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Updated: Aug 9, 2025

Deep Brain Stimulation with Simultaneous fMRI in Rodents
Published on: February 15, 2014
A comparison of how deep brain stimulation in two targets with anti-compulsive efficacy modulates brain activity
Maik Derksen1, Birte Zuidinga2, Marijke van der Veer2
1The Netherlands Institute for Neuroscience, Royal Netherlands Academy of Arts and Sciences, Amsterdam, The Netherlands; Department of Psychiatry, Amsterdam University Medical Centers (location AMC), University of Amsterdam, Amsterdam, The Netherlands.
Abstract:
Deep brain stimulation (DBS) is an established neuromodulatory intervention against otherwise treatment-refractory obsessive-compulsive disorder (OCD). Several DBS targets, all of which are part of brain networks connecting basal ganglia and prefrontal cortex, alleviate OCD symptoms. Stimulation of these targets is thought to unfold its therapeutic effect by modulation of network activity through internal capsule (IC) connections. Research into DBS-induced network changes and the nature of IC-related effects of DBS in OCD is needed to further improve DBS. Here, we studied the effects of DBS at the ventral medial striatum (VMS) and IC on blood-oxygen level dependent (BOLD) responses in awake rats using functional magnetic resonance imaging (fMRI). BOLD-signal intensity was measured in five regions of interest (ROIs): medial and orbital prefrontal cortex, nucleus accumbens (NAc), IC area, and mediodorsal thalamus. In previous rodent studies, stimulation at both target locations resulted in a reduction of OCD-like behavior and activation of prefrontal cortical areas. Therefore, we hypothesized that stimulation at both targets would result in partially overlapping BOLD responses. Both differential and overlapping activity between VMS and IC stimulation was found. Stimulating the caudal part of the IC resulted in activation around the electrode, while stimulating the rostral part of the IC resulted in increased cross-correlations between the IC area, orbitofrontal cortex, and NAc. Stimulation of the dorsal part of the VMS resulted in increased activity in the IC area, suggesting this area is activated during both VMS and IC stimulation. This activation is also indicative of VMS-DBS impacting corticofugal fibers running through the medial caudate into the anterior IC, and both VMS and IC DBS might act on these fibers to induce OCD-reducing effects. These results show that rodent fMRI with simultaneous electrode stimulation is a promising approach to study the neural mechanisms of DBS. Comparing the effects of DBS in different target areas has the potential to improve our understanding of the neuromodulatory changes that take place across various networks and connections in the brain. Performing this research in animal disease models will lead to translational insights in the mechanisms underlying DBS, and can aid improvement and optimization of DBS in patient populations.
Insights
Deep brain stimulation (DBS) for obsessive-compulsive disorder (OCD) impacts brain networks. This study used fMRI in rats to show DBS at ventral medial striatum (VMS) and internal capsule (IC) targets activate overlapping brain regions, suggesting a shared mechanism for OCD symptom reduction.
Area of Science:
- Neuroscience
- Neurosurgery
- Psychiatry
Background:
- Deep brain stimulation (DBS) is a neuromodulatory treatment for refractory obsessive-compulsive disorder (OCD).
- DBS targets connect basal ganglia and prefrontal cortex networks, with effects potentially mediated by internal capsule (IC) pathways.
- Understanding DBS-induced network changes, particularly IC effects, is crucial for optimizing OCD treatment.
Purpose of the Study:
- To investigate the effects of DBS at ventral medial striatum (VMS) and IC targets on brain activity in a rodent model.
- To compare the blood-oxygen-level dependent (BOLD) responses between VMS and IC stimulation.
- To explore the neural mechanisms underlying DBS for OCD.
Main Methods:
- Functional magnetic resonance imaging (fMRI) was used to measure BOLD responses in awake rats during simultaneous VMS and IC electrode stimulation.
- Five regions of interest (ROIs) were analyzed: medial and orbital prefrontal cortex, nucleus accumbens (NAc), IC area, and mediodorsal thalamus.
- Cross-correlations and differential activity between stimulation sites were assessed.
Main Results:
- Both VMS and IC stimulation resulted in partially overlapping BOLD responses, supporting the hypothesis of shared network modulation.
- Caudal IC stimulation activated the immediate electrode vicinity; rostral IC stimulation increased cross-correlations between the IC, orbitofrontal cortex, and NAc.
- Dorsal VMS stimulation increased activity in the IC area, indicating VMS-DBS may modulate corticofugal fibers passing through the medial caudate into the anterior IC.
Conclusions:
- Rodent fMRI with simultaneous DBS is a viable method for studying DBS neural mechanisms.
- Comparing DBS effects across different targets reveals overlapping network modulations, potentially explaining OCD symptom reduction.
- These findings offer translational insights for improving DBS efficacy in OCD patients.
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