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Acute Effects of Oculomotor Exercises on Posturography and Gait Analysis Parameters in Regular Exercisers (OMEX-PG)

2026年7月16日 更新者:Vedat Kavak、Ege University

The Acute Effects of Oculomotor Exercises on Static Posturography and Gait Analysis Parameters in Regular Exercisers

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.

調査の概要

研究の種類

介入

入学 (推定)

51

段階

  • 適用できない

連絡先と場所

このセクションには、調査を実施する担当者の連絡先の詳細と、この調査が実施されている場所に関する情報が記載されています。

研究場所

    • Bornova
      • Izmir、Bornova、トルコ(Türkiye)、35100
        • Ege University Faculty of Medicine, Department of Sports Medicine

参加基準

研究者は、適格基準と呼ばれる特定の説明に適合する人を探します。これらの基準のいくつかの例は、人の一般的な健康状態または以前の治療です。

適格基準

就学可能な年齢

  • 大人

健康ボランティアの受け入れ

はい

説明

Inclusion Criteria:

  • Healthy adults aged 18 to 50 years
  • Regular participation in exercise
  • Ability to walk independently without an assistive device
  • Ability to understand and follow the study procedures
  • Ability to complete the oculomotor exercise program, static posturography assessment, and gait analysis
  • Provision of written informed consent

Exclusion Criteria:

  • Acute musculoskeletal injury or pain that could affect balance, gait, or exercise performance
  • Neurological disease that could affect balance, gait, or oculomotor control
  • Vestibular disorder or current symptoms of dizziness or vertigo
  • Visual or ocular disorder that could affect visual fixation, eye movements, or balance assessment
  • Use of medication that could affect balance, coordination, alertness, or gait
  • Inability to walk independently
  • Inability to complete the oculomotor exercise intervention or assessment procedures
  • Any medical condition considered by the investigator to interfere with safe participation or the validity of the assessments

研究計画

このセクションでは、研究がどのように設計され、研究が何を測定しているかなど、研究計画の詳細を提供します。

研究はどのように設計されていますか?

デザインの詳細

  • 主な目的:他の
  • 割り当て:なし
  • 介入モデル:単一グループの割り当て
  • マスキング:なし(オープンラベル)

武器と介入

参加者グループ / アーム
介入・治療
実験的:Oculomotor Exercise Group
Participants in this single-arm group will receive a single-session oculomotor exercise program. Static posturography and gait analysis assessments will be performed before and after the intervention within the same testing session.
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.

この研究は何を測定していますか?

主要な結果の測定

結果測定
メジャーの説明
時間枠
Change From Baseline in Sway Area Under Four Sensory Conditions
時間枠:Baseline and 15 minutes after the intervention
Sway area was assessed during 30 seconds of quiet standing using the HUR SmartBalance BTG4 static posturography system. Measurements were obtained under four sensory conditions: 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. Condition-specific sway area values were expressed using the same unit of measure (mm²). The change from baseline to 15 minutes after the single-session oculomotor exercise intervention was evaluated separately for each sensory condition..
Baseline and 15 minutes after the intervention

二次結果の測定

結果測定
メジャーの説明
時間枠
Change From Baseline in Trace Length Under Four Sensory Conditions
時間枠:Baseline and 15 minutes after the intervention
Trace length was assessed during 30 seconds of quiet standing using the HUR SmartBalance BTG4 static posturography system. Measurements were obtained under eyes-open firm-surface, eyes-closed firm-surface, eyes-open foam-surface, and eyes-closed foam-surface conditions. Condition-specific trace length values were expressed using the same unit of measure (mm). The change from baseline to 15 minutes after the intervention was evaluated separately for each sensory condition.
Baseline and 15 minutes after the intervention
Change From Baseline in Single-Support Phase Percentage
時間枠:Baseline and 15 minutes after the intervention
Right and left single-support phase values were assessed during barefoot treadmill walking at 3 km/h using the DIERS Pedogait system. Single support was expressed as a percentage of the gait cycle. The change from baseline to 15 minutes after the intervention was evaluated separately for each side.
Baseline and 15 minutes after the intervention
Change From Baseline in Sway Velocity Under Four Sensory Conditions
時間枠:Baseline and 15 minutes after the intervention
Sway velocity was assessed during 30 seconds of quiet standing using the HUR SmartBalance BTG4 static posturography system. Measurements were obtained under eyes-open firm-surface, eyes-closed firm-surface, eyes-open foam-surface, and eyes-closed foam-surface conditions. Condition-specific sway velocity values were expressed using the same unit of measure (mm/s) . The change from baseline to 15 minutes after the intervention was evaluated separately for each sensory condition.
Baseline and 15 minutes after the intervention
Change From Baseline in Mediolateral Sway Under Four Sensory Conditions
時間枠:Baseline and 15 minutes after the intervention
Mediolateral sway was assessed during 30 seconds of quiet standing using the HUR SmartBalance BTG4 static posturography system. Measurements were obtained under eyes-open firm-surface, eyes-closed firm-surface, eyes-open foam-surface, and eyes-closed foam-surface conditions. Condition-specific mediolateral sway values were expressed using the same unit of measure (mm). The change from baseline to 15 minutes after the intervention was evaluated separately for each sensory condition.
Baseline and 15 minutes after the intervention
Change From Baseline in Anteroposterior Sway Under Four Sensory Conditions
時間枠:Baseline and 15 minutes after the intervention
Anteroposterior sway was assessed during 30 seconds of quiet standing using the HUR SmartBalance BTG4 static posturography system. Measurements were obtained under eyes-open firm-surface, eyes-closed firm-surface, eyes-open foam-surface, and eyes-closed foam-surface conditions. Condition-specific anteroposterior sway values were expressed using the same unit of measure (mm). The change from baseline to 15 minutes after the intervention was evaluated separately for each sensory condition.
Baseline and 15 minutes after the intervention
Change From Baseline in Romberg Quotient on Firm and Foam Surfaces
時間枠:Baseline and 15 minutes after the intervention
The Romberg quotient was calculated using static posturography measurements obtained during eyes-open and eyes-closed standing. Separate Romberg quotient values were calculated for the firm and foam surfaces using the HUR SmartBalance BTG4 system. Both values were expressed using the same unit of measure. The change from baseline to 15 minutes after the intervention was evaluated separately for each surface.
Baseline and 15 minutes after the intervention
Change From Baseline in Step Length
時間枠:Time Frame: Baseline and 15 minutes after the intervention
Right and left step length values were assessed during barefoot treadmill walking at 3 km/h using the DIERS Pedogait system. Right and left values represented the same outcome variable and were expressed using the same unit of measure. The change from baseline to 15 minutes after the intervention was evaluated separately for each side.
Time Frame: Baseline and 15 minutes after the intervention
Change From Baseline in Track Width
時間枠:Baseline and 15 minutes after the intervention
Track width was assessed during barefoot treadmill walking at 3 km/h using the DIERS Pedogait system. Track width represents the mediolateral distance between consecutive foot placements. The change from baseline to 15 minutes after the intervention was evaluated.
Baseline and 15 minutes after the intervention
Change From Baseline in Stride Length
時間枠:Baseline and 15 minutes after the intervention
Right and left stride length values were assessed during barefoot treadmill walking at 3 km/h using the DIERS Pedogait system. Right and left values represented the same outcome variable and were expressed using the same unit of measure. The change from baseline to 15 minutes after the intervention was evaluated separately for each side.
Baseline and 15 minutes after the intervention
Change From Baseline in Step Time
時間枠:Baseline and 15 minutes after the intervention
Right and left step time values were assessed during barefoot treadmill walking at 3 km/h using the DIERS Pedogait system. Right and left values represented the same outcome variable and were expressed using the same unit of measure. The change from baseline to 15 minutes after the intervention was evaluated separately for each side.
Baseline and 15 minutes after the intervention
Change From Baseline in Stride Time
時間枠:Baseline and 15 minutes after the intervention
Right and left stride time values were assessed during barefoot treadmill walking at 3 km/h using the DIERS Pedogait system. Right and left values represented the same outcome variable and were expressed using the same unit of measure. The change from baseline to 15 minutes after the intervention was evaluated separately for each side.
Baseline and 15 minutes after the intervention
Change From Baseline in Stance Phase Percentage
時間枠:Baseline and 15 minutes after the intervention
Right and left stance phase values were assessed during barefoot treadmill walking at 3 km/h using the DIERS Pedogait system. Stance phase was expressed as a percentage of the gait cycle. The change from baseline to 15 minutes after the intervention was evaluated separately for each side.
Baseline and 15 minutes after the intervention
Change From Baseline in Pre-Swing Phase Percentage
時間枠:Baseline and 15 minutes after the intervention
Right and left pre-swing phase percentages were assessed during barefoot treadmill walking at 3 km/h using the DIERS Pedogait system. Pre-swing was expressed as a percentage of the gait cycle. The change from baseline to 15 minutes after the intervention was evaluated separately for each side.
Baseline and 15 minutes after the intervention
Change From Baseline in Double-Support Phase Percentage
時間枠:Baseline and 15 minutes after the intervention
Right and left double-support phase percentages were assessed during barefoot treadmill walking at 3 km/h using the DIERS Pedogait system. Double support was expressed as a percentage of the gait cycle. The change from baseline to 15 minutes after the intervention was evaluated separately for each side.
Baseline and 15 minutes after the intervention
Change From Baseline in Swing Phase Percentage
時間枠:Baseline and 15 minutes after the intervention
Right and left swing phase values were assessed during barefoot treadmill walking at 3 km/h using the DIERS Pedogait system. Swing phase was expressed as a percentage of the gait cycle. The change from baseline to 15 minutes after the intervention was evaluated separately for each side.
Baseline and 15 minutes after the intervention
Change From Baseline in Load Response Phase Percentage
時間枠:Baseline and 15 minutes after the intervention
Right and left load response phase values were assessed during barefoot treadmill walking at 3 km/h using the DIERS Pedogait system. Load response was expressed as a percentage of the gait cycle. The change from baseline to 15 minutes after the intervention was evaluated separately for each side.
Baseline and 15 minutes after the intervention
Change From Baseline in Single-Support Phase Percentage
時間枠:Baseline and 15 minutes after the intervention
Right and left single-support phase percentages were assessed during barefoot treadmill walking at 3 km/h using the DIERS Pedogait system. Single support was expressed as a percentage of the gait cycle. The change from baseline to 15 minutes after the intervention was evaluated separately for each side.
Baseline and 15 minutes after the intervention

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研究記録日

これらの日付は、ClinicalTrials.gov への研究記録と要約結果の提出の進捗状況を追跡します。研究記録と報告された結果は、国立医学図書館 (NLM) によって審査され、公開 Web サイトに掲載される前に、特定の品質管理基準を満たしていることが確認されます。

主要日程の研究

研究開始 (実際)

2025年9月2日

一次修了 (推定)

2026年9月5日

研究の完了 (推定)

2026年11月11日

試験登録日

最初に提出

2026年7月12日

QC基準を満たした最初の提出物

2026年7月16日

最初の投稿 (実際)

2026年7月21日

学習記録の更新

投稿された最後の更新 (実際)

2026年7月21日

QC基準を満たした最後の更新が送信されました

2026年7月16日

最終確認日

2026年7月1日

詳しくは

本研究に関する用語

追加の関連 MeSH 用語

その他の研究ID番号

  • EUTF-OKULO-33058

個々の参加者データ (IPD) の計画

個々の参加者データ (IPD) を共有する予定はありますか?

いいえ

IPD プランの説明

Individual participant data will not be shared due to institutional and ethical restrictions and because the informed consent process did not include permission for public sharing of individual-level data.

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米国FDA規制医薬品の研究

いいえ

米国FDA規制機器製品の研究

いいえ

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