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Altered Resting-State Functional Connectivity in the Hand Motor Network in Glioma Patients
Arka N Mallela1,2, Kyung K Peck1,3, Nicole M Petrovich-Brennan1
11 Functional MRI Laboratory, Department of Radiology, Memorial Sloan-Kettering Cancer Center , New York, New York.
Abstract:
To examine the functional connectivity of the primary and supplementary motor areas (SMA) in glioma patients using resting-state functional MRI (rfMRI). To correlate rfMRI data with tumor characteristics and clinical information to characterize functional reorganization of resting-state networks (RSN) and the limitations of this method. This study was IRB approved and in compliance with Health Insurance Portability and Accountability Act. Informed consent was waived in this retrospective study. We analyzed rfMRI in 24 glioma patients and 12 age- and sex-matched controls. We compared global activation, interhemispheric connectivity, and functional connectivity in the hand motor RSNs using hemispheric voxel counts, pairwise Pearson correlation, and pairwise total spectral coherence. We explored the relationship between tumor grade, volume, location, and the patient's clinical status to functional connectivity. Global network activation and interhemispheric connectivity were reduced in gliomas (p < 0.05). Functional connectivity between the bilateral motor cortices and the SMA was reduced in gliomas (p < 0.01). High-grade gliomas had lower functional connectivity than low-grade gliomas (p < 0.05). Tumor volume and distance to ipsilateral motor cortex demonstrated no association with functional connectivity loss. Functional connectivity loss is associated with motor deficits in low-grade gliomas, but not in high-grade gliomas. Global reduction in resting-state connectivity in areas distal to tumor suggests that radiological tumor boundaries underestimate areas affected by glioma. Association between motor deficits and rfMRI suggests that rfMRI may accurately reflect functional changes in low-grade gliomas. Lack of association between rfMRI and clinical motor deficits implies decreased sensitivity of rfMRI in high-grade gliomas, possibly due to neurovascular uncoupling.
Insights
Resting-state fMRI reveals reduced motor network connectivity in glioma patients. This functional connectivity loss correlates with motor deficits in low-grade gliomas, but not high-grade ones.
Area of Science:
- Neuroscience
- Radiology
- Oncology
Background:
- Gliomas can alter brain function and network organization.
- Resting-state functional MRI (rfMRI) assesses brain connectivity.
- Understanding functional reorganization is crucial for glioma management.
Purpose of the Study:
- To examine functional connectivity of motor areas in glioma patients using rfMRI.
- To correlate rfMRI findings with tumor characteristics and clinical status.
- To characterize functional reorganization and assess rfMRI limitations in gliomas.
Main Methods:
- Retrospective analysis of rfMRI data from 24 glioma patients and 12 controls.
- Comparison of global activation, interhemispheric connectivity, and motor network connectivity.
- Exploration of relationships between tumor grade, volume, location, and clinical status with functional connectivity.
Main Results:
- Glioma patients showed reduced global and interhemispheric motor network connectivity.
- High-grade gliomas exhibited lower functional connectivity than low-grade gliomas.
- Functional connectivity loss correlated with motor deficits in low-grade gliomas but not high-grade gliomas.
Conclusions:
- rfMRI may underestimate affected brain areas in gliomas due to widespread connectivity reduction.
- rfMRI accurately reflects functional changes in low-grade gliomas, correlating with motor deficits.
- Decreased rfMRI sensitivity in high-grade gliomas may be due to neurovascular uncoupling.
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