生重大影响。这一发现对于青少年神经发育的研究可能特别重要,因为运动会与受试者年龄相关,从而对分析产生干扰。此外,虽然 Van Dijk 等人证明了运动对基于种子的连通性分析的影响,但目前尚不清楚运动如何影响其他常见的连通性测量方法。在这里,我们通过对大量儿童和青少年(n=456)进行多种类型的静息状态连通性分析,扩展了 Van Dijk 等人的研究结果。在复制运动对基于种子的分析的影响后,我们检查了运动对网络模块化的图形测量、独立成分分析的双回归以及低频波动的幅度和分数幅度的影响。在整个样本中,受试者年龄与运动高度相关。在一个年龄和运动无关的子样本中,我们证明运动对每个分析的连通性都有显著影响。尽管在考虑运动的情况下,受试者年龄与网络内连接的增加有关,但控制运动大大减弱了这种关系的强度。结果表明运动对多种类型的功能连通性分析都有普遍影响,并强调了在神经发育研究中考虑运动的重要性。

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