University of Alabama at Birmingham
Birmingham, Alabama, 35233, United States
Location status: Recruiting
NCT Number: NCT06169852
Our goal is to better understand how DBS modifies local neuronal activity and to pioneer device technologies that can record local DBS-evoked potentials (DLEPs) to guide therapy. Our vision is for a patient's unique electrophysiology to guide both electrode targeting during surgery and programming in clinic, eventually as an integrated component of the implanted pulse generator. Our results will inform directional DBS for PD and serve as a model for translation to other diseases where knowledge on DBS circuit interactions is at an even earlier stage.
Interested in participating?
Request Info18 year–89 year
All sexes
Interventional
Not applicable
Birmingham, Alabama, 35233, United States
Location status: Recruiting
This study is an exploratory single center double-blind, randomized crossover study of unilateral STN versus GPi versus dual-target STN/GPi DBS for motor symptoms of PD. The dual-target approach will allow unique measures of connectivity between STN and GPi, and within-participant clinical contrasts of single target STN, single target GPi, and combined dual-target stimulation. Longitudinal encounters will measure changes in motor function, non-motor function, and patient reported outcomes versus pre-operative baseline in response to each of these stimulation conditions at 4-month intervals after surgery. These blinded encounters will be followed by an unblinded open-label encounter at 16 months utilizing optimized stimulation parameters. In addition to the clinical crossover design, we will retrospectively investigate the extent to which the spatial maps of local DBS-evoked potentials within and across brain targets predict stimulation sites chosen for clinical therapy at either brain target.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Participants will be randomly assigned either DBS stimulation in the STN alone, GPi alone, or a combination of stimulation in the STN and GPi.
Time frame: At standard of care DBS surgery (awake) and approximately one week later at standard of care battery placement (under general anesthesia).
The investigator will validate the biological origin of the signals using pairs of DBS pulses and neural refractoriness with an external stimulation/recording system at therapeutically relevant stimulus amplitudes (i.e., inside and outside the therapeutic window).
Time frame: At standard of care DBS surgery (awake) and approximately one week later at standard of care battery placement (under general anesthesia).
This investigators efforts will yield granular spatial maps of neural engagement across the two canonical targets for PD to guide targeting (awake or under anesthesia) and clinical programming.
Time frame: At standard of care DBS surgery (awake), approximately one week later at standard of care battery placement (under general anesthesia), at in a research clinical assessment at 16 months after DBS surgery.
The investigator will test whether spatial maps of DBS-evoked neural activity predict clinically effective locations for directional DBS.
Interested in participating?
Request InfoUniversity of Alabama at Birmingham
Other
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View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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