Task-induced modulation of intrinsic functional connectivity networks in the behaving rat.
Jennifer LiSarah MartinMark D TricklebankAdam J SchwarzGary GilmourPublished in: The Journal of neuroscience : the official journal of the Society for Neuroscience (2015)
While resting-state functional magnetic resonance imaging can probe intrinsic network connectivity in both human and rodent brain, behavioral modulation of these connectivity patterns has not yet been demonstrated in the rodent due to the requirements of immobilization or anesthesia for MRI scanning. To enable the effects of behavioral tasks on functional connectivity to be measured in freely moving, awake rats, implanted carbon paste electrodes (CPEs) were used to monitor low-frequency fluctuations of tissue oxygenation. Rats were implanted with CPEs in two nodes of the default mode network (DMN) and two nodes in a lateral cortical network, revealing amperometric oxygen correlation patterns consistent with imaging studies. Using a block design study where rats alternated between sustained periods of instrumental response and unscheduled spontaneous behavior, task-induced decreases in functional connectivity were observed between the DMN node pair, but not in the distinct lateral cortical network, demonstrating network-specific modulation of functional connectivity.
Keyphrases
- resting state
- functional connectivity
- magnetic resonance imaging
- endothelial cells
- high glucose
- high resolution
- minimally invasive
- diabetic rats
- computed tomography
- contrast enhanced
- magnetic resonance
- lymph node
- hydrogen peroxide
- drug induced
- nitric oxide
- early stage
- network analysis
- radiation therapy
- multiple sclerosis
- brain injury
- mass spectrometry
- solid state
- carbon nanotubes