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AI-Based Personalized Exercise Prescription Through Mobile Health on Physical Activity and Health Outcomes in Older Adults: A Feasibility Study

18 août 2026 mis à jour par: The University of Tennessee, Knoxville

Artificial Intelligence-based Personalized Exercise Prescription Through Mobile Health on Physical Activity and Health Outcomes in Older Adults: A Feasibility Study

The purpose of this research is to investigate the feasibility, acceptability, appropriateness, and preliminary efficacy of a wearable and artificial intelligence-driven mobile application-based exercise prescription grounded in self-determination theory (SDT) and behavioral change techniques (BCTs) among older adults. As no data exists on the feasibility of AI-driven exercise programs grounded in SDT and multiple BCTs specifically for older adults, this will be a pioneering study to explore the feasibility of wearable and AI-driven exercise program protocols and the rates of acceptance and appropriateness of the exercise prescription intervention among older adults. In addition, this study will test the preliminary efficacy of the intervention on physical activity (PA), mental health, and quality of life. This study follows the National Institute of Health (NIH) stage model, and it represents stage 1b of the NIH stage model, which emphasizes the feasibility and actionable processes for delivering a new health intervention. Specifically, this study will: 1.Evaluate the research protocol feasibility of a wearable and AI-driven mobile application-based exercise prescription grounded in SDT and BCTs (of goal setting, self-monitoring, graded task, and demonstration) on older adults over 8 weeks 2. Evaluate the acceptability and appropriateness of a wearable, AI-driven, mobile application-based exercise prescription grounded in SDT and BCTs among older adults over 8 weeks. 3. Evaluate the preliminary impact of a wearable and AI-driven mobile application-based exercise prescription grounded in SDT and BCTs on older adult PA (steps per day and daily duration of light PA and Moderate-vigorous PA), sedentary time, sleep, mental health (depression and anxiety), and quality of life.

Aperçu de l'étude

Description détaillée

By the late 2070s, the global population aged 65 and older is projected to reach 2.2 billion, surpassing the number of children under age 18. In 2020, about 1 in 6 people in the United States (U.S) were age 65 and over, compared to less than 1 in 20 in 1920. The number of U.S. adults 65 years and over is projected to increase to 82 million by 2050, with the older group's share of the total population projected to rise to 23%. Ageing brings about an increased vulnerability to mental health challenges, and chronic conditions such as heart disease, cancer, diabetes, and Alzheimer's. Among adults ages 65 and older, more than 90% have at least one chronic condition and 88% have at least one multiple chronic condition. Chronic conditions contribute to over 75% of healthcare expenditures for individuals aged 65 and above in the U.S, amounting to over $1.5 trillion. An active lifestyle reduces the likelihood of developing chronic diseases and also enhances the overall health outcomes of the older adult population. Despite these benefits, a majority of older adults fail to meet the recommended U.S. physical activity guidelines (150 minutes of moderate intensity PA a week).

Mobile health (mHealth) technologies-such as smartphone applications (apps), wearables, and other mobile devices-have emerged as an increasingly adopted tool for promoting health among older adults. Several studies have demonstrated the potential of mHealth technologies to increase PA, reduce sedentary time, and improve health outcomes. However, findings have shown that the sustainability of mHealth-based exercise interventions remains uncertain. Recent reviews also emphasized the need for more personalized, adaptable mHealth solutions tailored to older adults' unique health conditions and physical ability to ensure better engagement and more durable behavior change. While recent studies show that personalized mHealth-based exercise programs outperform one-size-fits-all approaches, yet their impact is constrained by insufficient personalization data, low adherence, limited scalability, and inadequate integration of behavior-change techniques (BCTs).

Emerging evidence suggests that Artificial Intelligence (AI) can enhance PA. Integrating AI with mHealth tools-such as smartphone apps and wearable devices grounded in BCTs-offers a promising pathway to deliver an automated exercise program tailored to each person's PA goals, health status, and overall well-being, reaching many people at once with the potential of helping older adults adhere longer to an active lifestyle. Such an approach aligns with the growing emphasis on precision health and scalable interventions for aging populations. Despite this promise, the feasibility, acceptability, appropriateness and preliminary impact of an AI-driven, personalized exercise program delivered through mHealth and grounded in SDT and BCTs on older adults' PA and health outcomes remain unexplored.

The purpose of this research is to investigate the feasibility, acceptability, appropriateness, and preliminary efficacy of a wearable and artificial intelligence-driven mobile application-based exercise prescription grounded in self-determination theory (SDT) and behavioral change techniques (BCTs) among older

Type d'étude

Interventionnel

Inscription (Estimé)

20

Phase

  • N'est pas applicable

Contacts et emplacements

Cette section fournit les coordonnées de ceux qui mènent l'étude et des informations sur le lieu où cette étude est menée.

Coordonnées de l'étude

  • Nom: John Oginni, MS
  • Numéro de téléphone: 8659747971
  • E-mail: pael@utk.edu

Lieux d'étude

    • Tennessee
      • Knoxville, Tennessee, États-Unis, 37996-2700
        • Recrutement
        • Kinesiology, Recreation, and Sport Studies (865) 974-3340 krss@utk.edu
        • Contact:

Critères de participation

Les chercheurs recherchent des personnes qui correspondent à une certaine description, appelée critères d'éligibilité. Certains exemples de ces critères sont l'état de santé général d'une personne ou des traitements antérieurs.

Critère d'éligibilité

Âges éligibles pour étudier

  • Adulte plus âgé

Accepte les volontaires sains

Oui

La description

Inclusion Criteria:

  • Be aged 65 years or older.
  • Own a smartphone (Android or iOS) compatible with study applications.
  • Have reliable access to the internet or Wi-Fi.
  • Demonstrate basic digital literacy sufficient to operate a smartphone (e.g., ability to open applications, navigate simple interfaces, and follow on-screen instructions), with or without initial guidance from the research staff.
  • Be able to safely engage in physical activity, as determined by the Physical Activity Readiness Questionnaire for Everyone (PAR-Q+) or physician approval if indicated.
  • Report engaging in less than 150 minutes of moderate-to-vigorous physical activity (MVPA) per week.
  • Be able to communicate in English sufficiently to complete study procedures and assessments.

Exclusion Criteria:

  • Are younger than 65 years of age.
  • Do not own a compatible smartphone (Android or iOS) or do not have reliable internet/Wi-Fi access.
  • Are deemed unable to safely participate in physical activity based on the screening process (including PAR-Q+, STEADI, and research staff assessment), or do not obtain required physician clearance when indicated.
  • Currently meet or exceed 150 minutes of moderate-to-vigorous physical activity (MVPA) per week.
  • Are unable to communicate in English sufficiently to understand study procedures, provide informed consent, or complete study-related assessments.
  • Have any medical, physical, or cognitive condition that, in the judgment of the research team, would make participation unsafe or prevent completion of study procedures.

Plan d'étude

Cette section fournit des détails sur le plan d'étude, y compris la façon dont l'étude est conçue et ce que l'étude mesure.

Comment l'étude est-elle conçue ?

Détails de conception

  • Objectif principal: La prévention
  • Répartition: N / A
  • Modèle interventionnel: Affectation à un seul groupe
  • Masquage: Aucun (étiquette ouverte)

Armes et Interventions

Groupe de participants / Bras
Intervention / Traitement
Expérimental: Single-arm
All participants will be provided the researcher-developed sFitRx fitness application and a Fitbit Flex 2 tracker. sFitRx will provide participants with an established daily and weekly exercise prescription program based on each participant's: (1) daily step goals, (2) previous week's PA, as collected by the Fitbit Flex 2; and (3) current physical conditioning and well-being, as collected by sFitRx. The sFitRx will provide participants with a video demonstration of warm up exercise and all prescribed exercise types, including aerobics, resistance, balance, and flexibility exercises. These exercises follow a graded task BCT. For instance, a participant with a low baseline PA might be prescribed a beginner programs with a base (entry) level of 1.1. However, the sFitRx will progressively modify the individual exercise program based on the % of exercise completed, daily goal and other metrics.
All participants will be provided the researcher-developed sFitRx mHealth application. sFitRx will provide participants with an established daily and weekly exercise prescription program based on each participant's: (1) daily step goals, (2) previous week's PA, as collected by the Fitbit Flex 2; and (3) current physical conditioning and well-being, as collected by sFitRx. The sFitRx will provide participants with a video demonstration of warm up exercise and all prescribed exercise types, including aerobics, resistance, balance, and flexibility exercises. These exercises follow a graded task BCT. The exercise program delivered by the sFitRx app is grounded in self-determination theory, most especially in satisfying the basic psychological needs that drive intrinsic motivation.

Que mesure l'étude ?

Principaux critères de jugement

Mesure des résultats
Description de la mesure
Délai
Recruitment
Délai: Pre-intervention
Number screened/month per recruitment method
Pre-intervention
Enrollment
Délai: Pre-intervention
Number excluded by criterion; Number that decline participation; Reason for declining participation (open-ended); Average time from screening to enrollment (minutes/hours/days/month).
Pre-intervention
Participant Dropout Rate
Délai: Baseline (week 1) - Follow up (Week 10)
Number dropouts from AI-based exercise intervention; Reason for dropout (open-ended).
Baseline (week 1) - Follow up (Week 10)
Retention
Délai: Baseline (week 1) - Follow up (Week 10)
Number that completed the intervention program
Baseline (week 1) - Follow up (Week 10)
Adherence
Délai: Baseline (week 1) - Follow up (Week 10)
Percentage of the exercise program completed weekly (%)
Baseline (week 1) - Follow up (Week 10)
Intervention Feasibility, Acceptability, and Appropriateness
Délai: At follow up (week 10)
Intervention Feasibility (ease of delivery). will be assessed using the Weiner et al. (2017)1 validated questionnaire for the feasibility of intervention measure (FIM). This questionnaire contains 4-item questions on a 5-point Likert scale (completely disagree [1]-completely agree [5]), with a score range of 1-5. Intervention Acceptability (assessing participant satisfaction). will be obtained after the intervention (8 weeks) on a 1-5 Likert scale of 4-item questions, including "The exercise program delivered by the app meets my approval" using the Acceptability of Intervention Measure (AIM) by Weiner et al., 20171. Appropriateness (perceived fit for rural older adults). will be assessed using the Weiner et al., 20171 intervention appropriateness measure (IAM). The IAM is on 1-5 Likert scale of 4-item questions, including "The exercise program seems fitting", "The exercise program seems suitable". The AIM and IAM are robust, with Cronbach alphas of 0.89 and 0.87, respectively.
At follow up (week 10)

Mesures de résultats secondaires

Mesure des résultats
Description de la mesure
Délai
Fitbit Daily Step
Délai: Baseline (week 0) and Follow up (week 10)
Fitbit Flex 2 will be used to assess participants' daily steps
Baseline (week 0) and Follow up (week 10)
Physical Activity
Délai: Baseline (week 1) and Follow up (Week 10)
We will use the Physical Activity Scale for the Elderly to assess PA across leisure (6-item question), household (3-item question), and occupational domains (1-item question) over the past 7 days. Higher scores means more physical activity. (Low activity: <100; Moderate: 100-250; High: >250)
Baseline (week 1) and Follow up (Week 10)
Depression
Délai: Baseline (week 0) and Follow up (week 10)

Depression will be measured using Patient Health Questionnaire (PHQ-8), a 8-item symptom severity rating scale for depression (Kroenke et al., 2009). PHQ-8 is a validated diagnostic and severity measure of symptoms of depressive disorders.

Adults with scores of 0-4 are considered to have no or minimal symptoms of depression.

Score 5-9 are considered mild symptom Score 10-14 are considered moderate symptom Score 15-24 are considered severe symptom

Baseline (week 0) and Follow up (week 10)
Anxiety
Délai: Baseline (week 0) and Follow up (week 10)

Anxiety will be assessed using the Geriatric Anxiety Scale (GAS). GAS is a 10-item rating scale on a 4-Likert Scale (Not at all [0] to All of the time [3]). Item 1 through 10 are summed to provide a total score. The higher the score, the worse the anxiety outcome.

Score 1-6 are considered minimal symptom Score 7-9 are considered mild symptom Score 10 is considered moderate Score 12-30 are considered severe symptom

Baseline (week 0) and Follow up (week 10)
Older Adult Quality of Life
Délai: Baseline (week 0) and Follow up (week 10)

Quality of life (QoL) will be assessed using the Older Adult Quality of Life Scale.

Each of the 13 items is scored Strongly agree=1, Agree=2, Neither=3, Disagree=4, Strongly disagree=5. The items are summed for a total OPQOL-Brief score, then positive items are reverse coded, so that higher scores represented higher QoL.

Minimum: 13 (very poor quality of life) Maximum: 65 (excellent quality of life)

Baseline (week 0) and Follow up (week 10)

Collaborateurs et enquêteurs

C'est ici que vous trouverez les personnes et les organisations impliquées dans cette étude.

Les enquêteurs

  • Chercheur principal: Zan Gao, PhD, University Of Tennessee,knoxville

Dates d'enregistrement des études

Ces dates suivent la progression des dossiers d'étude et des soumissions de résultats sommaires à ClinicalTrials.gov. Les dossiers d'étude et les résultats rapportés sont examinés par la Bibliothèque nationale de médecine (NLM) pour s'assurer qu'ils répondent à des normes de contrôle de qualité spécifiques avant d'être publiés sur le site Web public.

Dates principales de l'étude

Début de l'étude (Estimé)

1 octobre 2026

Achèvement primaire (Estimé)

20 décembre 2026

Achèvement de l'étude (Estimé)

31 décembre 2026

Dates d'inscription aux études

Première soumission

3 août 2026

Première soumission répondant aux critères de contrôle qualité

11 août 2026

Première publication (Réel)

17 août 2026

Mises à jour des dossiers d'étude

Dernière mise à jour publiée (Réel)

20 août 2026

Dernière mise à jour soumise répondant aux critères de contrôle qualité

18 août 2026

Dernière vérification

1 août 2026

Plus d'information

Termes liés à cette étude

Informations sur les médicaments et les dispositifs, documents d'étude

Étudie un produit pharmaceutique réglementé par la FDA américaine

Non

Étudie un produit d'appareil réglementé par la FDA américaine

Non

Ces informations ont été extraites directement du site Web clinicaltrials.gov sans aucune modification. Si vous avez des demandes de modification, de suppression ou de mise à jour des détails de votre étude, veuillez contacter register@clinicaltrials.gov. Dès qu'un changement est mis en œuvre sur clinicaltrials.gov, il sera également mis à jour automatiquement sur notre site Web .

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