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Metabolic Cost of Medicine Ball Training

Metabolic Cost of Medicine Ball Training

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05412511
Acronym
MΒT-UTH
Enrollment
10
Registered
2022-06-09
Start date
2022-05-01
Completion date
2023-04-30
Last updated
2023-05-11

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

Conditions

Body Composition, Energy Expenditure, Physical Fitness, Resting Metabolic Rate

Keywords

functional fitness training, Medicine ball Training, Energy Expenditure, Oxygen Consumption, Resistance Trianing

Brief summary

In this study, the investigators will be able to estimate the metabolic cost of several foundational medicine ball training exercises.

Detailed description

Medicine ball training has become a popular cardiovascular training choice in fitness centers and athletic performance enhancement facilities. Despite widespread use and growing popularity, little is known about the metabolic demands of such a training method. Therefore, the purpose of this study was to quantify the cardiovascular and metabolic cost from various foundational medicine ball exercises in order to contribute to a better planning of exercise programs in the real world. Ten healthy young adults were assigned to execute fourteen bodyweight exercises (acute bout) of which seven exercises will be executed by throwing the medicine ball and seven exercises will be executed without a medicine ball throw. Anthropometric, metabolic, functional capacity and performance measurements were conducted at baseline. The metabolic cost was estimated from heart rate, blood lactate, resting oxygen uptake, exercise oxygen uptake, and excess post-exercise oxygen consumption measurements using a portable gas analyzer.

Interventions

BEHAVIORALMB-TB

Training exercises with throwing a medicine ball will be performed for 30 seconds and the training volume will be consisted of 1 repetition.

BEHAVIORALMB-NTB

Training exercises without throwing a medicine ball will be performed for 30 seconds and the training volume will be consisted of 1 repetition.

Sponsors

University of Thessaly
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
OTHER
Masking
SINGLE (Investigator)

Eligibility

Sex/Gender
ALL
Age
18 Years to 35 Years
Healthy volunteers
Yes

Inclusion criteria

* Aged between 18 and 35 years * Physically active individuals * Free of chronic diseases * Free of musculoskeletal injuries * Nonsmokers

Exclusion criteria

* Musculoskeletal injuries * Chronic diseases * Use of alcohol, caffeine and any type of ergogenic supplements or medication before (≤6 months) and throughout the study.

Design outcomes

Primary

MeasureTime frameDescription
Change in exercise-induced energy expenditureAt pre-exercise, during, and 30 minutes after the exercise session (a single bout lasting 30 seconds)Exercise energy expenditure (kcal) will be measured using a portable indirect calorimetry system
Change in excess post-exercise oxygen consumption (EPOC)At 1 hour after exercise session (single bout lasting 30 seconds)EPOC (kcal) will be measured using a portable indirect calorimetry system
Change in blood lactate concentration (BLa)At pre-exercise and 3 minutes after exercise session (a single bout lasting 30 seconds)BLa (mmol/L) concentration will be measured in a microphotometer with commercially available kits.
Change in heart rateAt pre-exercise, during, and 30 minutes after ther exercise session (a single bout lasting 30 seconds)Heart rate (bpm) will be measured with a wearable heart rate monitor
Change in perceived exertionAt pre-exercise, during, and 30 minutes after the exercise session (a single bout lasting 30 seconds)Rating of perceived exertion (RPE) will be measured with the Borg scale (0-10)

Secondary

MeasureTime frameDescription
Waist-to-hip ratio (WHRAt baselineWHR will be calculated by dividing the waist by the hip measurement
Resting metabolic rate (RMR)At baselineRMR (kcal) will be measured using a portable open-circuit indirect calorimeter with a ventilated hood system
Body fat (BF) Body fat (%) will be assessed by whole-body dual-energy X-ray absorptiometry (DXA)At baselineBF (%) will be assessed by whole-body dual-energy X-ray absorptiometry (DXA)
Fat mass (FM)t Body fat (%) will be assessed by whole-body dual-energy X-ray absorptiometry (DXA)At baselineFM (kg) will be assessed by whole-body dual-energy X-ray absorptiometry (DXA)
Body weightAt baselineBody weight will be measured on a beam balance with stadiometer
Maximal oxygen consumption (VO2max)At baselineVO2max (mL/kg/min) will be assessed by a portable open-circuit spirometry system
Maximal strength (1RM)At baseline1RM (kg) will be measured bilaterally on a horizontal leg press and seated chest press machine.
Muscular enduranceAt baselineMuscular endurance (repetitions) will be measured on a 1-min curl-up and push-up test.
Functional capacityAt baselineFunctional capacity will be assessed using a movement-based screening tool titled Functional Movement Screening (FMS). The FMS will be consisted of 7 movement tasks that will be scored from 0 to 3 points and the sum will create score ranging from 0 to 21 points (0 = pain with pattern regardless of quality, 1 = unable to perform pattern, 2 = able to perform pattern with compensation/imperfection, 3 = able to perform pattern as directed)Functional capacity will be assessed using a movement-based screening tool titled Functional Movement Screening (FMS). The FMS will be consisted of 7 movement tasks that will be scored from 0 to 3 points and the sum will create score ranging from 0 to 21 points (0 = pain with pattern regardless of quality, 1 = unable to perform pattern, 2 = able to perform pattern with compensation/imperfection, 3 = able to perform pattern as directed)
Fat-free mass (FFM)At baselineFFM (kg) will be assessed by whole-body dual-energy X-ray absorptiometry (DXA)
Body heightAt baselineBody height will be measured on a beam balance with stadiometer
Body mass index (BMI)At baselineBMI will be calculated using the Quetelet's equation
Waist circumference (WC)At baselineWC (cm) will be measured using a Gullick II tape
Hip circumference (HC)At baselineHC (cm) will be measured using a Gullick II tape

Countries

Greece

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026