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Effectiveness of high intensity exercise training and vibration recovery on key health outcomes and weight control in overweight/obese people

Effectiveness of high intensity exercise training and vibration recovery on key health outcomes and weight control in overweight/obese people

Status
Recruiting
Phases
Unknown
Study type
Interventional
Source
ANZCTR
Registry ID
ACTRN12613000287730
Enrollment
50
Registered
2013-03-12
Start date
2013-02-01
Completion date
2013-03-31
Last updated
2020-01-13

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

Conditions

None listed

Brief summary

Exercise plays a key role in the prevention and treatment of overweight and reduction of body weight by lifestyle intervention is often modest. High intensity interval training (HIIT) characterized by repeated efforts at near-maximal to supramaximal work rates, interspersed with periods of recovery, has recently been used as an alternative to traditional endurance training to alter cardiorespiratory fitness and muscle metabolism. However, the optimal prescription with regards to intensity, work and rest duration, and number of intervals have yet to be elucidated. Alternatively, whole body vibration (WBV), which is a novel training intervention, has been proven to be a safe and effective exercise modality for improving body composition and muscle strength in deconditioned individuals. Numerous studies have indicated that WBV can decrease fat mass and increase muscle mass but also upregulate the nitric oxide dilator system and improve endothelial function which may indicate that WBV may be an effective intervention for improving health-related outcomes. To our knowledge this is the first study designed to combine both therapies; consequently, the aim of this study was to extend the previous findings examining the effects of short-term HIIT on overweight/obese people. Secondly, to determine whether vibration recovery lead to additional benefits in this population group. Methods: Fifty participants will be randomly assigned to either a HIIT training group with vibration recovery (WBVT), HIIT training group with passive recovery (HIIT) or usual-care control group (CON). Body composition (waist circumference, waist to hip ratio –WHR-, weight, height, percentage of body fat and fat-free mass), heart rate (HR), lipid-related cardiovascular risk factors (i.e. cholesterol, triglycerides, HDL, LDL, LDL/HDL and atherogenic index), Insulinemia and HOMA-index, high sensitivity-C-reactive protein and functional capacity as measured by time 6-minute walking test, hand-grip strength and lower-limb maximal strength will be assessed at baseline and after 8-weeks. Since all patients were overweight or obese, caloric intake (55% complex carbohydrates, 30% fat, and 15% protein) will be reduced to obtain a negative balance of 500 kcal/day. Requirements will be calculated by adding the estimated energy expenditure from PA to basal metabolism. WBVT participants will perform 6-10 sets x 1 min of HIIT at 90% heart rate max) followed by 6-10 x 1 min of inter-set vibration recovery at a frequency of 25 Hz and a peak to peak displacement of 4 mm. HIIT groups will perform the same HIIT followed by 4 min of passive recovery while the control group will continue their daily activities with the nutritional advice. As WBV increases leg blood flow and reduces fat mass, we hypothesize that it would provide additional therapeutic benefits to people with overweight characterized by impeded leg blood flow and abdominal obesity.

Interventions

Arm 1: High Intensity Interval Training (HIIT; 6 sets and then progressively increased to 10 sets over time x 1 min of high intensity aerobic training cycling on a stationary ergometer at 90%Heart rate Max) followed by 4 min of pasive recovery after each of the 1 min sets. Arm 2: the same HIIT followed by vibration recovery (1 min of inter-set recovery at a frequency of 25 Hz and a peak to peak displacement of 4 mm). In both groups caloric intake (55% complex carbohydrates, 30% fat, and 15% pro

Arm 1: High Intensity Interval Training (HIIT; 6 sets and then progressively increased to 10 sets over time x 1 min of high intensity aerobic training cycling on a stationary ergometer at 90%Heart rate Max) followed by 4 min of pasive recovery after each of the 1 min sets. Arm 2: the same HIIT followed by vibration recovery (1 min of inter-set recovery at a frequency of 25 Hz and a peak to peak displacement of 4 mm). In both groups caloric intake (55% complex carbohydrates, 30% fat, and 15% protein) will be reduced to obtain a negative balance of 500 kcal/day. The training sessions will be performed three times a week for 8 weeks and in all cases one-on-one supervised by an exercise physiologist

Sponsors

University of Seville
Lead SponsorUniversity

Study design

Allocation
Randomised controlled trial
Intervention model
Parallel
Primary purpose
Treatment

Eligibility

Sex/Gender
All
Age
20 Years to 50 Years
Healthy volunteers
No

Inclusion criteria

a) BMI greater than or equal to 25 kg/m2 b) Sedentary participants (determined by means of the International Questionnaire of Physical Activity)

Exclusion criteria

Exclusion criteria include history or evidence of advanced cardiovascular (including SBP > 160 mmHG and DBP > 100 mmHG), renal or hepatic diseases, retinopathy, nephropathy, or neuropathy, orthopedic or other limitations that may interfere with their ability to exercise safely. Participants with Type I or II diabetes also will be excluded. Moreover, participants receiving physical therapy were excluded to avoid possible interactions with the present intervention.

Outcome results

None listed

Source: ANZCTR · Data processed: Feb 4, 2026