Division of Neuroradiology, University of Utah School of Medicine, Salt Lake City, 84132, USA.
AJNR Am J Neuroradiol. 2011 Mar;32(3):548-55. doi: 10.3174/ajnr.A2330. Epub 2011 Jan 27.
Measurements of resting-state functional connectivity have increasingly been used for characterization of neuropathologic and neurodevelopmental populations. We collected data to characterize how much imaging time is necessary to obtain reproducible quantitative functional connectivity measurements needed for a reliable single-subject diagnostic test.
We obtained 100 five-minute BOLD scans on a single subject, divided into 10 sessions of 10 scans each, with the subject at rest or while watching video clips of cartoons. These data were compared with resting-state BOLD scans from 36 healthy control subjects by evaluating the correlation between each pair of 64 small spheric regions of interest obtained from a published functional brain parcellation.
Single-subject and group data converged to reliable estimates of individual and population connectivity values proportional to 1 / sqrt(n). Dramatic improvements in reliability were seen by using ≤25 minutes of imaging time, with smaller improvements for additional time. Functional connectivity "fingerprints" for the individual and population began diverging at approximately 15 minutes of imaging time, with increasing reliability even at 4 hours of imaging time. Twenty-five minutes of BOLD imaging time was required before any individual connections could reliably discriminate an individual from a group of healthy control subjects. A classifier discriminating scans during which our subject was resting or watching cartoons was 95% accurate at 10 minutes and 100% accurate at 15 minutes of imaging time.
An individual subject and control population converged to reliable different functional connectivity profiles that were task-modulated and could be discriminated with sufficient imaging time.
静息态功能连接的测量已越来越多地用于描述神经病理学和神经发育人群。我们收集数据以确定获得可靠的单个体诊断测试所需的可重复的定量功能连接测量需要多少成像时间。
我们对一名受试者获得了 100 个五分钟的 BOLD 扫描,分为 10 次,每次 10 次扫描,受试者在休息或观看卡通片的视频剪辑时。通过评估从发表的功能大脑分割获得的 64 个小球形感兴趣区域的每对之间的相关性,将这些数据与 36 名健康对照受试者的静息态 BOLD 扫描进行比较。
个体和群体数据收敛到与个体和群体连接值成正比的可信赖估计值 1 / sqrt(n)。使用≤25 分钟的成像时间可显著提高可靠性,而额外时间的改善较小。功能连接“指纹”个体和群体在大约 15 分钟的成像时间开始发散,即使在 4 小时的成像时间内,可靠性也在增加。需要 25 分钟的 BOLD 成像时间,才能可靠地区分个体与健康对照组的个体连接。在 10 分钟和 15 分钟的成像时间内,区分受试者休息或观看卡通片的分类器准确率分别为 95%和 100%。
个体受试者和对照人群收敛到可靠的不同功能连接谱,这些谱受任务调节,并且可以通过足够的成像时间来区分。