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Effect of Different Types of Aerobic Training on Peak VO2 and Ejection Fraction for Diastolic Heart Failure Patients; a Comparative Randomized Control Trial

Effect of Different Types of Aerobic Training on Peak VO2 and Ejection Fraction for Diastolic Heart Failure Patients; a Comparative Randomized Control Trial

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05637125
Enrollment
40
Registered
2022-12-05
Start date
2021-08-01
Completion date
2022-01-01
Last updated
2022-12-05

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Effect of Different Types of Aerobic Training on Diastolic Heart Failure Patients

Keywords

Diastolic heart failure, ejection fraction, aerobic exercise, peak VO2

Brief summary

Background: Heart failure is described by a lack of confirmed efficient therapies and exercise intolerance. Physical activity is related to a lower risk of adverse cardiovascular consequences, involving heart failure. The purpose of the study: determine the effect of different types of aerobic training on peak VO2 and ejection fraction in diastolic heart failure patients. Subject and methods: Forty eligible male patients with diastolic heart failure, aged between 50 - 60 years old, participated in this study. They were selected from an outpatient clinic of general Zagazig hospital and were assigned into 2 equal groups in numbers. The first group (A) received aerobic exercise for the upper limb in form of arm ergometer exercises, while the second group (B) received aerobic exercise for the lower limb in form of cycling. Training duration for both groups was 3 sessions/week for 12 weeks. Peak VO2, and ejection fraction of both groups were measured and compared pre and post-treatment. Results: There was no significant difference in the ejection fraction between groups post-treatment. There was a significant increase in the peak VO2 of group B compared with that of group A post-treatment. Conclusion: there is no effect of different types of aerobic training on ejection fraction and peak VO2 for diastolic heart failure patients, but lower limb exercise is more effective than upper limb exercise in improvement of peak VO2 for diastolic heart failure patients.

Detailed description

Ejection fraction and peak VO2 of both groups were measured pre exercise program and after 12 weeks at the end of the study exercise program. * Vivid S5 cardiovascular ultrasound system (BT308), made in china, was used to measure ejection fraction. * Oxycon pro (ER900, Germany) cardiopulmonary exercise test unit was used to measure Peak Vo2 Treatment procedure: Group A received aerobic exercise for upper limb in the form of arm ergometer 3 session/week for 12 weeks. Patient started with warming up for 5 minutes in form of stretching. Patients used arm ergometer without resistance for upper limb aerobic exercise for 20 minutes and instructed to take rest if they feel tired or fatigue. The intensity was according to rate of perceive exertion, after 20 minutes, patients were asked to cool down for 5 minutes in the form of stretching at the end of an exercise session. Group B received aerobic exercise for lower limb in the form of cycling 3session/week for 12 weeks. Patient started with warming up for 5 minutes. Patients used bicycle for lower limb aerobic exercise for 20 minutes and instructed to take rest if they feel tired or fatigue. The intensity was according to rate of perceive exertion. After 20 minutes, patients were asked to cool down for 5 minutes in the form of stretching at the end of an exercise session.

Interventions

OTHERaerobic exercise for upper limb

aerobic exercise for upper limb in the form of arm ergometer 3 session/week for 12 weeks. Patient started with warming up for 5 minutes in form of stretching. Patients used arm ergometer without resistance for upper limb aerobic exercise for 20 minutes and instructed to take rest if they feel tired or fatigue. The intensity was according to rate of perceive exertion, after 20 minutes, patients were asked to cool down for 5 minutes in the form of stretching at the end of an exercise session.

OTHERaerobic exercise for lower limb

received aerobic exercise for lower limb in the form of cycling 3session/week for 12 weeks. Patient started with warming up for 5 minutes. Patients used bicycle for lower limb aerobic exercise for 20 minutes and instructed to take rest if they feel tired or fatigue. The intensity was according to rate of perceive exertion. After 20 minutes, patients were asked to cool down for 5 minutes in the form of stretching at the end of an exercise session.

Sponsors

Beni-Suef University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
SUPPORTIVE_CARE
Masking
NONE

Eligibility

Sex/Gender
MALE
Age
50 Years to 65 Years
Healthy volunteers
No

Inclusion criteria

* male gender * under complete medical supervision * left ventricular end diastolic dimension \>5.5cm * ejection fraction \<50%.

Exclusion criteria

* Orthopedic problems * Mental disorders * Metabolic disorders (D.M) * Current treatment for cancer or active infection.

Design outcomes

Primary

MeasureTime frameDescription
Ejection fraction12 weeksVivid S5 cardiovascular ultrasound system (BT308), made in china, was used to measure ejection fraction.
peak VO212 weeksOxycon pro (ER900, Germany) cardiopulmonary exercise test unit was used to measure Peak Vo2

Countries

Egypt

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 8, 2026