This is a randomized, single-blinded, triple crossover study focused on determining the feasibility of using transcranial magnetic stimulation (TMS) for treatment of Parkinson's disease related autonomic dysfunction and depression. Participants will undergo TMS to three brain regions: medial prefrontal cortex (mPFC) (experimental site), dorsolateral prefrontal cortex (DLPFC) (alternative experimental site), or primary sensory cortex (S1) (control site) in a triple crossover design. Participants will complete symptom questionnaires, neurologic examination and cognitive assessments, and orthostatic vital signs recording before and after each brain stimulation session.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
BASIC_SCIENCE
Masking
SINGLE
Enrollment
30
Transcranial magnetic stimulation (or TMS) is a non-invasive form of brain stimulation in which a magnetic pulse is applied directly to the scalp. This device is FDA approved for treatment of depression and other neuropsychiatric disorders, and is regularly used in neurologic and psychiatric research. iTBS is a particular TMS protocol which delivers the magnetic field in triplet bursts (three stimulations very close together at a frequency of 50 Hz very quickly). The triplet bursts are repeated at a rate of 5 Hz for 2 seconds (30 pulses), followed by 8 seconds rest, repeated 20 times for a total of 600 pulses. Each treatments lasts approximately 3 minutes.
University of North Carolina School of Medicine
Chapel Hill, North Carolina, United States
Change in Frontal Midline Theta EEG Power After Brain Stimulation
Degree of change of frontal midline theta (FMT) power on electroencephalography (EEG) after brain stimulation at each site (medial prefrontal cortex, dorsolateral prefrontal cortex, control site).
Time frame: At least 30 minutes before initial iTBS, and 30 minutes after each iTBS treatment
Correlation Between the Scales for Outcomes in Parkinson's Disease - Autonomic (SCOPA-AUT) Total Score and EEG
Degree of correlation between the Scales for Outcomes in Parkinson's disease - Autonomic (SCOPA-AUT) total score and frontal midline theta EEG power extracted from Baseline pre-stimulation initial visit EEG and SCOPA-AUT questionnaire. The SCOPA-AUT is a validated autonomic symptom survey for people with Parkinson's disease. It contains 6 domains (gastrointestinal, urinary, cardiovascular, thermoregulatory, pupillary, and sexual). The investigators will use the total composite score including all domains. The score range is 0-69, with a total of 23 questions. 0 means no symptoms, 69 is highest burden of symptoms. The FMT and SCOPA-AUT were assessed at baseline. FMT power and SCOPA-AUT were correlated using the Spearman Correlation Coefficient calculation. A positive correlation coefficient indicates a positive relationship between the assessments; higher FMT power correlates with higher symptom burden.
Time frame: At least 30 minutes before initial iTBS
Correlation Between the Orthostatic Hypotension Questionnaire (OHQ) and EEG
Degree of correlation between the Orthostatic Hypotension Questionnaire (OHQ) composite score and frontal midline theta EEG power extracted from Baseline pre-stimulation initial visit EEG and OHQ questionnaire. The OHQ consists of two sections: 1-orthostatic hypotension symptom assessment, which includes 6 questions with a score range of 0-66 (0 is no symptoms, 66 is most severe symptoms); and 2-the orthostatic hypotension daily activity scale, which rates interference of symptoms on activities of daily living. This part consists of four questions, and score range is 0-44 (0 is no interference, 44 is most severe interference). The composite OHQ score is the average score between these two subsections. FMT power and OHQ were correlated using the Spearman Correlation Coefficient calculation. A positive correlation coefficient indicates a positive relationship between the assessments; higher FMT power correlates with higher symptom burden.
Time frame: At least 30 minutes before initial iTBS
Correlation Between Degree of Orthostatic Hypotension and EEG
Degree of correlation between degree of orthostatic hypotension and frontal midline theta EEG power will be measured extracted from Baseline pre-stimulation visit EEG and blood pressure measures. Orthostatic vital signs will be measured at least 30 minutes before initial iTBS as follows: blood pressure will be measured after at least 3 minutes of rest in the supine position. Blood pressure will again be measured after 3 minutes of standing. Blood pressure reduction is expressed as the magnitude of reduction, thus a positive number reflects a greater reduction. Lack of blood pressure reduction was coded as '0'. A positive correlation coefficient indicates a positive relationship between the assessments; higher FMT power correlates with higher more severe orthostatic hypotension.
Time frame: At least 30 minutes before initial iTBS
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