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Clinical Trial Details — Status: Recruiting

Administrative data

NCT number NCT05878873
Other study ID # 1664
Secondary ID
Status Recruiting
Phase N/A
First received
Last updated
Start date November 28, 2023
Est. completion date August 1, 2025

Study information

Verified date November 2023
Source Colorado State University
Contact Brett W Fling, Ph.D.
Phone (970) 491-3451
Email brett.fling@colostate.edu
Is FDA regulated No
Health authority
Study type Interventional

Clinical Trial Summary

Majority of people with multiple sclerosis experience difficulty with balance and mobility, leading to an increased risk of falls. The goal of this clinical trial is to learn about brain activity during walking adaptation in people with multiple sclerosis. Also, this clinical trial will test a form of nerve stimulation to see if it can improve walking performance. The main questions it aims to answer are: - What areas of the brain are the most active during walking adaptation? - Can nerve stimulation make walking adaptation more effective? Participants will walk on a treadmill where each leg will go a different speed which will create walking adaptation. At the same time, brain scans will occur. There will be two sessions of walking adaptation, one with nerve stimulation, and one without nerve stimulation. Researchers will compare people with multiple sclerosis to healthy young adults to see if there are differences in brain activity.


Description:

Most people with MS (PwMS) experience significant gait asymmetries between the two legs leading to an increased risk of falls and musculoskeletal injury. The objective of this study is to investigate the neural mechanisms of gait adaptation and the effects of transcutaneous electrical nerve stimulation (TENS) on adaptability during split-belt treadmill training in PwMS. Our hypothesis is that TENS will strengthen sensorimotor integration via amplified afferent signaling, thereby enhancing adaptation, and further improving gait symmetry chronically. Functional near-infrared spectroscopy (fNIRS) will be used during a split-belt treadmill training paradigm to assess cortical activation during gait adaptation. Additionally, the effect of split-belt treadmill training coupled with TENS on gait adaptability in PwMS will be tested with experimental and a sham TENS split-belt treadmill sessions. Cortical activation and the effect of TENS on gait adaptability will be compared between young neurotypical adults and PwMS to assess differences that can be attributed to multiple sclerosis.


Recruitment information / eligibility

Status Recruiting
Enrollment 40
Est. completion date August 1, 2025
Est. primary completion date December 1, 2024
Accepts healthy volunteers Accepts Healthy Volunteers
Gender All
Age group 18 Years to 86 Years
Eligibility Inclusion Criteria: - A diagnosis of relapsing remitting multiple sclerosis OR a neurotypical adult (ages 18-86) - Not experiencing an active relapse - Able to stand and walk without an assistive device - Able to walk for three tenths of a mile without stopping to rest Exclusion Criteria: - Unable to walk for three tenths of a mile without assistance - Musculoskeletal injury in past 6 months - Lower extremity surgery in past 6 months - Unable to abstain from medications that impair balance - Currently pregnant - History of traumatic brain injury - History of vestibular disease - History of any other balance impairment unrelated to multiple sclerosis

Study Design


Related Conditions & MeSH terms


Intervention

Behavioral:
Split-belt Treadmill
Split-belt treadmill training, where the speed of each leg is controlled independently has been shown to create gait adaptation where the coordination of each leg is altered, creating improved gait symmetry for people with walking impairments.
Device:
Transcutaneous Electrical Nerve Stimulation (TENS)
TENS is a form of nerve stimulation that stimulates at a frequency below motor threshold, targeting activation of sensory receptors, such as muscle spindles. Electrodes that create this stimulation will be placed on the skin superficial to the muscle bellies of the tibialis anterior and biceps femoris.

Locations

Country Name City State
United States The Sensorimotor Neuroimaging Laboratory Fort Collins Colorado

Sponsors (2)

Lead Sponsor Collaborator
Colorado State University National Multiple Sclerosis Society

Country where clinical trial is conducted

United States, 

Outcome

Type Measure Description Time frame Safety issue
Primary Change in Cortical Hemodynamics The changes of oxygenated hemoglobin in the cortex, a proxy for neuronal activity. Baseline session 1 (day 1), training session 1 (day 1), post-training session 1 (day 1), baseline session 2 (day 14), training session 2, and post-training session 2 (day 14)
Primary Change in Step Length Asymmetry The difference in the distance covered by each step, a common measure of gait asymmetry, measured using three-dimensional motion capture and force plates. Baseline session 1 (day 1), post-training session 1 (day 1), baseline session 2 (day 14), and post-training session 2 (day 14)
Primary Change in Phase Coordination Index The accuracy and consistency of step time compared to stride time, measured using three-dimensional motion capture and force plates. Baseline session 1 (day 1), post-training session 1 (day 1), baseline session 2 (day 14), and post-training session 2 (day 14)
Secondary Change in Limb Excursion Asymmetry The anterior-posterior distance traveled by the limb from toe-off to ipsilateral heel strike, measured using three-dimensional motion capture and force plates. Baseline session 1 (day 1), post-training session 1 (day 1), baseline session 2 (day 14), and post-training session 2 (day 14)
Secondary Change in Double Support Percent The percentage of time spent with both feet on the ground during walking, measured using three-dimensional motion capture and force plates. Baseline session 1 (day 1), post-training session 1 (day 1), baseline session 2 (day 14), and post-training session 2 (day 14)
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