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Clinical Trial Summary

Deep brain stimulation (DBS) is an established treatment for advanced Parkinson's disease, medically refractory tremor, dystonia and obsessive compulsive disorder. Several hypotheses driven DBS trials are underway to study modulation of circuit dysfunction in other neurological and psychiatric disorders like epilepsy, Alzheimer's disease and depression. Recent reports suggest profound effects of DBS on the anatomy and function of downstream areas in the brain. For example electrical stimulation of limbic circuits is associated with increase in hippocampal neurogenesis. Similarly, stimulation of subthalamic nucleus (STN) or globus pallidus (GPi) results in activation of cortical motor circuits. Non-invasive imaging modalities are increasingly being employed in these investigations to better understand the effects of DBS on the structure and function of the brain. There have been important advances in MRI and we now have MRI which provides higher resolution and higher quality brain images. More specifically, the investigators propose to use MRI to perform functional magnetic resonance imaging (i.e. fMRI) to assess the effects of deep brain stimulation on brain function and to assess whether fMRI can be used as an adjunct to improve clinical practice in these patients.


Clinical Trial Description

This is a prospective cohort study that will enroll patients who are about to or have already undergone DBS electrode placement for a variety of disorders including, but not limited to Parkinson's disease, essential tremor, dystonia, depression, epilepsy, neuropathic pain and Alzheimer's disease. This eligible patient population is broad but unified by the fact that they will all undergo DBS to treat specific circuit dysfunctions. Pre-operative DBS patients and patients with externalized leads or internalized IPG may be included. We propose to study patients with externalized leads or internalized IPG programmed at either 'switched off' (IPG at 0 volt and off state) and 'switched on' settings We have already performed phantom safety testing for these experimental conditions and found it to be safe. We propose to perform the following scans: 1. Structural 1.5Tesla or 3Tesla MRI with 8 channel coil/or transmit-receive head coil - 3D FSPGR, standard FRFSE T2 scan, standard DTI scan (white matter tracts) and standard QSM (Quantitative Susceptibility Mapping) scan (Iron quantification). 2. Resting state and task based functional MRI with 8 channel coil Further, we propose to assess whether the aforementioned scans can be used as an adjunct to improve current DBS post-operative follow up. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT03153670
Study type Interventional
Source University Health Network, Toronto
Contact Alexandre Boutet, MD/MSc
Phone (647) 463-5513
Email alexandre.boutet@mail.utoronto.ca
Status Recruiting
Phase N/A
Start date June 1, 2017
Completion date December 1, 2030

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