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Effects of Cyclical Blood Flow Restriction Exercise on Muscle Hypertrophy and Capillaries in Older Adults

Eight Weeks of Cyclical Blood Flow Restriction Exercise Induces Regional Microvascular Remodeling and Muscle Hypertrophy in Older Adults: A Three-Arm Randomized Controlled Trial

Status
Completed
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07689487
Enrollment
31
Registered
2026-07-08
Start date
2026-02-01
Completion date
2026-06-01
Last updated
2026-07-08

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

Conditions

Aging, Muscle Atrophy, Sarcopenia in Elderly

Keywords

blood flow restriction, aging, nailfold capillaroscopy, muscle hypertrophy, angiogenesis, sarcopenia, KAATSU

Brief summary

The purpose of this study was to learn if low-load resistance exercise combined with cyclical blood flow restriction (BFR) could improve small blood vessel structure and muscle size in older adults. Skeletal muscle thinning and the loss of tiny blood vessels (capillaries) commonly happen as people age. While lifting heavy weights can help stop this, heavy loads are often not suitable for older adults with joint pain or other health conditions. Low-load exercise with BFR involves wearing inflatable cuffs on the upper arms that temporarily slow down blood flow, which can trigger positive changes in muscles and blood vessels without needing heavy weights. Researchers compared three groups of older adults: * One group performed low-load upper-body exercises while wearing cyclical BFR cuffs. * A second group performed the exact same exercises at the same low load but without wearing cuffs. * A third group maintained their normal daily activities without participating in any structured exercise program. Participants in the exercise groups trained 3 days a week for 8 weeks. Researchers used video capillaroscopy (a specialized camera at the fingernail base) to examine changes in tiny blood vessels and ultrasound imaging to measure arm muscle thickness before and after the 8-week period.

Detailed description

The goal of this parallel-group randomized controlled trial was to determine the chronic physiological effects of an 8-week cyclical blood flow restriction (BFR) training protocol on microvascular geometry and structural muscle hypertrophy in older adults. Heavy mechanical resistance training is a primary countermeasure against age-related sarcopenia, yet joint pathologies or cardiovascular comorbidities frequently limit its application in older populations. Low-load resistance training combined with BFR offers a load-sparing alternative by creating localized hypoxia and metabolite accumulation, which stimulate vascular endothelial growth factor (VEGF) and downstream angiogenic pathways. A cyclical BFR approach, where cuff pressure was systematically inflated and deflated, was used to optimize these adaptations via oscillatory shear stress while improving cardiovascular tolerability compared to continuous occlusion protocols. Participants were stratified by sex, age, baseline strength, and height, and then randomized into one of three arms: 1. Cyclical BFR Group: Low-load resistance training (20-40% 1RM) across four upper-body exercises with automated pneumatic cuffs delivering 8 cycles of 30 seconds inflation and 5 seconds deflation. 2. TRAINING Group: Identical low-load resistance training protocol performed without vascular restriction. 3. CONTROL Group: Non-exercise control maintaining habitual lifestyle activities. The intervention spanned 8 weeks with a training frequency of 3 sessions per week. Co-primary structural adaptations were tracked using non-invasive surrogates: nailfold video capillaroscopy to record arterial, apical, and venous capillary diameters, and B-mode ultrasonography to assess structural changes in biceps brachii and triceps brachii muscle thickness. Linear mixed models were utilized to analyze Group x Time interactions to verify if cyclical BFR demonstrated an adaptive superiority over standard low-load protocols.

Interventions

Vascular restriction administered using an automated cyclical pneumatic device (KAATSU Cycle 2.0) with 40 mm cuffs placed proximally on both arms. Protocol consists of 8 cycles of 30 seconds of inflation followed by 5 seconds of deflation per cycle, individually calibrated by capillary refill time and verified by Doppler ultrasound.

BEHAVIORALConventional Low-Load Resistance Exercise

Upper-body resistance exercise training encompassing four movements: biceps curl, triceps pushdown, lat pulldown, and chest press. Executed under a controlled 4x12 repetition scheme at an intensity of 20-40% 1RM, performed 3 days per week for a duration of 8 weeks.

Sponsors

Akdeniz University
Lead SponsorOTHER
Akdeniz University, Scientific Research Projects Coordination Unit
CollaboratorUNKNOWN

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
BASIC_SCIENCE
Masking
SINGLE (Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
50 Years to No maximum
Healthy volunteers
Yes

Inclusion criteria

* Age 50 years or older. * Recreationally active, defined as participating in light-to-moderate physical activity 2 or more days per week. * No structured resistance training within the preceding six months. * Free from cardiovascular disease, neurological conditions, or musculoskeletal injury contraindicating resistance exercise. * Able to provide written informed consent before enrollment.

Exclusion criteria

* Current use of anticoagulant or vasoactive medication. * History of deep vein thrombosis (DVT). * Resting systolic blood pressure greater than 160 mmHg.

Design outcomes

Primary

MeasureTime frameDescription
Nailfold Capillary DiameterBaseline and post-intervention (at the end of week 8)Microvascular morphology changes measured at three anatomical regions: the arterial (afferent) limb, the apical portion, and the venous (efferent) limb using nailfold video capillaroscopy.
Upper-Arm Muscle ThicknessBaseline and post-intervention (at the end of week 8).Structural muscle hypertrophy of the biceps brachii and triceps brachii muscles of the dominant arm, assessed via B-mode ultrasonography.

Secondary

MeasureTime frameDescription
Total Body MassBaseline and post-intervention (at the end of week 8)Changes in total body mass measured via bioelectrical impedance analysis.
Body Fat PercentageBaseline and post-intervention (at the end of week 8)Changes in body fat percentage measured via bioelectrical impedance analysis.
Fat MassBaseline and post-intervention (at the end of week 8)Changes in fat mass measured via bioelectrical impedance analysis.

Countries

Turkey (Türkiye)

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Jul 9, 2026