Clinical Trials Logo

Clinical Trial Details — Status: Completed

Administrative data

NCT number NCT03599726
Other study ID # eIRB 17805
Secondary ID
Status Completed
Phase Early Phase 1
First received
Last updated
Start date July 30, 2018
Est. completion date July 30, 2019

Study information

Verified date May 2020
Source Oregon Health and Science University
Contact n/a
Is FDA regulated No
Health authority
Study type Interventional

Clinical Trial Summary

Safe and independent mobility at home and in the community requires control of walking while accomplishing other functional tasks. A hallmark of healthy control of walking is automaticity, defined as the ability of the nervous system to successfully coordinate movement with minimal use of attention-demanding executive resources [1]. Recent evidence indicates that walking disorders are often characterized by a shift in the locomotor control strategy from healthy automaticity to compensatory executive control. This shift is potentially detrimental to walking performance as an executive control strategy is not optimized for locomotor control and it places excessive demands on a limited pool of cognitive reserve.

Here, the investigators hypothesize that walking automaticity, as measured by the prefrontal cortex activity while walking, will be improved by donepezil (a cholinesterase inhibitor).


Description:

A challenge to studying automaticity is that central nervous system circuitry for locomotion cannot be directly assessed in humans so shifts between automaticity and executive control have been inferred with a dual-task paradigm. If gait slows or deteriorates during a concurrent cognitive task, gait is deemed less automatic and using more cortical control. Recently, a more direct measure of automaticity has been studied with functional near infrared spectroscopy (fNIRS). fNIRS is used to measure changes in cortical oxygenated hemoglobin (HbO2) levels using light-tissue interaction properties of light within the near infrared range, similar to the way the HbO2 is detected with magnetic resonance imaging. Increased oxygenated hemoglobin are related to increased blood flow, which, in turn, reflects increased cortical activity.

A recent study shows higher than normal activation of the prefrontal cortex during usual walking in patients with PD, an indicator of increased cortical control and reduced automaticity. An enhanced understanding of the neurochemistry underlying gait automaticity in PD will have implications for pharmacologic management of gait impairment in PD. If reduced gait automaticity is due to depressed central dopamine, then more aggressive dopaminergic strategies may be in order. On the other hand, if reduced gait automaticity is due to depressed central cholinergic tone (as the investigators hypothesize), then cholinergic strategies will be more effective for optimizing gait in PD. Few studies have explored the positive effects of cholinergic augmentation on gait and falls but none have examined its direct effects on gait automaticity.

Aim I. Examine the effect of donepezil or levodopa on walking automaticity, as measured by prefrontal cortex activity while walking. This study will employ a double-blind, two-way crossover design in which 20 participants with idiopathic PD will be tested either after 14 days of placebo and their regular dose of levodopa or after 14 days of donepezil (5 mg/day oral) and their regular dose of levodopa. Levodopa doses are not determined or controlled by the investigators, as the recruited participants are already on levodopa specific to their own needs. The investigators will measure automaticity by measuring the activity of the prefrontal cortex while walking in single- and dual-task conditions with a wireless fNIRS system. The investigators predict that donepezil plus levodopa will decrease the prefrontal cortex activity, indicating more automaticity, during walking compared to placebo and levodopa.

Aim II. Relate walking automaticity with spatio-temporal measures of walking. In addition to walking automaticity measured with fNIRS while walking, subjects will be equipped with 3 inertial sensors to measure spatio-temporal features of gait, such as stride time, stride length and their variability. The investigators hypothesize that variability of gait will be related to level of prefrontal cortex activity. The investigators predict that variability of gait will not change with levodopa, reflecting prefrontal control of walking. In contrast, the investigators predict that donepezil will improve variability of gait, both with and without a concurrent, cognitive task.


Recruitment information / eligibility

Status Completed
Enrollment 20
Est. completion date July 30, 2019
Est. primary completion date May 30, 2019
Accepts healthy volunteers No
Gender All
Age group 50 Years to 90 Years
Eligibility Inclusion Criteria:

- Subjects must be able to stand unassisted for a minute and to walk continuously for 2 minutes without assistance or assistive devices.

- Diagnosis of idiopathic Parkinson's disease with sensitivity to levodopa and off-medication Hoehn & Yahr scores of III-IV.

- Subjects must be currently taking levodopa, and not already taking donepezil

- The subjects must be able to appreciate the purpose of the research, give informed consent to participate, be able to cooperate with the testing and be compliant with taking the experimental medications.

Exclusion Criteria:

- Other factors affecting gait (hip replacement, musculoskeletal disorder, uncorrected vision or vestibular problem), or an inability to stand or walk for 2 minutes at a time. Major depression, hallucinations or other psychiatric disturbances will be exclusions.

- Medical problems that might be worsened by donepezil are exclusion criteria and include tachycardia, bradycardia, arrhythmias, and peptic ulcer disease.

- Use of anticholinergics for parkinsonism, cholinesterase inhibitors for cognitive problems, bladder antispasmodics for urinary urgency or tricyclic antidepressants for depression are contraindications.

Study Design


Related Conditions & MeSH terms


Intervention

Drug:
Donepezil
Donepezil 5 mg per day for week 1-2 or 5-6
Placebo
Placebo 5 mg per day for week 1-2 or 5-6

Locations

Country Name City State
United States Oregon Health & Science University Portland Oregon

Sponsors (2)

Lead Sponsor Collaborator
Oregon Health and Science University Medical Research Foundation, Oregon

Country where clinical trial is conducted

United States, 

Outcome

Type Measure Description Time frame Safety issue
Primary Oxygenated Hemoglobin levels in the prefrontal cortex while walking (microM). Oxygenated hemoglobin changes during walking, compared to standing, will be quantified with a wireless functional near infrared spectroscopy (fNIRS). Subjects with PD will be tested while walking after 14 days of placebo and their regular dose of levodopa or after 14 days of donepezil (5 mg/day oral) and their regular dose of levodopa, with a two week wash out in between. 43 days
Secondary Stride time variability of gait (%). Subjects will be equipped with 3 inertial sensors during walking and turning tasks to measure spatio-temporal features of gait and turning features. The walking will be 2 min long in duration over a path of 9 feet. Stride time variability will be calculated as: mean(stride time)/SD (stride time)*100 of all the gait cycles detected for walking. 43 days
Secondary Gait speed (m/s) Average gait speed during the walking tasks. 43 days
Secondary Stride length (m) Average stride length calculated as the mean of all the detected gait cycles. 43 days
Secondary Turning velocity (degrees/s) Turning will be identified from the yaw angular velocity of the sensor on the waist. Turning velocity is calculated as the peak of the angular velocity during turning. 43 days
Secondary Turning duration (s) Turning will be identified from the yaw angular velocity of the sensor on the waist. Turning duration represents the duration of the turn while walking. 43 days
See also
  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