Journal article
Space-time resolved inference-based neurophysiological process imaging: Application to resting-state alpha rhythm
Y Zhao, M Boley, A Pelentritou, PJ Karoly, DR Freestone, Y Liu, S Muthukumaraswamy, W Woods, D Liley, L Kuhlmann
Neuroimage | ACADEMIC PRESS INC ELSEVIER SCIENCE | Published : 2022
Abstract
Neural processes are complex and difficult to image. This paper presents a new space-time resolved brain imaging framework, called Neurophysiological Process Imaging (NPI), that identifies neurophysiological processes within cerebral cortex at the macroscopic scale. By fitting uncoupled neural mass models to each electromagnetic source time-series using a novel nonlinear inference method, population averaged membrane potentials and synaptic connection strengths are efficiently and accurately inferred and imaged across the whole cerebral cortex at a resolution afforded by source imaging. The efficiency of the framework enables return of the augmented source imaging results overnight using hig..
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Awarded by Australian Research Council
Funding Acknowledgements
We thank Naotsugu Tsuchiya and David Grayden for help-ful preliminary discussions about the work, along with MASSIVE (https:// www.massive.org.au) for computational resources. This work was supported by a grant from the Australian Research Council (DP200102600) and Monash University.