The use of resting state fMRI (rs-fMRI) in translational research is a powerful tool to assess brain connectivity and investigate neuropathology in mouse models. However, despite encouraging initial results, the characterization of consistent and robust resting state networks in mice remains a methodological challenge. One key reason is that the quality of the measured MR signal is degraded by the presence of structural noise from non-neural sources. Notably, in the current pipeline of the Human Connectome Project, a novel approach has been introduced to clean rs-fMRI data, which involves automatic artifact component classification and data cleaning (FIX). FIX does not require any external recordings of physiology or the segmentation of CSF...
The existence of numerous interesting mouse models of neurological disorders enables the investigati...
Resting-state functional connectivity (FC), which measures the temporal correlation of spontaneous h...
Rodent models are developed to enhance understanding of the underlying biology of different brain di...
Preclinical applications of resting-state functional magnetic resonance imaging (rsfMRI) offer the p...
International audiencePreclinical applications of resting-state functional magnetic resonance imagin...
At present, resting state functional MRI (rsfMRI) is increasingly used in human neuropathological re...
Rodent models have opened the door to a better understanding of the neurobiology of brain disorders ...
Understanding the intrinsic circuit-level functional organization of the brain has benefited tremend...
Resting state fMRI (rsfMRI) has been widely employed to investigate the intrinsic organizational str...
Functional connectivity, which reflects the spatial and temporal organization of intrinsic activity ...
Functional neuroimaging (e.g., with fMRI) has been difficult to perform in mice, making it challengi...
Introduction: Functional connectivity (FC) studies have gained immense popularity in the evaluation ...
Animal whole-brain functional magnetic resonance imaging (fMRI) provides a non-invasive window into ...
Synchronous low-frequency oscillation in the resting human brain has been found to form networks of ...
Published in final edited form as: J Neural Eng. 2018 June 01; 15(3): 035003–. doi:10.1088/1741-255...
The existence of numerous interesting mouse models of neurological disorders enables the investigati...
Resting-state functional connectivity (FC), which measures the temporal correlation of spontaneous h...
Rodent models are developed to enhance understanding of the underlying biology of different brain di...
Preclinical applications of resting-state functional magnetic resonance imaging (rsfMRI) offer the p...
International audiencePreclinical applications of resting-state functional magnetic resonance imagin...
At present, resting state functional MRI (rsfMRI) is increasingly used in human neuropathological re...
Rodent models have opened the door to a better understanding of the neurobiology of brain disorders ...
Understanding the intrinsic circuit-level functional organization of the brain has benefited tremend...
Resting state fMRI (rsfMRI) has been widely employed to investigate the intrinsic organizational str...
Functional connectivity, which reflects the spatial and temporal organization of intrinsic activity ...
Functional neuroimaging (e.g., with fMRI) has been difficult to perform in mice, making it challengi...
Introduction: Functional connectivity (FC) studies have gained immense popularity in the evaluation ...
Animal whole-brain functional magnetic resonance imaging (fMRI) provides a non-invasive window into ...
Synchronous low-frequency oscillation in the resting human brain has been found to form networks of ...
Published in final edited form as: J Neural Eng. 2018 June 01; 15(3): 035003–. doi:10.1088/1741-255...
The existence of numerous interesting mouse models of neurological disorders enables the investigati...
Resting-state functional connectivity (FC), which measures the temporal correlation of spontaneous h...
Rodent models are developed to enhance understanding of the underlying biology of different brain di...