このページは自動翻訳されたものであり、翻訳の正確性は保証されていません。を参照してください。 英語版 ソーステキスト用。

EFFECTIVENESS AND CLINICAL OPTIMIZATION OF A STANDARDIZED PHYSIOTHERAPY EXERCISE PROGRAM TARGETING BALANCE-POSTURE INTERACTION AND FALL RISK IN OSTEOPOROSIS: A RANDOMIZED CONTROLLED TRIAL (EFFECTIVENESS)

2026年8月10日 更新者:Tine Kovačič、Alma Mater Europaea - Slovenia

Effectiveness and Clinical Optimization of a Standardized Physiotherapy Exercise Program Targeting Balance-Posture Interaction and Fall Risk in Osteoporosis: A Randomized Controlled Trial

Osteoporosis is a systemic disorder of the skeletal system characterized by decreased Bone Mass and deterioration of the Microarchitecture, making it significantly easier to fracture the bones. In addition to the increased risk of fracture due to reduced Bone Strength, other common impairments in the balance, postural control and coordination of muscles may increase the risk of falling, as well. Recent research has increasingly begun to conceptually link fall risk to be a multi-factorial issue, due to the interaction of the biomechanical, neuromuscular and functional deficits that an older person most likely experiences in conjunction with the effects of ageing (Papalia et al., 2020). As such, physiotherapy techniques for treating persons at risk of falling have progressed away from providing isolated (and consequently limited) gains in strength or mobility, towards providing a more multi-faceted and thus comprehensive, integrated method of enhancing overall physical performance through exercise.

Physical activity interventions are being used to treat the condition of osteoporosis and have been identified as an essential component of preventing osteoporosis. Many recent statements have indicated that through the incorporation of organized physical activity into each individual's physical activity routine, as opposed to the previous recommendation for just resistance training and balance activities, the ability for individuals to experience a change in their physical abilities and thereby decrease their risk of falling is significantly improved (Brooke-Wavell et al., 2022; Bae et al., 2023). Among the many types of exercise-based interventions for treating osteoporosis, those that focus on improving balance have been shown to be effective in improving stability of the body postural position as well as decreasing the fear of falling (which can contribute to decreased mobility and increase the risk of falling) (Wei et al., 2023). A systematic review and analysis of the available literature indicates that targeted balance training is effective for improving both static and dynamic postural stability among older adults and persons with osteoporosis; moderate effects were found with regard to the risk of falling as a result of balance training (Zhou et al., 2018; Papalia et al., 2020).

Randomized controlled trials provide additional evidence of the positive impact of physiotherapy programs on their clinical use. For Osteoporotic women, having balance training interventions leads to the to the outcome of significantly reducing falls and enhancing stability (Mikó et al., 2017). On the same note, Multicomponent programs that combine resistance and balance training have resulted in increased muscle strength, physical performance and health-related quality of life for patients with vertebral fractures, along with reduced fear of falling. (Stanghelle et al., 2020). Newer developments in this area such as virtual reality exercise programs have provided additional improvements in Balance performance and increased patient engagement in rehabilitation (Yilmaz & Kösehasanoğulları, 2024).

調査の概要

詳細な説明

Many intervention studies focus on short-term outcomes, but there are Few studies that examine the Long-term effects of the interventions themselves. Also Fall risk is typically assessed using indirect measures (i.e., Balance tests, or self-reported fear of falling), while Pri few studies use objective measures of fall occurrence or comprehensive biomechanics. Finally, There are few Randomized Controlled Trials with Rigorous Design that Evaluate Standardized Physiotherapy protocols aimed at enhancing the integration of Postural alignment and Dynamic Balance control in Osteoporotic individuals.

The current literature on exercise has a major limitation in that a large degree of variation exists between the exercise protocols. For example, the exercise protocols vary greatly in terms of frequency, intensity, duration, progression criteria, and level of supervision. This large degree of heterogeneity limits the ability to reproduce the results and ultimately eliminates the opportunity to fully determine the optimal intervention parameters. Few studies have had a structured approach to examining the dose-response relationship between exercise and the associated clinical outcomes, which provides little guidance to clinicians regarding what the minimum and/or optimal dosage of exercise should be for clinically meaningful outcomes.

Most of the interventions regard balance as a separate domain from posture, rather than taking into account the dynamic interaction of balance and posture. The postural alignment directly affects the center of mass and biomechanical stability and will subsequently affect the balance strategies and risk of falling. However, to date, physiotherapy models have not integrated the balance-posture interaction. There is a significant void in the current literature regarding physiotherapy models for balancing and posturing.

A major gap exists in the implementation of physiotherapy protocols, with numerous shortcomings associated with multicomponent programs that are recommended; for example, interventions are often poorly defined, lacking the level of detail necessary for the exercise selection process, progression algorithms, and strategies for individualisation. This limitation has restricted the global scalability and clinical translation of exercise interventions and created barriers to implementation in real-world rehabilitation.

Outcome assessment in current studies has primarily employed clinical scales (balance tests, fear of falling questionnaires) and does not incorporate sufficient objective biomechanical outcome measures that can objectively quantify performance, such as centre of pressure displacement, postural sway, and movement kinematics. The absence of objective biomechanical outcomes limits the understanding of the underlying mechanical principles and restricts the ability to determine the efficacy of the interventions.

Few studies have assessed the significance of a change in an outcome measure in relation to the clinical meaning threshold of a minimal clinically important difference (MCID) to determine whether the change represents a clinically meaningful improvement in functional ability. Without this information, it is possible that a statistically significant outcome may not have any real-world value.

Although there is a high level of evidence regarding the efficacy of exercise in improving balance and fall risk among individuals with osteoporosis, a paucity exists in the following areas: (1) the standardisation and reproducibility of physiotherapy protocols, (2) physiotherapy interventions that target the interaction of balance and posture, (3) the optimal dose-response relationship of exercise, (4) objective biomechanical outcomes, and (5) clinical meaningfulness and implementation of physiotherapy programs. A rigorously developed randomised controlled trial to address these gaps would provide clinically useful information and have a substantial impact on physiotherapy treatment for osteoporosis.

Reduced BMD due to weakening bone matrix or skeleton leads to increased risk of fracture from weakness of normal bone matrix. Many cases of osteoporosis will also experience postural changes and symptoms like kyphosis, which can lead to problems with balance and fall risk are significant causes of reduced quality of life and decreased functional independence (Compston et al., 2019; Sözen et al., 2017). In fact, a recent WHO meta-analysis that utilized multiple systematic reviews focusing exclusively on individuals ages 65 and older demonstrated that regular engagement in physical activity may increase motor performance and decrease the risk for osteoporotic fractures (Pinheiro et al., 2020). According to a meta-analysis conducted by Hoffmann et al. (2023) with respect to the long-term use of structured exercise intervention, structured exercise interventions significantly reduce the likelihood of developing major osteoporotic fractures. In conclusion, while physical activity is widely recognized to provide substantial protective effects against osteoporosis, the exact type(s) and intensity of exercise to correctly address postural alignment and balance control for individuals with osteoporosis remains an area needing further study.

Physiotherapy provides non-pharmacological management of osteoporosis to alleviate pain, treat postural deformities, enhance balance, and decrease fall risk via the use of exercise-based therapeutic treatments (Giangregorio & Papaioannou, 2014). It has been recommended by various professional organizations that a comprehensive exercise program should consist of muscle strengthening, balance, flexibility, and aerobic activity. An extensive international collaboration based upon multiple meta-analyses conducted on more than 30 randomized control trials has concluded that there are numerous benefits associated with increased exercise and participation in a structured exercise intervention program for patients with osteopenic or osteoporotic conditions (Bae et al 2023), which necessitates the development of a standardised physiotherapy intervention. Despite these recommendations, the delivery of physiotherapy remains inconsistent primarily because there is no consensus on which exercises to include, the order and frequency of these exercises, and how to monitor patient progress throughout the length of the program. Therefore, inconsistencies in the delivery of exercise intervention programs result in inconsistent treatment outcomes and impediments in the transfer of current scientific evidence into clinically applicable, standardized physiotherapy protocols.

Clinical research shows that an exercise regimen that combines structured and unstructured activities is effective in improving functional capacity, posture and balance for those suffering from osteoporosis. Papalia et al. (2020) completed a meta-analysis of previously published studies involving individuals aged 65 years or older. The overall findings from this study were that combined exercise programs improved balance and decreased the number of falls among older adults. Wei et al. (2023) conducted a review of ten randomized controlled trials and found that balance training improves both static and dynamic balance, while at the same time decreases fears associated with falling for individuals with osteoporosis. In addition, Shojaa et al. (2020) reported that the incorporation of resistance and impact-based exercise programs are effective in increasing the bone mineral density for post-menopausal women. Papaioannou et al. (2020) found that postural kyphosis and muscle weakness were two of the main risk factors associated with falling. Sinaki (2018) further confirmed that strengthening of the para-spinal muscles is important for postural correction and fall prevention. In support of these findings, Carter et al. (2021) reported that individuals who are engaged in an integrated exercise program may have a 23%-40% reduction in their fall risk. While the majority of the available literature focus on isolated outcomes (balance or bone density), the evidence currently available on the overall impact of postural correction combined with balance control to reduce the risk of falling is currently very limited.

The idea of balance and posture interact with each other dynamically and in a reciprocal manner for both static activities and functional activities. Postural alignment determines how the segments of the body are arranged in 3D space and also determines where the centre of mass is located relative to a given base of support. The person uses the neuromuscular system to maintain or regain stability when there are internal and external forces acting upon the person. Impairments associated with osteoporosis, such as older age, thoracic kyphosis, weak trunk muscles, altered spinal alignment and decreased proprioception, can interfere with the balance-posture interaction and predispose the individual to compensatory movement strategies, decreased stability, and increased risk of falling. It is proposed therefore, that balance and posture not be treated as independent entities but rather that they are interdependent components of a person's ability to move functionally or prevent falls.

The present study will document/operationalize how the interaction of balance and posture will be measured with the simultaneous assessment of both postural alignment and balance performance. The evaluation of postural alignment will consist of the use of established clinical measures of spinal posture and balance performance will consist of validating the results of standardised static and dynamic tests of balance. The extent of interaction among these parameters will be measured by assessing how much improvement in one parameter is accompanied by improvement in another parameter or multiple balance and fall risk indicators. This approach will allow investigators to determine whether or not correcting posture alone or with balance training aids in the enhancement of balance control and therefore in the enhancement of functional stability.

By using correlational and multivariate statistical methods to analyse data on participant postural variables, balance- and balance-related variables, during the course of the study, investigators will be able to assess the extent of the relationships among these variables and how these relationships may change after participant intervention. The results of participant assessment following the intervention will provide investigators with a biomechanical framework for the interpretation of these data. Specifically, it is predicted that improved spinal alignment will position the centre of mass optimally, thus improving control strategies for posture and reducing instability during functional activities. A statistically significant improvement in both areas, along with a strong positive correlation between postural and balance measures, will further strengthen support for the theoretical framework that the integration of postural correction and balance training provides an effective clinical mechanism to reduce the risk of falling among individuals with osteoporosis.

研究の種類

介入

入学 (推定)

88

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:Bajram Shyti, PhD (C)
  • 電話番号:+38344599505
  • メール:bajramed@gmail.com

研究場所

      • Pristina、コソボ、10050
        • University Clinical Center of Kosovo

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
  • 高齢者

健康ボランティアの受け入れ

いいえ

説明

Inclusion Criteria:o Confirmed clinical diagnosis of osteoporosis, established through standard diagnostic procedures such as bone mineral density (BMD) assessment (e.g., T-score ≤ -2.5 at the lumbar spine, femoral neck, or total hip) or a physician's diagnosis based on clinical history and fracture risk assessment.

  • Aged 50 years or older.
  • Ability to understand and follow verbal and written instructions in Albanian.
  • Ability to ambulate independently, with or without an assistive device, for at least 10 meters.
  • Willingness to provide informed consent and commit to the full 12-week intervention period and follow-up assessments.

Exclusion Criteria:

  • o Presence of any neurological disorder (e.g., Parkinson's disease, stroke) that significantly affects balance or mobility.

    • Acute fractures or recent (within the last 6 months) osteoporotic fractures that would preclude participation in an exercise program.
    • Severe cardiovascular or respiratory conditions that would contraindicate moderate-intensity exercise.
    • Uncontrolled systemic diseases (diabetes, hypertension).
    • Cognitive impairment that would interfere with understanding or adhering to the study protocol.
    • Participation in another balance or strength training program within the last 3 months.
    • Any other medical condition or medication use that, in the opinion of the primary investigator, would compromise participant safety or the integrity of the study results.

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: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:Experimental Arm: Structured Physiotherapy Exercise Program
Structured 12-week physiotherapy exercise program targeting balance-posture interaction and fall risk in osteoporosis patients. Includes progressive multicomponent exercises (balance, posture correction, strength), with defined frequency, duration, progression criteria, and supervision.
12-week progressive multicomponent exercise program focusing on balance, posture correction, and strength training for osteoporosis patients.
アクティブコンパレータ:Standard Care
Standard care including education on osteoporosis and general exercises.
12-week progressive multicomponent exercise program focusing on balance, posture correction, and strength training for osteoporosis patients.

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 in Berg Balance Scale
時間枠:Baseline to 12 weeks post-intervention
Improvement in postural balance assessed by Berg Balance Scale (BBS) scores
Baseline to 12 weeks post-intervention

二次結果の測定

結果測定
メジャーの説明
時間枠
Change in thoracic kyphosis (inclinometer)
時間枠:Baseline to 12 weeks post-intervention.
Reduction in thoracic kyphosis and improvement in posture measured by clinical inclinometer.
Baseline to 12 weeks post-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。

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。

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9月1日

一次修了 (推定)

2027年3月30日

研究の完了 (推定)

2027年6月30日

試験登録日

最初に提出

2026年8月10日

QC基準を満たした最初の提出物

2026年8月10日

最初の投稿 (実際)

2026年8月13日

学習記録の更新

投稿された最後の更新 (実際)

2026年8月13日

QC基準を満たした最後の更新が送信されました

2026年8月10日

最終確認日

2026年8月1日

詳しくは

本研究に関する用語

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

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

いいえ

米国FDA規制機器製品の研究

いいえ

この情報は、Web サイト clinicaltrials.gov から変更なしで直接取得したものです。研究の詳細を変更、削除、または更新するリクエストがある場合は、register@clinicaltrials.gov。 までご連絡ください。 clinicaltrials.gov に変更が加えられるとすぐに、ウェブサイトでも自動的に更新されます。

購読する