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任务和静息状态下获得的功能连接个体差异的可靠性和可重复性。

Reliability and reproducibility of individual differences in functional connectivity acquired during task and resting state.

作者信息

Shah Lubdha M, Cramer Justin A, Ferguson Michael A, Birn Rasmus M, Anderson Jeffrey S

机构信息

Department of Radiology University of Utah Salt Lake City Utah 84132.

Department of Bioengineering University of Utah Salt Lake City Utah 84132.

出版信息

Brain Behav. 2016 Mar 30;6(5):e00456. doi: 10.1002/brb3.456. eCollection 2016 May.

Abstract

OBJECTIVES

Application of fMRI connectivity metrics as diagnostic biomarkers at the individual level will require reliability, sensitivity and specificity to longitudinal changes in development, aging, neurocognitive, and behavioral performance and pathologies. Such metrics have not been well characterized for recent advances in BOLD acquisition.

EXPERIMENTAL DESIGN

Analysis of multiband BOLD data from the HCP 500 Subjects Release was performed with FIX ICA and with WM, CSF and motion parameter regression. Analysis with ROIs covering the gray matter at 5 mm resolution was performed to assess functional connectivity. ROIs in key areas were used to demonstrate statistical differences between specific connections. Reproducibility of group-mean functional connectivity and for single connections for individuals was evaluated for both resting state and task acquisitions.

PRINCIPAL OBSERVATIONS

Systematic differences in group-mean connectivity were demonstrated during task and rest and during different tasks, although individual differences in connectivity were maintained. Reproducibility of a single connection for a subject and across subjects for resting and task acquisition was demonstrated to be a linear function of the square root of imaging time. Randomly removing up to 50% of time points had little effect on reliability, while truncating an acquisition was associated with decreased reliability. Reliability was highest within the cortex, and lowest for deep gray nuclei, gray-white junction, and near large sulci.

CONCLUSIONS

This study found systematic differences in group-mean connectivity acquired during task and rest acquitisions and preserved individual differences in connectivity due to intrinsic differences in an individual's brain activity and structural brain architecture. We also show that longer scan times are needed to acquire data on single subjects for information on connections between specific ROIs. Longer scans may be facilitated by acquisition during task paradigms, which will systematically affect functional connectivity but may preserve individual differences in connectivity on top of task modulations.

摘要

目的

将功能磁共振成像连接性指标作为个体水平的诊断生物标志物应用,需要其对发育、衰老、神经认知、行为表现和病理方面的纵向变化具有可靠性、敏感性和特异性。对于血氧水平依赖(BOLD)采集的最新进展而言,此类指标尚未得到充分表征。

实验设计

使用FIX独立成分分析(ICA)以及白质(WM)、脑脊液(CSF)和运动参数回归,对来自人类连接组计划(HCP)500名受试者版本的多波段BOLD数据进行分析。使用分辨率为5毫米的覆盖灰质的感兴趣区域(ROI)进行分析,以评估功能连接性。使用关键区域的ROI来证明特定连接之间的统计差异。对静息状态和任务采集的组平均功能连接性以及个体的单个连接的可重复性进行了评估。

主要观察结果

尽管连接性存在个体差异,但在任务和休息期间以及不同任务期间,组平均连接性存在系统差异。对于静息和任务采集,单个受试者以及跨受试者的单个连接的可重复性被证明是成像时间平方根的线性函数。随机去除高达50%的时间点对可靠性影响很小,而截断采集则与可靠性降低相关。可靠性在皮质内最高,在深部灰质核、灰白质交界处和大沟附近最低。

结论

本研究发现,在任务和休息采集中获得的组平均连接性存在系统差异,并且由于个体大脑活动和脑结构的内在差异,连接性的个体差异得以保留。我们还表明,需要更长的扫描时间来获取关于单个受试者特定ROI之间连接信息的数据。在任务范式期间进行采集可能有助于延长扫描时间,这将系统性地影响功能连接性,但在任务调制之上可能保留连接性的个体差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9af3/4873654/adb58ed2d07c/BRB3-6-e00456-g001.jpg

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