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Clinical Trials/NCT04056416
NCT04056416CompletedNot Applicable

Physical Activity Promotion in Children and Adolescents With Single Ventricle Physiology (MedBike)

University of Alberta1 site in 1 country4 target enrollmentStarted: March 25, 2019Last updated:
Conditions
Interventions

Trial Snapshot

Phase
Not Applicable
Status
Completed
Enrollment
4
Locations
1
Primary Endpoint
Exercise capacity

Study Overview

Brief Summary

Single ventricular (SV) heart was a uniformly fatal condition before the advances in surgical treatment in 1980. In the present era, 5-year survival rate with SV is 75%, with some centers, including the Stollery Children's Hospital reporting higher survival. Although mortality remains a major concern, the research focus has shifted to management of late complications as well as improving patient physical and mental health related quality of life issues. Children with SV have reduced exercise tolerance and this is progressive through adulthood. Recent advances in remote health assessment and telehealth systems have allowed the development of medically supervised home graduated physical training for adult cardiac patient rehabilitation. To our knowledge, the application of these technologies has not been applied to SV patients. The long term goal is to use this technology to improve patient exercise capacity and to positively influence parental and patient perceptions of the patient's physical ability.

Detailed Description

Children with single ventricular (SV) heart were a uniformly fatal condition prior to descriptions of surgical palliation in 1980 that results in a Fontan circulation with single ventricle physiology. In the present era, 5-year survival is 75% in multicenter studies, with some centers including the Stollery Children's Hospital reporting higher survival. Although mortality remains a challenge for this population, the research focus has shifted towards optimizing management of late complications as well as improving patient physical and mental health-related quality of life issues. Children with SV have decreased exercise tolerance and the reduction is progressive through adolescence and into adulthood. Physical factors contributing to decreased exercise tolerance in the Fontan patient include cardiovascular inefficiencies and the loss of peripheral lean muscle mass and efficiency from deconditioning. Recently, Cordina et al. has shown that an intensive exercise regiment can improve muscle strength and mass, cardiac output and exercise capacity in adults with Fontan circulation. The majority of published outcomes from exercise training in patients with congenital heart disease (CHD) have resulted in increased measured exercise capacity with no apparent negative effect. Although the link between improved exercise capacity and improved patient quality of life remains controversial, participation in an aerobic exercise regimen leads to improved health-related quality of life.

Aside from physical limitations to their exercise capacity, Fontan patient self-confidence toward physical activity is low, as is exercise participation. Studies indicate that amongst youth with CHD, low self-confidence may be a more important predictor of participation than the severity of the disease. Parental overprotection is a common finding in children with CHD with a lasting impact on patient self-confidence and anxieties toward physical activity well into adulthood. Alteration of patient and parental perception and anxieties toward participation in physical activity may improve compliance to exercise training and encourage more positive patient perceptions toward healthy lifestyle habits, including frequent physical activity participation.

Recent technological advances in remote health assessment capabilities and telehealth systems have allowed the development of medically supervised home graduated physical training for adult cardiac patient rehabilitation. The application of such technologies to pediatric congenital heart patients has not been tested. In collaboration with Prof. Boulanger at the Advanced Man Machine Interface Laboratory at the University of Alberta, a custom pediatric remote bike ergometer (MedBike) was developed. This technology provides the medical supervisor with a live-feed of patient video/audio, electrocardiograph (ECG), blood pressure (BP) and blood oximetry signals while enabling remote determination of patient work load through the bike ergometer. The long-term goal is to use this technology to improve patient exercise capacity and to positively influence patient and parental perceptions of the patient's physical ability.

Stage 2 (HIIT exercise program): The investigators will evaluate the safety and efficacy of an 8-week, 3 times per week supervised HIIT exercise program in patients with SV physiology.

All eligible patients will undergo a full cardio pulmonary exercise testing (CPET) and anthropometry assessment of lean muscle mass prior to exercise training and at the end of the training period. Understanding that a patient's CPET results may change over time, subjects who participated in Stage 1 of the study will be invited back to undergo a new baseline CPET to ensure the reliability of the data.

Study Design

Study Type
Interventional
Allocation
Na
Intervention Model
Single Group
Primary Purpose
Other
Masking
None

Eligibility Criteria

Ages
10 Years to 19 Years (Child, Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • •single ventricle patients with Fontan circulation

Exclusion Criteria

  • •Cardiac arrhythmias
  • •Persistent low resting oxygen saturation of < 85%
  • •Severe ventricular dysfunction on most recent clinical echocardiogram
  • •Patients with reports of chest pain on exertion
  • •Restricted exercise by cardiologist

Arms & Interventions

HIIT Exercise Program

Experimental

Exercise on a MedBIKE 3 times a week for 8 weeks with pre- and post-CPET testing, questionnaires and qualitative interviews.

Intervention: MedBIKE (Device)

Outcomes

Primary Outcomes

Exercise capacity

Time Frame: Pre- VO2 max performed 1 week before 24 HIIT exercise sessions and within 1 week after last session

Exercise capacity assessed as the change in max VO2 pre- vs. post- completion of the HIIT exercise program. Hypothesis- we will observe an increased in VO2 max of 15%.

Secondary Outcomes

  • Qualitative interviews to determine the perception of exercise in CHD patient(Pre-interview conducted within 2 weeks of beginning 24 HIIT exercise sessions and post interview conducted within 2 weeks after last session)
  • Number of participants with exercise program specific adverse events(Data on acute events are recorded only during the study regiment (24 HIIT sessions); 8 weeks total)

Investigators

Sponsor Class
Other
Responsible Party
Sponsor

Study Sites (1)

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