University of Alabama at Birmingham
Birmingham, Alabama, 35294, United States
NCT Number: NCT01769690
The study design is a within-subject randomized cross-over design to evaluate the effects of DBS on sleep architecture, as measured by polysomnography, and on wake-time vigilance, as measured by a virtual reality street-crossing simulator.
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Notify Me19 year and older
All sexes
Interventional
Not applicable
Birmingham, Alabama, 35294, United States
In the proposed study, we will use a within-subject randomized clinical trial to measure objective changes in sleep architecture with DBS "on" and to compare effects of different DBS stimulation parameters on sleep architecture as measured by sleep studies. The study design will allow us to address our hypothesis that low frequency deep brain stimulation parameters are more effective than the conventional settings at improving sleep architecture and wake-time vigilance. If our hypothesis is correct, low frequency settings could be used during sleep and this would prolong stimulator battery life, therefore decreasing the frequency of required surgical battery changes for DBS. These data will be valuable in considering clinical treatment strategies and provide insight into the basic mechanisms of sleep dysfunction in PD. The study may also contribute to understanding how to achieve maximum clinical benefit from DBS while minimizing morbidity and cost.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
2 sleep study options Phase I: Participants will undergo 2 sleep studies, one with the stimulator "on" at the subject's stable, clinically effective settings and one with the stimulator "off." the order of the "off" and "on" nights will be randomized. Although blinding will be attempted, because of the significant motor effects produced with the "on" setting, participants may be able to tell when the DBS is "OFF." In the second phase, the first sleep study night will be with the stimulator "OFF". The order of the "HIGH", and "LOW" frequency nights will be randomized 1:1 and balanced across subjects and will occur on the 2nd and 3rd PSG nights.
Phase II Sleep study evaluation will include three nights of recording: 1) OFF with the stimulator off, 2) HIGH with the stimulator on at the participant's stable and clinically effective settings, and 3) LOW with the stimulator set at a low frequency that uses less energy
This virtual pedestrian environment is a measure of "real-world" street-crossing behavior. This simulation is composed of an elevated platform that simulates a curb at a street-side and 3 monitors (arranged in a semi-circle) on which the subject, while wearing headtracker equipment, views the virtual environment of bidirectional traffic. When the subject deems it is safe to cross the virtual street, he/she steps off the platform/curb, which activates crossing of the street by a cartoon representation of the participant. The speed of street crossing by the cartoon is determined by each individual subject's walking speed, which is measured prior to the test.
Other names: Wake time vigilance in PD patients
Time frame: 3 non-consecutive nights of sleep study within 4 weeks
Phase I subjects will undergo 2 sleep studies, one with the stimulator "on" at the subject's stable, clinically effective settings and one with the stimulator "off." Phase 2 subjects will spend the first night in the sleep lab with DBS turned off. The order of the high and low frequency nights (on the second and third study nights) will be randomized.
Time frame: 4 weeks
On the morning following the high and low frequency sleep study nights, subjects will evaluated with a virtual reality street-crossing simulator as a measurement of vigilance.
Time frame: 4 weeks
Following each sleep study night, subjects will be evaluated with the Unified Parkinson's Disease Rating Scale part III at their overnight DBS settings and 30 minutes after resuming their conventional, motor effective wake-time settings.
University of Alabama at Birmingham
Other
The Effect of Low Frequency STN DBS on Sleep and Vigilance in PD Patients
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