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Clinical Trials/NCT06442579
NCT06442579RecruitingNot Applicable

The Influence of Cortical Lateralization on Selective Motor Control of the Arm Swing During Independent Walking After Stroke.

University Hospital, Ghent2 sites in 1 country84 target enrollmentStarted: July 9, 2024Last updated:
Conditions
Interventions

Trial Snapshot

Phase
Not Applicable
Status
Recruiting
Enrollment
84
Locations
2
Primary Endpoint
Brain symmetry index (BSI)

Study Overview

Brief Summary

The upper limbs play an essential role for safe and efficient walking in healthy persons and persons post-stroke. Nevertheless, in current post-stroke gait rehabilitation (research) the upper limbs are barely targeted. To address this gap, my project aims to investigate the selective motor control of the upper limbs during walking and the contribution of the cortical activity to the arm swing in independent walkers after stroke.

To gain insight in the direct effects of stroke on the arm swing, the primary motor control of the arm swing will be evaluated by determining muscle synergies (i.e group of muscles working together as a task-specific functional unit). Additionally, the cortical activity (EEG-analysis) during walking of persons post-stroke will be compared to healthy controls and the relationship between stroke-induced changes in cortical activity and arm swing deviations will be assessed. Furthermore, I will evaluate whether improvements in cortical activity relate to improvements in primary motor control of the arm swing.

This innovative project will be the first to investigate the direct coupling between the cortex and the muscle synergies in persons post-stroke during independent walking to investigate the arm swing. These fundamental insights in the primary motor control of the arm swing and the contribution of the cortical activity will allow to develop targeted interventions aiming to improve arm swing and as such optimize post-stroke gait rehabilitation.

Research questions:

  1. How can muscle synergies explain arm swing alterations in independent walkers after stroke?
  2. How do stroke-induced changes in cortical activity relate to arm swing deviations in persons after stroke?
  3. Are changes in primary motor control of the upper limb during walking related to normalization of brain activity in independent walkers after stroke?

Study Design

Study Type
Interventional
Allocation
Non Randomized
Intervention Model
Parallel
Primary Purpose
Other
Masking
None

Eligibility Criteria

Ages
18 Years to 70 Years (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
Yes

Inclusion Criteria

  • •Inclusion Criteria:
  • •First-ever and cerebral stroke
  • •Able to walk at least 10 minutes (FAC ≥ 3)
  • •Presence of upper limb paresis (NIHSS item 5a/b > 0)

Exclusion Criteria

  • •Other neurological disorders
  • •Healthy controls
  • •Inclusion criteria:
  • •Older than 18 years
  • •Able to walk at least 10 minutes
  • •Exlusion criteria:
  • •Pregnancy

Arms & Interventions

Stroke

Experimental

Persons with a unilateral first ever stroke

Intervention: Walking on a treadmill (Other)

Control

Active Comparator

Age and gender matched healthy controls

Intervention: Walking on a treadmill (Other)

Outcomes

Primary Outcomes

Brain symmetry index (BSI)

Time Frame: Single point of assessment 3 months after inclusion (only for stroke survivors)

The amount of cortical lateralization during walking in stroke survivors after a follow-up period of three months. The score ranges from -1 to +1 with BSI = 0 reprenting perfect symmetry. Positive values represent higher power in the right hemishere compared to the left hemisphere, vice versa for negative values. For left side lesions, BSI was multiplied by -1.

Weight of muscle synergies

Time Frame: Single point of assessment 3 months after inclusion (only for stroke survivors)

The number or distribution of muscle weightings within a synergy during walking in stroke survivors after a follow-up period of three months. The distribution of muscle activation averages over one gait cycle measured by surface EMG of following muscles: * tibialis anterior, * gastrocnemius lateralis * soleus * vastus medialis * vastus lateralis * rectus femoris * biceps femoris * gluteus medius * erector spinae * latissimus dorsi * anterior deltoid * posterior deltoid * biceps brachii * triceps brachii

Number of muscle synergies

Time Frame: Single point of assessment 3 months after inclusion (only for stroke survivors)

The number of muscle synergies needed to account for 90% variance in muscle activity measured by surface EMG during walking in stroke survivors after a follow-up period of three months. Following muscles will be examined: * tibialis anterior, * gastrocnemius lateralis * soleus * vastus medialis * vastus lateralis * rectus femoris * biceps femoris * gluteus medius * erector spinae * latissimus dorsi * anterior deltoid * posterior deltoid * biceps brachii * triceps brachii

Number of muscle synergies

Time Frame: Single point of assessment at inclusion

The number of muscle synergies needed to account for 90% variance in muscle activity measured by surface EMG during walking in stroke survivors compared to healthy controls. Following muscles will be examined: * tibialis anterior, * gastrocnemius lateralis * soleus * vastus medialis * vastus lateralis * rectus femoris * biceps femoris * gluteus medius * erector spinae * latissimus dorsi * anterior deltoid * posterior deltoid * biceps brachii * triceps brachii

Weight of muscle synergies

Time Frame: Single point of assessment at inclusion

The number or distribution of muscle weightings within a synergy during walking in stroke survivors compared to healthy controls. The distribution of muscle activation averages over one gait cycle measured by surface EMG of following muscles: * tibialis anterior, * gastrocnemius lateralis * soleus * vastus medialis * vastus lateralis * rectus femoris * biceps femoris * gluteus medius * erector spinae * latissimus dorsi * anterior deltoid * posterior deltoid * biceps brachii * triceps brachii

Brain symmetry index (BSI)

Time Frame: Single point of assessment at inclusion

The amount of cortical lateralization during walking in stroke survivors compared to healthy controls. The score ranges from -1 to +1 with BSI = 0 reprenting perfect symmetry. Positive values represent higher power in the right hemishere compared to the left hemisphere, vice versa for negative values. For left side lesions, BSI was multiplied by -1.

Secondary Outcomes

  • Cortico-synergy coherence(Single point of assessment 3 months after inclusion (only for stroke survivors))
  • Upper limb kinematics(Single point of assessment 3 months after inclusion (only for stroke survivors))
  • Upper limb kinematics(Single point of assessment at inclusion)
  • Cortico-synergy coherence(Single point of assessment at inclusion)

Investigators

Sponsor Class
Other
Responsible Party
Sponsor

Study Sites (2)

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