Effect of Respiratory Muscle Training in Interstitial Lung Patients

October 30, 2021 updated by: Onur Aydın, Bezmialem Vakif University

The Effect of Respiratory Muscle Training on Respiratory Parameters, Functional Capacity, Balance and Quality of Life in Interstitial Lung Patients

The aim of this study is to investigate the possible effects of inspiratory muscle training (IMT) on respiratory functions, functional capacity, balance and quality of life in patients with interstitial lung disease.

Study Overview

Detailed Description

Interstitial lung disease (ILD) include a heterogeneous group of progressive, acute and chronic diseases that diffusely affect the lung and characterized by varying degrees of inflammation and fibrosis in the lung parenchyma. The disease group usually shows a restrictive pattern and progresses with gas exchange abnormalities.

Progressive lung fibrosis was first described in 1935. Over the years, more than 150 lung disease characterized by acute or chronic pulmonary fibrosis of varying degrees with known or unknown cause have been defined and these diseases were named interstitial lung disease (ILD) in 1970s. Common symptoms in chronic interstitial lung diseases in general; dyspnea, dry cough, exercise intolerance and fatigue. All these features of interstitial lung diseases cause an increase in respiratory work and ventilatory deterioration in exercise. Apart from these general features, muscle weakness and related exercise intolerance may occur in some specific conditions.

The most important factor limiting exercise capacity in these patients is circulatory disorder, which cause exercise induced deterioration in gas exchange. Hypoxemia induced exercise intolerance causes a decrease in health-related quality of life, limitation of functional capacity and inactivity in daily life.

According to the American Thoracic Society (ATS) / European Respiratory Society (ERS) respiratory rehabilitation guideline, although the data are not conclusive, inspiratory muscle training is recommended as an adjunct to pulmonary rehabilitation, especially in patients with suspected or confirmed respiratory muscle weakness. The effect of well-structured and supervised inspiratory muscle training (IMT) on respiratory functions, diaphragm weakness, functional capacity, balance and quality of life in patients with interstitial lung disease is unknown.

It is important that this research will be carried out in this area and because it has a current subject.

Study Type

Interventional

Enrollment (Actual)

24

Phase

  • Not Applicable

Contacts and Locations

This section provides the contact details for those conducting the study, and information on where this study is being conducted.

Study Locations

    • Fatih/Istanbul
      • Istanbul, Fatih/Istanbul, Turkey, 34093
        • Bezmialem Vakif University

Participation Criteria

Researchers look for people who fit a certain description, called eligibility criteria. Some examples of these criteria are a person's general health condition or prior treatments.

Eligibility Criteria

Ages Eligible for Study

45 years to 75 years (Adult, Older Adult)

Accepts Healthy Volunteers

No

Genders Eligible for Study

All

Description

Inclusion Criteria:

  • Being diagnosed with interstitial lung disease (idiopathic pulmonary fibrosis, collagen vascular diseases, sarcoidosis, etc.),
  • Being clinically stable,
  • Not receiving supplemental oxygen therapy,
  • No pulmonary infection in the last 6 weeks,
  • Being ambulation.

Exclusion Criteria:

  • Presence of obstructive pulmonary disease such as chronic obstructive pulmonary disease (COPD), asthma, bronchiectasis
  • Presence of a history of effort-induced syncope
  • Presence of severe orthopedic or neurological disease
  • Presence of unstable serious cardiac disease

Study Plan

This section provides details of the study plan, including how the study is designed and what the study is measuring.

How is the study designed?

Design Details

  • Primary Purpose: Treatment
  • Allocation: Randomized
  • Interventional Model: Parallel Assignment
  • Masking: Double

Arms and Interventions

Participant Group / Arm
Intervention / Treatment
Active Comparator: Control Group

Patients in this group will receive conventional chest physiotherapy, two times a day, 5 days a week for 8 weeks. After the training given by the physiotherapist one exercise session will be supervised in a clinic per week, other sessions will be performed at home.

Maximal inspiratory mouth pressure measurements will be measured once a week to eliminate the effect of learning, however the training intensity will remain at the lowest intensity of the device for 8 weeks and will not be increased.

Programme will include diaphragmatic breathing exercise, pursed lip breathing exercise, thoracic expansion exercises, upper and lower extremity exercises, stretching the pectoral muscles, posture exercises, walking training and teaching respiratory control.
Experimental: Inspiratory Muscle Training (IMT) Group

In addition to conventional chest physiotherapy programme, patients in this group will also receive inspiratory muscle training at %30 of the maximal inspiratory mouth pressure (MIP) value of at least five days a week, for 15 minutes twice days, for 8 weeks at home. One exercise session will be supervised in a clinic per week, other sessions will be performed at home.

Maximal inspiratory mouth pressure measurements will be measured once a week. The training intensity will be increased weekly. At this rate it is 30% of the maximal inspiratory pressure value.

Programme will include diaphragmatic breathing exercise, pursed lip breathing exercise, thoracic expansion exercises, upper and lower extremity exercises, stretching the pectoral muscles, posture exercises, walking training and teaching respiratory control.
Threshold IMT device will be used for the training. Training intensity will set at 30% of the maximum inspiratory pressure with the threshold loading method.

What is the study measuring?

Primary Outcome Measures

Outcome Measure
Measure Description
Time Frame
Functional Capacity
Time Frame: Eight weeks
Change from baseline distance covered in six-minute walk test at 8 weeks
Eight weeks
Respiratory Function Test / Forced Vital Capacity (FVC)
Time Frame: Eight weeks
Change from baseline Forced Vital Capacity (FVC) in respiratory function test at 8 weeks. FVC will be evaluated using spirometry, according to the American Thoracic Society (ATS) and European Respiratory Society (ERS) criteria.
Eight weeks
Respiratory Function Test / Forced Expiratory Volume 1 second (FEV1)
Time Frame: Eight weeks
Change from baseline Forced Expiratory Volume 1 second (FEV1) in respiratory function test at 8 weeks. FEV1 will be evaluated using spirometry, according to the American Thoracic Society (ATS) and European Respiratory Society (ERS) criteria.
Eight weeks
Respiratory Function Test / Peak Expiratory Flow (PEF)
Time Frame: Eight weeks
Change from baseline Peak Expiratory Flow (PEF) in respiratory function test at 8 weeks. PEF will be evaluated using spirometry, according to the American Thoracic Society (ATS) and European Respiratory Society (ERS) criteria.
Eight weeks
Respiratory Function Test / Tiffeneau-Pinelli index (FEV1/FVC)
Time Frame: Eight weeks
Change from baseline Tiffeneau-Pinelli index (Forced Expiratory Volume 1 second (FEV1) / Forced Vital Capacity (FVC)) in respiratory function test at 8 weeks. FEV1 / FVC will be evaluated using spirometry, according to the American Thoracic Society (ATS) and European Respiratory Society (ERS) criteria.
Eight weeks
Respiratory Muscle Strength / Maximum Inspiratory Pressure (MIP)
Time Frame: Eight weeks
Change from baseline Maximum Inspiratory Pressure (MIP) at 8 weeks. Respiratory muscle strength will be measured according to the portable, electronic intraoral pressure measuring device (MicroRPM, Micro Medical UK), American Thoracic Society (ATS) and European Respiratory Society (ERS) criteria.
Eight weeks
Respiratory Muscle Strength / Maximum Expiratory Pressure (MEP)
Time Frame: Eight weeks
Change from baseline Maximum Expiratory Pressure (MEP) at 8 weeks. Respiratory muscle strength will be measured according to the portable, electronic intraoral pressure measuring device (MicroRPM, Micro Medical UK), American Thoracic Society (ATS) and European Respiratory Society (ERS) criteria.
Eight weeks
Balance / Postural Stability
Time Frame: Eight weeks
Change from baseline postural stability test score in Biodex Balance System at 8 weeks
Eight weeks
Balance / Limits of Stability
Time Frame: Eight weeks
Change from baseline limits of stability test score in Biodex Balance System SD at 8 weeks
Eight weeks
Balance / Sensory Integration and Balance Test Score
Time Frame: Eight weeks
Change from baseline sensory integration and balance test score in Biodex Balance System SD at 8 weeks
Eight weeks

Secondary Outcome Measures

Outcome Measure
Measure Description
Time Frame
Peripheral Muscle Strength
Time Frame: Eight weeks
Change from baseline M. Quadriceps strength at 8 weeks. It will be performed using an electronic hand dynamometer (Commander Muscle Tester; JTECH Medical, USA). M. Quadriceps muscle strength will be measured; it will evaluate the isometric muscle strength of that muscle by applying maximum resistance to the M. Quadriceps muscle with the electronic hand dynamometer.
Eight weeks
Pain Level
Time Frame: Eight weeks
Change from baseline Visual Analogue Scale (VAS) at 8 weeks.This scale consists of a horizontal, straight line. The line has a value of 0 at the beginning and a value of 10 at the end. A value of 0 means no pain, a value of 10 means unbearable pain. high values represent severe pain.
Eight weeks
Dyspnea
Time Frame: Eight weeks
Change from baseline Modified Medical Research Council Dyspnea Scale (mMRC) at 8 weeks. The Modified Medical Research Council Dyspnea Scale (mMRC) is a five-item scale based on various activities that cause breathlessness. The scale is rated from "0" to "4". High values indicate severe shortness of breath.
Eight weeks
Health-Related Quality of Life
Time Frame: Eight weeks
Change from baseline St. George's Respiratory Questionnaire (SGRQ) at 8 weeks. St. George's Respiratory Questionnaire consists of 76 questions that can be filled in about 15 minutes. It consists of 3 subgroups that evaluate respiratory symptoms (dyspnea, cough, sputum, wheezing, severity and frequency), activity status (physical functions that cause shortness of breath, housework, hobbies) and the impact of the disease (social activities and psychological state). The three parts of the test are scored separately and the total score is calculated. Scores range from 0-100. A score of zero indicates normal and a score of 100 indicates maximum disability.
Eight weeks

Collaborators and Investigators

This is where you will find people and organizations involved with this study.

Investigators

  • Principal Investigator: Onur AYDIN, PhD (c), Bezmialem Vakif University

Study record dates

These dates track the progress of study record and summary results submissions to ClinicalTrials.gov. Study records and reported results are reviewed by the National Library of Medicine (NLM) to make sure they meet specific quality control standards before being posted on the public website.

Study Major Dates

Study Start (Actual)

December 9, 2019

Primary Completion (Anticipated)

January 3, 2022

Study Completion (Anticipated)

January 31, 2022

Study Registration Dates

First Submitted

October 13, 2021

First Submitted That Met QC Criteria

October 30, 2021

First Posted (Actual)

November 3, 2021

Study Record Updates

Last Update Posted (Actual)

November 3, 2021

Last Update Submitted That Met QC Criteria

October 30, 2021

Last Verified

October 1, 2021

More Information

Terms related to this study

Plan for Individual participant data (IPD)

Plan to Share Individual Participant Data (IPD)?

NO

Drug and device information, study documents

Studies a U.S. FDA-regulated drug product

No

Studies a U.S. FDA-regulated device product

No

This information was retrieved directly from the website clinicaltrials.gov without any changes. If you have any requests to change, remove or update your study details, please contact register@clinicaltrials.gov. As soon as a change is implemented on clinicaltrials.gov, this will be updated automatically on our website as well.

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