Plantar Pressure and Pain in Young Adults
Investigation of the Relationship Between Plantar Pressure Distribution and Pain Localization and Severity in Young Adults
調査の概要
詳細な説明
The musculoskeletal system is a complex and integrated structure in which movement emerges through the coordinated interaction of the central nervous system, musculoskeletal components, and joint complexes. This coordinated system is commonly conceptualized as the kinetic chain, which refers to the sequential and synchronized activation of body segments to allow distal segments to perform functional tasks with optimal timing, velocity, and alignment. The effectiveness of the kinetic chain is strongly influenced by biomechanical and neuromuscular factors, including optimal length-tension relationships, efficient neuromuscular control, and the balanced transfer of forces across interconnected segments.
Within this system, the foot represents the first point of contact with the ground and plays a crucial role in both static and dynamic conditions. Rather than acting as a passive structure, the foot functions as an active and adaptive component responsible for maintaining postural control, regulating balance, and modulating ground reaction forces. Plantar pressure distribution and Center of Pressure (CoP) parameters are widely accepted as objective measures reflecting the interaction between the foot and the ground. These parameters provide insight into load distribution patterns, stability, and movement strategies during both standing and gait.
The anatomical and functional complexity of the foot contributes to its role as a highly integrated biomechanical system. The presence of multiple bones, joints, ligaments, and muscles-many of which span more than one joint-enables the foot to adapt to varying mechanical demands. However, this complexity also makes the system susceptible to dysfunction. Any mechanical alteration within the foot, such as changes in plantar pressure distribution, can disrupt normal load transmission and consequently affect the entire kinetic chain.
Abnormal plantar pressure distribution is typically characterized by increased peak pressure values, altered forefoot-to-rearfoot load ratios, and increased variability in CoP movement. These changes may indicate inefficient load absorption and distribution during both static stance and dynamic activities such as walking. As a result, compensatory mechanisms may develop in proximal segments, including the knee, hip, and lumbar spine, in order to maintain functional movement and stability.
Previous studies have demonstrated that individuals experiencing musculoskeletal pain, particularly in the lower back, exhibit altered plantar pressure patterns during standing and walking compared to healthy individuals. These alterations are often interpreted as adaptive motor strategies aimed at minimizing discomfort. However, while such compensations may provide short term benefits, they may lead to long-term negative consequences, including disrupted muscle activation patterns, reduced neuromuscular control, and decreased efficiency in shock absorption. The cumulative effect of these alterations can result in impaired static and dynamic stability, further exacerbating abnormal loading patterns within the foot. This creates a cyclical process in which changes in plantar pressure distribution contribute to proximal dysfunction, which in turn reinforces abnormal movement patterns. Consequently, disturbances originating at the distal level may have significant implications for the entire kinetic chain. Understanding the relationship between plantar pressure distribution and pain characteristics is therefore of clinical importance. The use of pain mapping techniques in conjunction with plantar pressure analysis may provide valuable insights into how specific pressure patterns relate to localized pain regions. Such findings could support the development of targeted rehabilitation strategies aimed at optimizing load distribution, improving neuromuscular control, and reducing pain. In this context, investigating the association between plantar pressure distribution and pain localization and severity in young adults may contribute to a better understanding of biomechanical and neuromuscular factors underlying musculoskeletal pain, ultimately informing both preventive and therapeutic approaches.
研究の種類
入学 (推定)
連絡先と場所
研究連絡先
- 名前:Mehmet Burak Uyaroğlu, Asst Prof
- 電話番号:+905396545352
- メール:mburakuyaroglu@gmail.com
研究連絡先のバックアップ
- 名前:Yeliz Çırak
- メール:m.uyaroglu1@gmail.com
研究場所
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Istanbul、トルコ(Türkiye)
- Fenerbahce University
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コンタクト:
- Mehmet Burak Uyaroğlu, Asst. Prof
- 電話番号:+905396545352
- メール:mburakuyaroglu@gmail.com
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参加基準
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
サンプリング方法
調査対象母集団
説明
Inclusion Criteria:
- Young adults aged between 18 and 35 years
- Ability to stand and walk independently
- Adequate cognitive function to understand and follow the measurement procedures
- Willingness to participate voluntarily and provide written informed consent
- Absence of acute lower extremity pain or injury on the day of assessment
- Not using any assistive devices (e.g., orthoses, canes) during measurement
Exclusion Criteria:
- History of a foot deformity diagnosed during childhood
- History of musculoskeletal injury involving the lower extremity or lumbar region within the past 12 months
- Previous surgery involving the lower extremity or lumbar region
- Any condition that may affect general motor function, balance, circulation, sensory function, or pain perception
研究計画
研究はどのように設計されていますか?
デザインの詳細
コホートと介入
グループ/コホート |
介入・治療 |
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単一グループ
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Plantar pressure measurements will be performed using a pedobarography system.
Both static and dynamic assessments will be conducted using the device.In addition, age, height, and body weight will be recorded, and body mass index (BMI) will be calculated based on these measurements.
Participants' commonly used footwear type, pain localization, and pain intensity will also be assessed.
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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 |
|---|---|---|
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Plantar Pressure Measurement
時間枠:Baseline
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Plantar pressure measurements will be performed using a pedobarography system (GHF550 Foot Checker).
The device includes a 480 × 480 mm sensor platform with 2304 sensors and a sampling frequency of up to 60 Hz.
Assessment of static and dynamic plantar pressure parameters using a pedobarography system, including pressure distribution, load characteristics, contact area, and related biomechanical variables.
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Baseline
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Pain İntensity
時間枠:Baseline
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Pain intensity will be assessed using the Visual Analog Scale (VAS).
Participants will be asked to rate their current pain level on a 10-cm horizontal line, where 0 indicates "no pain" and 10 indicates "worst imaginable pain."
Pain localization will also be recorded based on participant self-report.
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Baseline
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協力者と研究者
スポンサー
捜査官
- スタディディレクター:Mehmet Burak Uyaroğlu、Fenerbahce University
- スタディチェア:Yeliz Çırak、Fenerbahce University
- 主任研究者:Gizem Demir Uzun、Fenerbahce University
- 主任研究者:Berfu Özdemir、Fenerbahce University
研究記録日
主要日程の研究
研究開始 (推定)
一次修了 (推定)
研究の完了 (推定)
試験登録日
最初に提出
QC基準を満たした最初の提出物
最初の投稿 (実際)
学習記録の更新
投稿された最後の更新 (実際)
QC基準を満たした最後の更新が送信されました
最終確認日
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
- Fenerbahce
医薬品およびデバイス情報、研究文書
米国FDA規制医薬品の研究
米国FDA規制機器製品の研究
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