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Clinical Trials/NCT04938947
NCT04938947CompletedNot Applicable

Effect of Resistance Training With Blood Flow Restriction on Motor Unit Hypertrophy in the Vastus Lateralis

University of Kansas1 site in 1 country31 target enrollmentStarted: September 22, 2021Last updated:
Conditions
Interventions

Trial Snapshot

Phase
Not Applicable
Status
Completed
Enrollment
31
Locations
1
Primary Endpoint
Determine changes in motor unit size

Study Overview

Brief Summary

The primary purposes of the proposed study is 1) To examine the changes of muscle fiber cross-sectional areas in the leg extensor muscles (vastus lateralis) pre- to post- 6 weeks of high-intensity resistance training and low-intensity resistance training with blood flow restriction and 2) To examine changes in motor unit size (a non-invasive measure of muscle fiber size) in the leg extensor muscles (vastus lateralis) pre- to post- 6 weeks of high-intensity resistance training and low-intensity resistance training with blood flow restriction.

Detailed Description

Specific Aims and Hypotheses:

Specific Aim 1: To examine the changes of type I and II (different types of muscle fibers) muscle fiber cross-sectional areas in the leg extensor muscles (vastus lateralis) pre- to post- 6 weeks of high-intensity resistance training and low-intensity resistance training with blood flow restriction. Hypothesis 1: Type I and II fiber cross-sectional area will increase following low-intensity resistance training with blood flow restriction, however, only cross-sectional area of type II fibers will increase post high-intensity resistance training.

Specific Aim 2: To examine changes in the size of the motor units that are active during low and high intensity contractions in the leg extensor muscles (vastus lateralis) pre- to post- 6 weeks of high-intensity resistance training and low-intensity resistance training with blood flow restriction. Hypothesis 2: The motor units that are active during low and high intensity contractions will increase in size from low-intensity resistance training with blood flow restriction, but only the motor units that are active during high intensity contractions will increase in size from high-intensity resistance training.

Specific Aim 3: To examine changes in whole muscle cross-sectional area as measured via ultrasound pre- to post- 6 weeks of high-intensity resistance training and low-intensity resistance training with blood flow restriction. Hypothesis 3: Whole muscle cross-sectional area will increase to similar degrees from both high-intensity resistance training and low-intensity resistance training with blood flow restriction.

Study Design

Study Type
Interventional
Allocation
Randomized
Intervention Model
Parallel
Primary Purpose
Basic Science
Masking
None

Eligibility Criteria

Ages
18 Years to 30 Years (Adult)
Sex
All
Accepts Healthy Volunteers
Yes

Inclusion Criteria

  • Not provided

Exclusion Criteria

  • •Participants must not have participated in resistance training more than 5 times in the 6 months preceding the study.
  • •Participants must be healthy and free of any cardiovascular, metabolic or musculoskeletal conditions that may affect the results of the investigation.
  • •Participants must not have a history of severe hip, knee and/or ankle injuries, or any other pathological conditions that impair their motor control.
  • •Participants must not have any pre-existing cardiovascular conditions that involve blood flow/blood clotting.
  • •Participants who are currently taking blood thinners or any medications regulating blood pressures or heart rate will not be eligible to participate in the study.
  • •Female participants who are pregnant at the start of or who are planning to become pregnant during the resistance training intervention will not be eligible to participate in the study.

Arms & Interventions

High-Intensity Resistance Training Group

Experimental

Participants in this group will complete 3 resistance training sessions per week for 6 weeks (18 sessions total). During each resistance training session, participants will perform 3 sets of bilateral leg-extensions (performed with both legs) to volitional failure (likely 8-12 repetitions) using 80% of their 1-repetition maximum (the most weight they are able to perform 1 complete repetition with, but not 2).

Intervention: High-Intensity Resistance Training (Other)

Low-Intensity Resistance Training with Blood Flow Restriction Group

Experimental

Participants in this group will complete 3 resistance training sessions per week for 6 weeks (18 sessions total). During each training session, participants will perform 3 sets of bilateral leg-extensions (performed with both legs) to volitional failure using 30% of their 1-repetition maximum (the most weight they are able to perform 1 complete repetition with, but not 2). Participants in this group will perform all leg extensions with blood flow restriction cuffs applied to the proximal thigh of both legs. The pressure that the cuffs are inflated to will be calculated based on estimates of each subject's arterial occlusion pressure from their thigh circumference. Once the target pressure is reached, the cuffs will not be deflated until after the final set of the training session.

Intervention: Blood Flow Restriction Cuffs (Device)

Low-Intensity Resistance Training with Blood Flow Restriction Group

Experimental

Participants in this group will complete 3 resistance training sessions per week for 6 weeks (18 sessions total). During each training session, participants will perform 3 sets of bilateral leg-extensions (performed with both legs) to volitional failure using 30% of their 1-repetition maximum (the most weight they are able to perform 1 complete repetition with, but not 2). Participants in this group will perform all leg extensions with blood flow restriction cuffs applied to the proximal thigh of both legs. The pressure that the cuffs are inflated to will be calculated based on estimates of each subject's arterial occlusion pressure from their thigh circumference. Once the target pressure is reached, the cuffs will not be deflated until after the final set of the training session.

Intervention: Low-Intensity Resistance Training (Other)

Outcomes

Primary Outcomes

Determine changes in motor unit size

Time Frame: July 2021- May 2022

Another primary purpose of the study is to examine changes in motor unit size (a non-invasive measure of muscle fiber size) in the leg extensor muscles (vastus lateralis) pre- to post- 6 weeks of high-intensity resistance training and low-intensity resistance training with blood flow restriction

Determine changes in muscle fiber cross-sectional area

Time Frame: July 2021-May 2022

A primary purpose of the study is to examine the changes of muscle fiber cross-sectional areas in the leg extensor muscles (vastus lateralis) pre- to post- 6 weeks of high-intensity resistance training and low-intensity resistance training with blood flow restriction

Secondary Outcomes

No secondary outcomes reported

Investigators

Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

Tanner Reece

Graduate Teaching Assistant

University of Kansas

Study Sites (1)

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