Medical University of South Carolina
Charleston, South Carolina, 29403, United States
Location status: Recruiting
Location contact
Nathan DeTurk, MD, MBA
CONTACT
Nathan DeTurk, MD, MBA
PRINCIPAL_INVESTIGATOR
NCT Number: NCT06994728
The purpose of this research is to determine how deep brain stimulation (DBS) for Parkinson's disease affects attention and visuospatial function. Additionally, this study will evaluate how deficits in visual attention are associated with freezing of gait (FOG) in Parkinson's disease. There is currently no reliable treatment for FOG and little is understood about the underlying reason this occurs. Some recent research has found that stimulating the right side of the brain seems to improve FOG. The right side of the brain is also paramount for visual attention, which is why investigators are conducting this study.
Interested in participating?
Request Info18 year and older
All sexes
Interventional
Not applicable
Charleston, South Carolina, 29403, United States
Location status: Recruiting
Nathan DeTurk, MD, MBA
CONTACT
Nathan DeTurk, MD, MBA
PRINCIPAL_INVESTIGATOR
FOG is a common and frequently disabling symptom of PD, affecting more than half of all PwPD. It remains a complex and incompletely understood phenomenon, with no currently approved therapies. FOG is often exacerbated during dual-tasks where attention is divided to multiple tasks. A well known method of provoking FOG by PwPD and neurologists alike is to walk through doorways or through a crowded space, regions where spatial attention is necessary. Similarly, significant visuospatial attention deficits have been found in PwPD who freeze compared to those do not. Further evidence demonstrates that the STN is part of the circuit which modulates spatial attention, and that STN-DBS has a significant impact on visuospatial attention and is notably improved with right sided stimulation. Indeed, visuospatial attention is largely considered to be predominantly lateralized to the right hemisphere. Interestingly, one study showed that right STN-DBS stimulation affecting a volume of activated tissue (VAT) connected to the right sensorimotor cortex showed a significant association with reduction in FOG. The impact of STN-DBS on visuospatial attention and the degree to which this change in attention is associated with changes in FOG has not yet been studied, and may well explain part of the pathophysiology of FOG and how to treat PwPD who freeze. The present study will build on the aforementioned research by prospectively evaluating the impact of lateralized STN-DBS stimulation on visuospatial attention in PwPD, and correlating this with change in FOG.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
There will not be any change to baseline DBS stimulation settings, only each side will be sequentially turned off during cognitive and freezing of gait assessments.
There will not be any change to baseline DBS stimulation settings, only each side will be sequentially turned off during cognitive and freezing of gait assessments.
Time frame: 1 hour
Investigators hypothesize that right STN stimulation will have a significant association with reduction in freezing of gait, as measured by timed up and go task, compared to left STN stimulation and no stimulation.
Time frame: 1 hour
Investigators hypothesize that right STN stimulation induced improvement in attention will be associated with improvement in FOG.
Time frame: 30 minutes
Investigators hypothesize that right STN stimulation will have a significant association with change in attention, as measured by the flanker task, compared to left STN stimulation and no stimulation.
Time frame: 30 minutes
Investigators hypothesize that right STN stimulation will have a significant association with change in attention, as measured by the Go-No-Go task, compared to left STN stimulation and no stimulation
Contact information is provided by the study sponsor or research team.
Medical University of South Carolina
Other
Characterization of Subthalamic Nucleus Deep Brain Stimulation Laterality on Visuospatial Attention and Correlation to Freezing of Gait in Parkinson's Disease
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