A state-space model for dynamic functional connectivity

被引:0
|
作者
Chakravarty, Sourish [1 ,5 ,6 ]
Threlkeld, Zachary D. [7 ]
Bodien, Yelena G. [6 ]
Edlow, Brian L. [6 ]
Brown, Emery N. [1 ,2 ,3 ,4 ,5 ]
机构
[1] MIT, Picower Inst Learning & Memory, 77 Massachusetts Ave, Cambridge, MA 02139 USA
[2] MIT, Dept Brain & Cognit Sci, 77 Massachusetts Ave, Cambridge, MA 02139 USA
[3] MIT, Inst Med Engn & Sci, 77 Massachusetts Ave, Cambridge, MA 02139 USA
[4] Harvard MIT Div Hlth Sci & Technol, Cambridge, MA USA
[5] Massachusetts Gen Hosp MGH, Dept Anesthesia Crit Care & Pain Med, Boston, MA 02139 USA
[6] MGH, Ctr Neurotechnol & Neurorecovery, Dept Neurol, Boston, MA 02114 USA
[7] Stanford Univ, Sch Med, Dept Neurol & Neurol Sci, Stanford, CA 94305 USA
关键词
D O I
10.1109/ieeeconf44664.2019.9048807
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Dynamic functional connectivity (DFC) analysis involves measuring correlated neural activity over time across multiple brain regions. Significant regional correlations among neural signals, such as those obtained from resting-state functional magnetic resonance imaging (fMRI), may represent neural circuits associated with rest. The conventional approach of estimating the correlation dynamics as a sequence of static correlations from sliding time-windows has statistical limitations. To address this issue, we propose a multivariate stochastic volatility model for estimating DFC inspired by recent work in econometrics research. This model assumes a state-space framework where the correlation dynamics of a multivariate normal observation sequence is governed by a positive-definite matrix-variate latent process. Using this statistical model within a sequential Bayesian estimation framework, we use blood oxygenation level dependent activity from multiple brain regions to estimate posterior distributions on the correlation trajectory. We demonstrate the utility of this DFC estimation framework by analyzing its performance on simulated data, and by estimating correlation dynamics in resting state fMRI data from a patient with a disorder of consciousness (DoC). Our work advances the state-of-the-art in DFC analysis and its principled use in DoC biomarker exploration.
引用
收藏
页码:240 / 244
页数:5
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