Skip to main content
Clinical Trials/NCT07658495
NCT07658495Active, not recruitingNot Applicable

Comparative Effects of Coordinative Locomotor Training Using Sprinter Versus Skater Coordination Synergies on Balance and Coordination in Patients With Chronic Stroke: A Randomized Clinical Trial

University of Faisalabad1 site in 1 country22 target enrollmentStarted: February 1, 2026Last updated:

Trial Snapshot

Phase
Not Applicable
Status
Active, not recruiting
Enrollment
22
Locations
1

Study Overview

Brief Summary

This study compares two types of coordinative locomotor training - the sprinter coordination synergy and the skater coordination synergy - to improve balance and coordination in people with chronic stroke (more than six months after stroke). Twenty two participants will be randomly assigned to receive either sprinter-based or skater-based training for 30 minutes per session, three times per week, for four weeks. Balance will be measured using the Berg Balance Scale and Functional Reach Test. Coordination and functional mobility will be measured using the Timed Up and Go test. This study aims to determine which coordination synergy produces greater improvements, which may help physiotherapists choose more effective treatments for stroke survivors in Pakistan.

Detailed Description

Background: Chronic stroke survivors often experience persistent deficits in balance and coordination due to damage to motor control pathways in the brain. These deficits limit independence, increase fall risk, and reduce quality of life. Coordinative Locomotor Training (CLT) is a rehabilitation approach that integrates Proprioceptive Neuromuscular Facilitation (PNF) patterns with whole-body movement sequences. The sprinter coordination synergy mimics a runner's movement: on one side, the upper extremity moves into flexion, adduction, and external rotation while the ipsilateral lower extremity moves into extension, adduction, and internal rotation. The skater coordination synergy mimics a speed skater: on one side, the upper extremity moves into flexion, abduction, and external rotation while the lower extremity moves into extension, adduction, and external rotation. Both patterns activate the whole body with one leg functioning in a closed chain position.

Objectives: To compare the effects of sprinter coordination synergy versus skater coordination synergy on: (1) static and dynamic balance measured by Berg Balance Scale (BBS) and Functional Reach Test (FRT); (2) coordination and functional mobility measured by Timed Up and Go (TUG) test. Secondary objectives include determining which technique shows significantly greater improvement and providing evidence-based recommendations for physiotherapy practice in Pakistan.

Study Design: Randomized, parallel-group, double-blind clinical trial.

Setting: Outpatient rehabilitation department, Aziz Fatima Hospital and In Motion Clinic, Faisalabad, Punjab, Pakistan.

Sample Size: Twenty-two participants (11 per group). Sample size calculated based on effect sizes from previous similar studies (Kim, Lee and Jung, 2015), with 20% allowance for attrition (n=4).

Study Design

Study Type
Interventional
Allocation
Randomized
Intervention Model
Parallel
Primary Purpose
Treatment
Masking
Double (Participant, Outcomes Assessor)

Masking Description

Participants, Outcomes Assessor

Eligibility Criteria

Ages
30 Years to 60 Years (Adult)
Sex
All
Accepts Healthy Volunteers
Yes

Inclusion Criteria

  • Physician-diagnosed ischemic or hemorrhagic stroke
  • Age between 30 and 60 years, inclusive
  • Both male and female participants
  • Time since stroke onset: 6 months or more (chronic stage)
  • Able to stand or walk independently for at least 10 meters (with or without assistive device)
  • Able to follow verbal instructions (Mini-Mental State Examination score ≥ 24 or equivalent clinical judgment)
  • Able to provide informed consent

Exclusion Criteria

  • Visual impairment that interferes with movement coordination
  • Hearing deficit that prevents following instructions
  • Vestibular dysfunction affecting balance
  • Orthopedic disorders (fracture, joint deformity, severe arthritis, joint replacement) limiting movement
  • Other neurological disorders besides stroke (Parkinson's disease, multiple sclerosis, peripheral neuropathy)
  • Contraindication to exercise as advised by physician
  • Participation in another interventional rehabilitation study concurrently

Investigators

Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

Dr Aqsa Saman

Lecturer

University of Faisalabad

Study Sites (1)

Loading locations...

Similar Trials