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NCT Number: NCT06151626

A Novel Multisensory-Rhythmic Intervention in Geriatric Rehabilitation

Human performance takes shape from the dynamic interaction between person, environment, and task. Goal-directed action is a complex task, which requires the elderly to adapt their motor response according to the environment constraints and task requirements to accomplish the task goal. Among age-related problems, motor control deficits are often the main problems which restricts the frail elderly from maintaining independence for activities of daily living. Therefore, to preserve the quality of life, motor function of the elderly must be taken into consideration, including early detection of motor control problems and development of appropriate intervention strategy for persons with either healthy or pathological brain aging. Rhythmic skill training which is a new mode of dual tasks using rhythmic cueing as an external agent for facilitating an automatized motor task. During training, rhythmic skill training can provide multi-component of sensory stimulation, strengthen motor planning and optimize motor execution, therefore, it will improve the motor performance for the elderly or patients with mild cognitive impairment. In addition, the neuroplastic changes related to sensory processing, selective attention, or working memory demands through music rhythm training can facilitate the cognitive function for the elderly which is a current trend of geriatric rehabilitation. Moreover, the advantage of virtual reality is that it provides important information related to knowledge of result, which can induce better motor and cognitive training effects. Therefore, this research project will focus on assessing and intervening motor adaptation of upper extremity for the healthy elderly and patients with mild cognitive impairment. The first purpose of the project will analyze the difference in efficiency of responsive and predictive grasping motor adaptation among the healthy young adults, healthy elderly and patients with mild cognitive impairment through a test of perturbation-based of pinch-holding-up-activity, and use artificial intelligence for more accurate classification for the grasp pattern of healthy young adults, elderly and patients with mild cognitive impairment. The second one is to verify the effects of virtual-reality based rhythmic skill training system on the motor adaptation capability of upper limb and cognition for the elderly and patients with mild cognitive impairment.

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Key information

Age range

18 year–85 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

National Cheng-Kung University Hospital

Tainan, 704, Taiwan

Location status: Recruiting

Location contact

Hsiu-Yun Hsu, PhD

CONTACT

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Montreal Cognitive Assessment (MoCA) score of 23 or higher,
  • Clinical Dementia Rating (CDR) of 0 (for normal subjects) or 1 (for mild cognitive impairment subjects),
  • Healthy young participants aged between 20-39 years, healthy older adults and mild cognitive impairment participants aged between 65-85 years,
  • No skeletal, muscular, or neurological problems in the upper limbs in the past year, and
  • Sufficient visual acuity to complete the tasks.

Exclusion criteria

  • Any subjects with significant mental illness, central nervous system disorders, or medical history

Treatment and study plan

virtual-reality based rhythmic skill training

Other

Participants wear VR headsets and Oculus Touch controllers and undergo rhythm skill training for a total of 35 minutes.

rhythmic skill training with visual feedback

Other

The rhythm skill training activities in this group are the same as the virtual reality-based system. Participants received 35 minutes of rhythm skill training presented through a computer interface

strengthening group

Other

Participants receive an upper limb strengthening exercise program under the supervision of a therapist to ensure that the strengthening exercises are performed correctly. This includes: proprioceptive neuromuscular facilitation, resistance training, and tendon gliding exercises.

breathing and muscle relaxation exercises

Other

5 minutes of breathing and muscle relaxation exercises

Primary outcomes

  1. Change in responsive grip behavior

    Time frame: baseline, 8 weeks and 16 weeks

    To evaluate change in amplitude of pinch force development or adaptation to perturbation through a test of perturbation-based of pinch-holding-up-activity

Secondary outcomes

  1. Change in the results of Semmes-Weinstein monofilament test

    Time frame: baseline, 8 weeks and 16 weeks

    To evaluate change in touch-deep pressure threshold of hands using a set of 20 nylon monofilaments with Semmes-Weinstein monofilament test

  2. Change in the result of Purdue pegboard test

    Time frame: baseline, 8 weeks and 16 weeks

    To evaluate change in hand dexterity of dominant hand, non-dominant and both hands with a timed-test

  3. Change in the result of Minnesota manual dexterity test

    Time frame: baseline, 8 weeks and 16 weeks

    To evaluate change in gross motor coordination of upper limb of dominant hand and both hands with a timed placing and turning test

  4. Change in the result of Weber Two-Point Discrimination Test

    Time frame: baseline, 8 weeks and 16 weeks

    To evaluate the change in sensibility of the hands

  5. The change in the results of Mini-Mental Status Examination (MMSE)

    Time frame: baseline, 8 weeks and 16 weeks

    To evaluate the changes in cognitive function in an individual over time with The MMSE test

  6. The change in the results of Digit Span (DS) subtest from the Wechsler Adult Intelligence Scale-4th

    Time frame: baseline, 8 weeks and 16 weeks

    To evaluate the change in working memory, mental manipulation, cognitive flexibility and attention in an individual over time with Digit Span (DS) subtest

  7. The change in the results of Knox Cube Test-Revised (KCT-R)

    Time frame: baseline, 8 weeks and 16 weeks

    To evaluate the change in short-term memory and attention span in an individual over time with a performance test

  8. The change in the results of Conners continuous performance test-3

    Time frame: baseline, 8 weeks and 16 weeks

    To evaluate attention related problems in an individual over time with a performance test

Study contacts

Contact information is provided by the study sponsor or research team.

Hsiu-Yun Hsu, Ph.D

CONTACT

[email protected]

886-6-2353535 ext. 2669

Sponsors and collaborators

Lead sponsor

National Cheng-Kung University Hospital

Other

Registry information

Official study title

Linking From an Artificial-Intelligence Driven Assessment of Upper Extremity Motor Adaptation to a Novel Multisensory-Rhythmic Intervention in Geriatric Rehabilitation

Important dates

Study start
2023
Primary completion
2026
Study completion
2026
First posted
Nov 30, 2023
Registry last updated
Aug 21, 2025

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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