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Impact of Respiratory Muscle Training on Cognition in Older Adults
Sponsor: Acibadem University
Summary
The increase in chronic diseases associated with aging leads to various physical limitations in older adults, negatively impacting fall risk, hospitalization rates, and overall mortality. While Inspiratory Muscle Training (IMT) is frequently utilized in rehabilitation programs due to its low cost and ease of use to enhance respiratory muscle strength, balance, and functional capacity, its potential effects on cognitive function remain unexamined. The primary objective of this pilot randomized controlled trial is to investigate the effect of an 8-week Inspiratory Muscle Training (IMT) program on cognitive function in older adults. A secondary objective is to examine the relationship between cardiovascular risk factors and respiratory muscle strength in this population. Researchers hypothesize that an 8-week IMT intervention will have a significant effect on cognitive function in older adults compared to a control group. To test this hypothesis, a total of 24 eligible older adults will be randomly assigned to either perform daily breathing exercises using an external device for 8 weeks or maintain their routine daily activities. Both groups will be assessed at baseline and after the 8-week period to evaluate changes in cognitive, functional, and physical parameters.
Official title: The Effect of Respiratory Muscle Training on Cognitive Function in Older Adults: A Pilot Randomized Controlled Trial
Key Details
Gender
All
Age Range
60 Years - Any
Study Type
INTERVENTIONAL
Enrollment
24
Start Date
2026-07-24
Completion Date
2027-01-15
Last Updated
2026-07-28
Healthy Volunteers
Yes
Conditions
Interventions
Inspiratory Muscle Training
The intervention consists of an 8-week progressive Inspiratory Muscle Training (IMT) program utilizing a spring-loaded threshold device (POWERbreathe Medic Classic). The daily protocol requires participants to perform 30 breaths, twice a day. During the initial two weeks, training sessions are supervised, and the device resistance is set between 30% and 50% of the participant's baseline Maximal Inspiratory Pressure (MIP). For the remaining six weeks (weeks 3 to 8), participants perform the exercises unsupervised at home, accompanied by weekly compliance checks. A key distinguishing feature of this protocol is the progressive overload design: MIP is re-evaluated at the beginning of the 3rd, 5th, and 7th weeks, and the device's resistance is systematically adjusted to 50% of the newly measured MIP to ensure continuous physiological adaptation.
Locations (1)
Acıbadem University
Istanbul, İ̇stanbul, Turkey (Türkiye)