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The Impact of Exercise With Blood Flow Restriction: Sex and Age Differences

The Impact of Exercise With Blood Flow Restriction: Sex and Age Differences on Physical Performance, Muscle Hypertrophy, and Blood Biomarkers

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05615831
Enrollment
72
Registered
2022-11-14
Start date
2022-05-01
Completion date
2023-11-22
Last updated
2023-12-13

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

Conditions

Physical Activity

Keywords

Blood flow restriction, Sex comparisons, Resistance training, Sex Differences, Aging, Young healthy, Strength Training

Brief summary

The primary objective is to investigate whether six weeks of resistance training, in combination with blood flow restriction, produces a different adaptation in fat-free mass between males and females that are not physically active. The secondary objective is to compare changes in physical function, physical performance, and blood biomarkers between males and females following resistance training and blood flow restriction.

Detailed description

Previous studies indicated a reduced workload (i.e., lifting lighter weight) combined with blood flow restriction leads to increased fat-free mass and muscle strength. However, females have been underrepresented in the blood flow restriction literature. Therefore, no study has investigated whether males and females of different age groups have different adaptations in fat-free mass, muscle strength, and performance outcomes following resistance training using blood flow restriction. The primary objective will be to investigate sex differences in fat-free mass following six weeks of resistance training combined with blood flow restriction in young and older adults. The secondary objective is to investigate sex differences in muscle strength, physical performance, and blood biomarkers between males and females following resistance training and blood flow restriction. Briefly, participants between 19-30 years and 65 years and older will be recruited to participate in this study. Participants will present to the laboratory for two baseline testing visits interspersed with a minimum of four days. The first testing visit will include a variety of questionnaires, a blood draw, lipid and glucose, a dual-energy x-ray absorptiometry scan, anthropometrics, and a submaximal VO2. The second visit will include several physical function tests, such as the short physical performance battery and the Y-balance test, as well as a high-intensity isokinetic fatigue test using isokinetic dynamometry and 1-repetition maximum testing. Upon completion of baseline testing, participants are enrolled in the exercise program. The first exercise session includes a blood draw before and immediately after the training session. This procedure will be duplicated at the final exercise session at the end of the six weeks. Participants' full occlusion will be estimated using the formula developed by Loenneke et al. (2015). Then each participant's occlusion will be set at 60% of each individual's total limb occlusion. This will be used in combination with the following exercises incline chest press, seated row, leg press, knee extension, and knee flexion performed at 30% of 1RM. The protocol is as follows: 30 repetitions followed by three sets of 15 repetitions for a total of four sets and 75 repetitions per exercise. There will be a one-minute recovery between sets where the cuffs remain inflated and a four-minute recovery between exercises where the cuffs will be deflated. Following the completion of the six weeks of exercise, participants will again present to the laboratory for two follow-up visits similar to the first two baseline visits.

Interventions

BEHAVIORALResistance Training with Blood flow restriction

Participants will perform six weeks of blood flow restriction (60% occlusion) combined with resistance training at 30% of 1RM. The intervention comprises five exercises: incline chest press, seated row, leg press, knee extension, and knee flexion. The protocol is as follows: 30 repetitions followed by three sets of 15 repetitions for a total of four sets and 75 repetitions per exercise. There will be a one-minute recovery between sets where the cuffs remain inflated and a four-minute recovery between exercises where the cuffs will be deflated.

Sponsors

Public Health Agency of Canada (PHAC)
CollaboratorOTHER_GOV
University of New Brunswick
Lead SponsorOTHER

Study design

Allocation
NON_RANDOMIZED
Intervention model
PARALLEL
Primary purpose
PREVENTION
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
19 Years to 100 Years
Healthy volunteers
Yes

Inclusion criteria

* Between the ages of 19 and 100 years * Sedentary (not meeting physical activity guidelines), but otherwise healthy

Exclusion criteria

* Aged outside the threshold * Uncontrolled hypertension * Presence of cardiovascular disease * Either surgery, bone fracture, or skin graft within the previous three months * Uncontrolled diabetes mellitus * Pregnancy * Individuals taking medications known to increase risk of blood clotting

Design outcomes

Primary

MeasureTime frameDescription
Muscle hypertrophyBaseline and 6 weeksChange in fat-free mass

Secondary

MeasureTime frameDescription
StrengthBaseline and 6 weeksChange in 1-repetition maximum
Muscle PowerBaseline and 6 weeksChange in vertical jump score
Muscle EnduranceBaseline and 6 weeksChange in knee extension and flexion
Changes in physical functionBaseline and 6 weeksChanges in short physical performance battery, senior fitness test, and Y-balance test
Changes in blood biomarkersBaseline and 6 weeks post-intervention and pre and post an acute bout of resistance training at baseline and and after 6 weeksChanges in circulating blood biomarkers

Countries

Canada

Outcome results

None listed

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