Parkinson Disease Clinical Trial
Official title:
Using Time Varying Non-Invasive Neuromodulation to Improve Neurovascular Status in Parkinson's Disease
This study is a single-site, double-blinded, placebo-controlled, randomized clinical trial designed to elucidate mechanism(s) of action for symptomatic benefits observed in Parkinson's disease (PD) patients treating twice daily time-varying caloric vestibular stimulation treatment using a solid-state device. Study participants will self-administer treatments in the home setting over a period of 12 weeks. Changes in cerebral blood flow perfusion, cerebrovascular reactivity and functional connectivity between the pre-treatment baseline and the end of the treatment period will be monitored and will be compared to changes in validated standardized clinical measures of motor and non-motor symptoms in PD. The durability of effects will be evaluated at a post-treatment assessment conducted five weeks after treatment cessation.
A double-blinded, placebo-controlled randomized trial will explore the effects of
time-varying caloric vestibular stimulation (tvCVS) treatments on changes in biomarkers of
neurovascular status (i.e. cerebral blood flow perfusion and cerebrovascular reactivity) as
well as their relationship to clinical endpoints. Participants will be randomly allocated in
a 1:1 ratio using block randomization by the clinical site. Participants will be trained in
the clinic to self-administer device treatment and then will continue to self-administer the
~19-minute treatments twice daily for 12 weeks in the home. Individual stimulation sessions
will be spaced a minimum of 1 hour apart. Outcome measures will be administered at the
baseline, the end of the 12-week treatment period and at 5 weeks post-treatment. Study
participants will continue to take their approved Parkinson's disease (PD) medications
throughout the study and will maintain patterns of usage throughout.
Previous evidence for efficacy demonstrated therapeutic gains as an adjuvant for standard of
care treatment. Consistent with these observations, all outcome measures will be evaluated
when study participants are in the on-medication state and at the same time relative to the
last dose of anti-Parkinsonian medication across all assessments. Clinical measures will be
captured at the baseline, at the end of treatment period, and again five weeks after
cessation of treatment. Most of the planned clinical measures including the Movement Disorder
Society Unified Parkinson's Disease Rating Scale (MDS-UPDRS) parts I, II, and IV, the
Non-Motor Symptom Scale for PD (NMSS), the Montreal Cognitive Assessment (MoCA), the
Parkinson's Anxiety Scale, the Geriatric Depression Scale, the Epworth Sleepiness Scale, and
the Functional Assessment of Chronic Illness Therapy- Fatigue are suitable for virtual
collection. Case report forms (CRFs) for the patient reported outcomes will be provided to
study participants via standard mail. At the end of each virtual visit, participants will be
asked to complete these forms and bring them to the clinic the next day when they come for
their in-clinic visit. In the case where an in-clinic visit may not be possible, participants
will be asked to show completed forms to the coordinator via the telemedicine platform to
confirm completeness, and forms will be collected at the next in-person visit or can be
mailed in by the participant.
The full MDS- UPDRS part III and the Timed Up and Go will be administered in the clinic.
However, a modified MDS-UPDRS part III (excluding items related to rigidity or postural
instability) will also be administered through the telemedicine platform. This measure will
serve as backup for cases where participants may be unable to come into the clinic for
regularly scheduled assessment (e.g. due to COVID-19 containment measures).
;
Status | Clinical Trial | Phase | |
---|---|---|---|
Completed |
NCT05415774 -
Combined Deep Brain Stimulation in Parkinson's Disease
|
N/A | |
Recruiting |
NCT04691661 -
Safety, Tolerability, Pharmacokinetics and Efficacy Study of Radotinib in Parkinson's Disease
|
Phase 2 | |
Active, not recruiting |
NCT05754086 -
A Multidimensional Study on Articulation Deficits in Parkinsons Disease
|
||
Completed |
NCT04045925 -
Feasibility Study of the Taïso Practice in Parkinson's Disease
|
N/A | |
Recruiting |
NCT04194762 -
PARK-FIT. Treadmill vs Cycling in Parkinson´s Disease. Definition of the Most Effective Model in Gait Reeducation
|
N/A | |
Completed |
NCT02705755 -
TD-9855 Phase 2 in Neurogenic Orthostatic Hypotension (nOH)
|
Phase 2 | |
Terminated |
NCT03052712 -
Validation and Standardization of a Battery Evaluation of the Socio-emotional Functions in Various Neurological Pathologies
|
N/A | |
Recruiting |
NCT05830253 -
Free-living Monitoring of Parkinson's Disease Using Smart Objects
|
||
Recruiting |
NCT03272230 -
Assessment of Apathy in a Real-life Situation, With a Video and Sensors-based System
|
N/A | |
Recruiting |
NCT06139965 -
Validity and Reliability of the Turkish Version of the Comprehensive Coordination Scale in Parkinson's Patients
|
||
Completed |
NCT04580849 -
Telerehabilitation Using a Dance Intervention in People With Parkinson's Disease
|
N/A | |
Completed |
NCT03980418 -
Evaluation of a Semiconductor Camera for the DaTSCAN™ Exam
|
N/A | |
Completed |
NCT04477161 -
Effect of Ketone Esters in Parkinson's Disease
|
N/A | |
Completed |
NCT04942392 -
Digital Dance for People With Parkinson's Disease During the COVID-19 Pandemic
|
N/A | |
Terminated |
NCT03446833 -
LFP Beta aDBS Feasibility Study
|
N/A | |
Completed |
NCT03497884 -
Individualized Precise Localization of rTMS on Primary Motor Area
|
N/A | |
Completed |
NCT05538455 -
Investigating ProCare4Life Impact on Quality of Life of Elderly Subjects With Neurodegenerative Diseases
|
N/A | |
Recruiting |
NCT04997642 -
Parkinson's Disease and Movement Disorders Clinical Database
|
||
Completed |
NCT04117737 -
A Pilot Study of Virtual Reality and Antigravity Treadmill for Gait Improvement in Parkinson
|
N/A | |
Recruiting |
NCT03618901 -
Rock Steady Boxing vs. Sensory Attention Focused Exercise
|
N/A |