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Synthetic Vasomotion for Glymphatic Enhancement
Sponsor: Florida Institute for Human and Machine Cognition
Summary
The goal of this pilot clinical trial is to learn whether a week-long study combining controlled breathing procedures, intermittent exposure to a low-concentration carbon dioxide gas mixture, and noninvasive vagus nerve stimulation can be carried out safely and comfortably in adults with early-stage Parkinson's disease and age-matched healthy adults. The study will also explore how these procedures affect physiological signals related to breathing, cardiovascular and autonomic function, brain activity, and physiological processes thought to be related to fluid movement in and around the brain. The main questions the study aims to answer are: * Can participants safely and comfortably complete the study procedures and at-home monitoring? * Do physiological responses differ when intermittent hypercapnia is paired with active noninvasive vagus nerve stimulation compared with sham stimulation? * Are changes measured during the intervention visits related to overnight physiological measurements and changes in blood-based biomarkers? Researchers will compare active and sham noninvasive vagus nerve stimulation within the same participants. Both conditions will be paired with guided breathing and intermittent hypercapnia, in which participants briefly breathe a controlled gas mixture containing 5% carbon dioxide. Participants will: * Complete an intake and baseline visit and several nights of at-home physiological monitoring. * Complete two intervention visits in randomized order, one using active vagus nerve stimulation and one using sham stimulation. * Complete guided breathing and intermittent hypercapnia procedures while respiratory, cardiovascular, and other physiological signals are monitored. * Provide blood samples before and after intervention procedures for exploratory biomarker measurements. This is an exploratory pilot study. It is not intended to diagnose, treat, or prevent Parkinson's disease or any other medical condition.
Official title: Synthetic Vasomotion for Glymphatic Enhancement: A Pilot Study of Intermittent Hypercapniaand Noninvasive Vagus Nerve Stimulation With Continuous Parenchymal Resistance Monitoring inParkinson's Disease and Healthy Older Adults
Key Details
Gender
All
Age Range
60 Years - 80 Years
Study Type
INTERVENTIONAL
Enrollment
20
Start Date
2026-09
Completion Date
2026-11
Last Updated
2026-09-11
Healthy Volunteers
Yes
Conditions
Interventions
Active noninvasive vagus nerve stimulation
Active cervical noninvasive vagus nerve stimulation (nVNS) will be delivered using the gammaCore device. Participants will receive two consecutive 2-minute stimulation applications, one on each side of the neck. Stimulation intensity will be adjusted by the participant to a perceptible but comfortable level. The device delivers 1-ms pulses of 5-kHz sine waves at 25 Hz.
Sham noninvasive vagus nerve stimulation
Participants will undergo the same application procedure and duration as active nVNS using a sham device. The sham device is similar in appearance to the active device and produces vibration and audible feedback but does not deliver active electrical stimulation.
Active intermittent hypercapnia
Participants will intermittently breathe a controlled hypercapnic gas mixture containing approximately 5% carbon dioxide, 21% oxygen, and balance nitrogen through a noninvasive mask. The intervention consists of three approximately 10-minute hypercapnia blocks according to the study protocol, with respiratory and physiological monitoring throughout.
Sham intermittent hypercapnia
Participants will undergo the same mask-based breathing procedures used for the intermittent hypercapnia condition but will breathe room air rather than the hypercapnic gas mixture. This condition serves as the baseline/sham hypercapnia condition.
Guided breathing
Participants will complete approximately 10 minutes of guided breathing during study visits. Breathing will be standardized using verbal instruction from study personnel and/or visual or auditory pacing cues, which may include commercially available applications such as Elite HRV or study-specific pacing aids. The guided breathing procedure is intended to standardize breathing timing and pacing during physiological monitoring and intervention procedures and is not used for diagnosis, treatment, or medical decision-making.