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Effect of the Suboccipital Inhibition Technique on Balance Changes

2026年6月25日 更新者:Natália Maria Oliveira Campelo、Escola Superior de Tecnologia da Saúde do Porto

Postural balance is an essential capacity for functional autonomy and the performance of activities of daily living, relying on the continuous integration of visual, vestibular, and somatosensory information. Within this system, the upper cervical region plays a particularly important role, as it contributes to the orientation of the head in space and to the coordination between the head, eyes, and trunk. Due to their deep location between the occiput, atlas, and axis, the suboccipital muscles have a high proprioceptive significance and are frequently associated with cervical position control and sensorimotor regulation.

Changes in muscle tension, stiffness, or dysfunction in this region may alter the quality of afferent information transmitted to the central nervous system, potentially interfering with postural stability, head position awareness, body sway, and center of pressure control. In this context, the suboccipital inhibition technique is used in osteopathic practice as a manual intervention aimed at reducing myofascial tension, promoting relaxation of the upper cervical musculature, and potentially normalizing proprioceptive input.

調査の概要

状態

まだ募集していません

詳細な説明

Postural balance is a fundamental component of human motor function and is essential for maintaining functional autonomy and performing activities of daily living. It relies on the continuous and dynamic integration of sensory inputs from the visual, vestibular, and somatosensory systems, which are processed by the central nervous system to generate appropriate motor responses. These responses allow the body to maintain the center of mass within the base of support through constant postural adjustments.

Within this complex sensorimotor system, the upper cervical region plays a critical role in postural control. This region is responsible for the precise orientation of the head in space and contributes significantly to the coordination between the head, eyes, and trunk. The suboccipital muscles-namely the rectus capitis posterior major and minor, and the obliquus capitis superior and inferior-are deeply located between the occiput, atlas, and axis, and are characterized by a high density of muscle spindles. This anatomical feature suggests a strong proprioceptive function, making these muscles key contributors to cervical position sense and sensorimotor regulation.

In addition to their proprioceptive role, the suboccipital muscles are anatomically and functionally connected to the dura mater through the myodural bridge. This structure is thought to play a role in both mechanical and sensory integration, linking muscular activity with the central nervous system. Furthermore, the upper cervical region contains joint mechanoreceptors that provide additional afferent input, contributing to reflex mechanisms such as the cervico-ocular, cervico-collic, and tonic neck reflexes, which are essential for maintaining postural stability and gaze control.

Alterations in muscle tone, increased stiffness, or dysfunction in the suboccipital region may disrupt the quality of afferent information transmitted to the central nervous system. Such disturbances can impair proprioceptive accuracy and interfere with postural control mechanisms, potentially leading to increased body sway, altered head positioning, and changes in center of pressure (CoP) behavior. Since CoP displacement reflects the neuromuscular strategies used to maintain balance, it serves as an objective measure for assessing postural stability.

The suboccipital inhibition technique is commonly used in osteopathic practice as a manual intervention aimed at reducing myofascial tension in the upper cervical region. By promoting muscle relaxation and potentially restoring normal proprioceptive input, this technique may contribute to the optimization of postural control mechanisms. Previous studies have demonstrated its effects on cervical mobility, pain reduction, and flexibility; however, evidence regarding its immediate impact on postural balance remains limited and inconclusive.

Given the theoretical and neurophysiological rationale supporting the role of the suboccipital region in postural regulation, further investigation is warranted. The present study aims to evaluate the immediate effects of the suboccipital inhibition technique on postural balance in healthy young adults, using objective measures derived from center of pressure analysis, specifically Mean CoP and Mean Velocity.

研究の種類

介入

入学 (推定)

74

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。

研究連絡先

  • 名前:Natalia MO Campelo
  • 電話番号:+351222061000
  • メール:nmc@ess.ipp.pt

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 individuals (defined by the absence of the exclusion criteria listed below)
  • Aged between 18 and 35 years
  • Signed informed consent form

Exclusion Criteria:

  • Recent history of falls
  • History of spinal or foot surgery
  • Cervical fractures
  • Known postural instability
  • Suspected neurovascular compromise
  • Neurological deficits
  • Neurological or vestibular disorders
  • Use of medication or substances that may affect the nervous system
  • Osteopathy students from the 2nd, 3rd, and 4th academic years

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:処理
  • 割り当て:ランダム化
  • 介入モデル:並列代入
  • マスキング:ダブル

武器と介入

参加者グループ / アーム
介入・治療
実験的:Experimental Group
The intervention group received the suboccipital muscle inhibition technique, in which the investigator applied a sustained pressure to the patient's suboccipital muscle region for 4 minutes.

For the application of the suboccipital inhibition technique, the participant was positioned in the supine position on an osteopathic table, with the upper and lower limbs extended, the cervical spine in a neutral position, and the eyes closed. The therapist was seated at the head of the table, with the feet firmly supported on the floor.

The technique was performed by placing the 2nd, 3rd, and 4th fingers of both hands in the region between the occiput and the atlas, at the level of the suboccipital musculature, with the metacarpophalangeal joints flexed at approximately 90°. After correct positioning, a gentle and sustained pressure was applied, combined with a slight cephalic traction, in order to promote relaxation of the suboccipital muscles. The technique was applied for 4 minutes.

プラセボコンパレーター:Control Group
In the control group, a clavicular palpation technique was performed, without any therapeutic intent.

For the placebo technique, the participant remained in the supine position on the osteopathic table, with the upper and lower limbs extended, the cervical spine in a neutral position, and the eyes closed. The therapist placed the hands in the clavicular region, performing only passive manual contact, without applying pressure, mobilisation, or any therapeutic intent.

This technique was used to reproduce the manual contact present in the intervention, without producing specific therapeutic effects. The application also lasted 4 minutes.

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
Mean Center of Pressure (Mean CoP) Displacement Assessed Using a Force Platform
時間枠:Immediately after the intervention
Mean center of pressure displacement will be assessed using a force platform during [static balance task]. Lower COP displacement indicates better postural stability.assessment period.
Immediately after the intervention
Mean Standing Velocity Assessed During Quiet Standing
時間枠:Immediately after the intervention
Mean velocity during quiet standing will be assessed using [measurement device/system name]. Participants will stand in an upright position while postural sway is recorded. Mean velocity will be calculated as the average velocity of the center of pressure (COP) displacement over the assessment period and expressed in [units, e.g., mm/s]. Lower values indicate reduced postural sway and better postural stability.
Immediately after the intervention

協力者と研究者

ここでは、この調査に関係する人々や組織を見つけることができます。

捜査官

  • 主任研究者:Natalia MO Campelo、Escola Superior de Saúde do Porto

出版物と役立つリンク

研究に関する情報を入力する責任者は、自発的にこれらの出版物を提供します。これらは、研究に関連するあらゆるものに関するものである可能性があります。

一般刊行物

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 (推定)

2026年7月1日

一次修了 (推定)

2026年9月1日

研究の完了 (推定)

2026年9月1日

試験登録日

最初に提出

2026年6月22日

QC基準を満たした最初の提出物

2026年6月22日

最初の投稿 (実際)

2026年6月26日

学習記録の更新

投稿された最後の更新 (実際)

2026年6月29日

QC基準を満たした最後の更新が送信されました

2026年6月25日

最終確認日

2026年6月1日

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本研究に関する用語

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いいえ

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