Acute Effects of Oculomotor Exercises on Posturography and Gait Analysis Parameters in Regular Exercisers
NCT07718282 · Status: ACTIVE_NOT_RECRUITING · Phase: NA · Type: INTERVENTIONAL · Enrollment: 51
Last updated 2026-07-21
Summary
This study aims to investigate the acute effects of a single-session oculomotor exercise program on static posturography and gait analysis parameters in healthy individuals who exercise regularly. Postural control and gait are complex sensorimotor functions that depend on the integration of visual, vestibular, somatosensory, and motor systems. Eye movements and gaze stabilization may contribute to postural orientation and locomotor control by influencing visual-vestibular integration, head-eye coordination, and sensorimotor adaptation. However, the immediate effects of short-duration oculomotor exercise programs on postural sway and gait-related parameters in regular exercisers have not been fully clarified.
This study is designed as a single-group, within-session, pre-post interventional study. Participants will undergo baseline assessments, complete a single session of oculomotor exercises, and then be reassessed after the intervention in the same testing session. The study population will consist of healthy adults who exercise regularly and meet the predefined eligibility criteria. Individuals with musculoskeletal injury, neurological or vestibular disorders, visual conditions that may affect balance or eye movement performance, or any condition limiting participation in the testing procedures will be excluded.
Static posturography will be performed using the HUR SmartBalance BTG4 system to evaluate postural sway under different sensory conditions. Measurements will be obtained during quiet standing with eyes open on a firm surface, eyes closed on a firm surface, eyes open on a foam surface, and eyes closed on a foam surface. The main posturography variables will include sway area, trace length, sway velocity, lateral sway, and anterior-posterior sway.
Gait analysis will be performed before and after the intervention using the DIERS Pedogait system. Spatiotemporal, phase-related, and center-of-pressure-based gait parameters will be recorded. These parameters may include step length, stride length, step time, stride time, track width, cadence, stance phase, swing phase, double support, pre-swing, and center-of-pressure-related gait variables.
The oculomotor exercise program will include three main components: extraocular eye movement exercises, vestibulo-ocular and cervico-ocular gaze stabilization exercises, and accommodation exercises. During extraocular eye movement exercises, participants will be asked to follow a visual target with eye movements while keeping the head stable. During gaze stabilization exercises, participants will maintain visual fixation on a target while performing controlled head movements and walking steps. During accommodation exercises, participants will alternate focus between a near target and a distant target. The exercises will be performed at different speeds to stimulate oculomotor control, gaze stabilization, and visual focusing mechanisms.
The primary outcome of the study is the change in sway area from baseline to the post-intervention assessment. Secondary outcomes include changes in other static posturography parameters and gait analysis variables. By evaluating both postural sway and gait-related outcomes, this study aims to provide preliminary evidence on whether a short oculomotor exercise session may produce immediate changes in postural control and walking characteristics in regular exercisers.
Conditions
- Postural Balance
- Gait Analysis
- Oculomotor System
- Exercise
Interventions
- BEHAVIORAL
-
Oculomotor Exercise Program
The intervention consists of a single-session oculomotor exercise program including extraocular eye movement exercises, vestibulo-ocular and cervico-ocular gaze stabilization exercises, and accommodation exercises. During extraocular eye movement exercises, participants will follow a visual target with eye movements while keeping the head stable. During gaze stabilization exercises, participants will maintain visual fixation on a target while performing controlled head movements and walking steps. During accommodation exercises, participants will alternate visual focus between a near target and a distant target. Exercises will be performed at different speeds within the same session.
Sponsors & Collaborators
-
Ege University
lead OTHER
Study Design
- Allocation
- NA
- Purpose
- OTHER
- Masking
- NONE
- Model
- SINGLE_GROUP
Eligibility
- Min Age
- 18 Years
- Max Age
- 50 Years
- Sex
- ALL
- Healthy Volunteers
- Yes
Timeline & Regulatory
- Start
- 2025-09-02
- Primary Completion
- 2026-09-05
- Completion
- 2026-11-11
Countries
- Turkey (Türkiye)
Study Locations
More Related Trials
-
Acute Effect of Local Vibration in Stroke Patients
NCT06610994 ·Status: RECRUITING ·Phase: NA
-
Effects of Backward Gait Training in Chronic Stroke Patients
NCT04903392 ·Status: UNKNOWN ·Phase: NA
-
The Effects of Neuroscience Based Proprioceptive Exercise Training
NCT06554483 ·Status: COMPLETED ·Phase: NA
-
Effect of Optokinetic Stimulation on Spatial Neglect and Postural Stability in Patients With Stroke
NCT07424105 ·Status: NOT_YET_RECRUITING ·Phase: NA
-
Effectiveness of a Neuromuscular Exercise Program and Visual Feedback in the Management of Body Position for Stroke Survivors
NCT05187559 ·Status: UNKNOWN ·Phase: NA
-
Electromyography During Common Exercises Used in Rehabilitation
NCT01400347 ·Status: WITHDRAWN
-
Gait and Falling Risk in Patient With Stroke
NCT07038421 ·Status: COMPLETED
-
The Effects of Game Based Exercise Training on Balance and Postural Control in Patients With Ataxia
NCT03607058 ·Status: COMPLETED ·Phase: NA
-
The Effect of Vestibulo-ocular Reflex Improving Exercise on Gait and Balance Among Post Stroke Sub Acute Patients
NCT04154969 ·Status: UNKNOWN ·Phase: NA
-
Lower Extremity Proprioception Sensory and Functionality in Hemiparetic
NCT05062187 ·Status: COMPLETED
-
Sensory Motor Training on Foot Weight Distribution in Patients With Foot Burn
NCT06632223 ·Status: ACTIVE_NOT_RECRUITING ·Phase: NA
-
Brain Gym Exercises on Risk of Fall, Balance and Quality of Life in Obese Subjects
NCT06587932 ·Status: COMPLETED ·Phase: NA
-
Effect of Russian Current Stimulation for Anterior Tibial Group on Postural Stability and Risk of Falling in Patients With Stroke
NCT06793865 ·Status: RECRUITING ·Phase: NA
-
Combination Effect of Proprioceptive Training and Transcranial Magnetic Stimulation on Selected Gait Kinematic Parameters in Stroke Patients
NCT07512492 ·Status: COMPLETED ·Phase: NA
-
The Effects of Exercise on Gait Characteristics, Balance, and Performance in Patients With Normal Pressure Hydrocephalus
NCT05679934 ·Status: UNKNOWN ·Phase: NA
-
Development and Evaluation of Balance and Coordination Training System
NCT04283084 ·Status: UNKNOWN ·Phase: NA
-
Spatio-Temporal Gait Parameters and Gait Symmetry In Diabetic Lower Extremity Burn Injury.
NCT03687840 ·Status: COMPLETED ·Phase: NA
-
A Vision-Based Characterization of Human Movement Scaling in Large-Amplitude Tasks
NCT07387887 ·Status: NOT_YET_RECRUITING ·Phase: NA
-
Effects of Sensory Training Application in Addition to Bobath Training
NCT04753931 ·Status: COMPLETED ·Phase: NA
-
Neck Integration and Eye Movement Training for Fall Risk in the Elderly
NCT07167979 ·Status: ACTIVE_NOT_RECRUITING ·Phase: NA
-
AB Gait Estim Neurophysiology
NCT06430164 ·Status: RECRUITING ·Phase: NA
-
Effect of Functional Core Stability Training or Cognitive Training on Balance and Postural Control in Chronic Ankle Instability
NCT07283276 ·Status: RECRUITING ·Phase: NA
-
Immediate Effect of Postural Muscle's Vibrations on Gait in Chronic Vascular Hemiplegia
NCT02096367 ·Status: COMPLETED ·Phase: NA
-
Robot-Assisted Gait Training vs Visual Feedback Balance Training in Stroke
NCT07471919 ·Status: RECRUITING ·Phase: NA
-
Effect of Supervised Versus Unsupervised Strength Training on Balance and Functional Performance Among Post Stroke Ambulatory Patients
NCT07010185 ·Status: COMPLETED ·Phase: NA