Clinical Trials Logo

Clinical Trial Details — Status: Completed

Administrative data

NCT number NCT03993483
Other study ID # HIREB 4774
Secondary ID
Status Completed
Phase N/A
First received
Last updated
Start date June 1, 2018
Est. completion date October 5, 2018

Study information

Verified date June 2019
Source McMaster University
Contact n/a
Is FDA regulated No
Health authority
Study type Interventional

Clinical Trial Summary

Recent research suggests that performing resistance exercise training with relatively light loads is equally as effective at increasing muscle mass and muscle strength as performing resistance exercise training with relatively heavy loads. Whether or not performing resistance exercise with relatively heavy loads or light loads is equally as effective between the upper- and lower-body within the same individual has never been investigated. Given the substantial individual variance in resistance exercise training-induced changes in muscle mass and strength, this study is designed to quantify the relative influence that extrinsic training variables (e.g., load), as opposed to intrinsic muscle-based predisposition, has on resistance training-induced changes in muscle mass and muscle strength.


Description:

Each participant will come to the Exercise Metabolism Research Laboratory gym three times per week for 10 weeks to perform lower- and upper-body resistance exercise training with both relatively heavy- (~80% one repetition maximum [1RM]) and light- (~40 %1RM) loads. One arm and one leg will be randomized to lift with relatively heavy loads such that the other arm and leg will be randomized to lift with relatively light loads. Each workout will be supervised by a study investigator.

The time commitment of this study is 12 weeks (including pre- and post-study testing). Each workout to take 30 minutes and, with testing days included, the investigators foresee a total time commitment of 41 hours, or just under three and half hours per week.

The pre- and post-study measurements include muscle biopsies, dual x-ray absorptiometry scans, ultrasonography scans, 1RM assessment, and maximum voluntary contraction assessment. The muscle biopsies will be taken from each of the participant's vastus lateralis to assess muscle fibre cross sectional area in both legs during the beginning (four biopsies) and end (four biopsies) of the intervention. The dual x-ray absorptiometry scans are used to assess body composition and will be done pre- and post-intervention. The ultrasonography scans will be used to assess biceps brachii and vastus laterals thickness and cross sectional area. The ultrasound scans will be assessed during the beginning (four scans) and end (four scans) of the intervention. The 1RM assessment will include 1RM testing on a knee extension machine and biceps curl machine and will be done at the beginning and end of the intervention. The maximum voluntary contraction assessment will be performed on a System 3 Biodex Dynamometer (Shirley, NY, USA), which is an immovable machine that the participants contract against to measure their peak force. The maximum voluntary contractions will be recorded three times: twice at the beginning of the intervention and once at the end of the intervention.


Recruitment information / eligibility

Status Completed
Enrollment 20
Est. completion date October 5, 2018
Est. primary completion date October 5, 2018
Accepts healthy volunteers Accepts Healthy Volunteers
Gender Male
Age group 18 Years to 30 Years
Eligibility Inclusion Criteria:

- Be between the ages of 18-30 years (inclusive)

- Be able to maintain a habitual diet and perform resistance exercise three times per week throughout the trial

- Be in general good health (assessed by Get Active Questionnaire)

- Understand the study procedures and sign this form providing informed consent to participate in the study.

Exclusion Criteria:

- Use of tobacco or related products

- A history of neuromuscular problems or muscle and/or bone wasting diseases

- Any acute or chronic illness; cardiac, pulmonary, liver, or kidney abnormalities; insulin- or non-insulin-dependent diabetes or other metabolic disorders (all ascertained through medical questionnaires)

- Use of medications known to affect protein metabolism (i.e. corticosteroids, non-steroidal anti-inflammatory drugs (prescription use or daily use of over the counter medication), or prescription strength acne medications)

Study Design


Related Conditions & MeSH terms


Intervention

Behavioral:
Unilateral resistance exercise
The participants performed three sets of their unilateral resistance exercise (biceps curls and knee extensions) three times per week for 10 weeks.

Locations

Country Name City State
Canada Exercise Metabolism Research Laboratory, McMaster Univeristy Hamilton Ontario

Sponsors (1)

Lead Sponsor Collaborator
McMaster University

Country where clinical trial is conducted

Canada, 

Outcome

Type Measure Description Time frame Safety issue
Primary Change in fat-free mass Measured by dual x-ray absorptiometry pre- and post-training up to 12 weeks
Primary Change in vastus lateralis thickness Measured by ultrasonography pre- and post-training up to 12 weeks
Primary Change in vastus lateralis cross sectional area Measured by ultrasonography pre- and post-training up to 12 weeks
Primary Change in biceps brachii thickness Measured by ultrasonography pre- and post-training up to 12 weeks
Primary Change in biceps brachii cross sectional area Measured by ultrasonography pre- and post-training up to 12 weeks
Primary Change in muscle fibre cross sectional area Measured by muscle biopsies from the vastus lateralis pre- and post-training up to 12 weeks
See also
  Status Clinical Trial Phase
Recruiting NCT06061367 - Muscles Strength and Gait Parameteres After TKA
Completed NCT04136821 - The Long-term Effects of Oceanix™ on Resistance Training Adaptations N/A
Recruiting NCT05945641 - Effect of Low-load Resistance Training vs. High-intensity Interval Training on Local Muscle Endurance N/A
Not yet recruiting NCT05510648 - Evaluation of the Effect of High-intensity Laser Therapy in Knee Osteoarthritis N/A
Completed NCT03715920 - Comparison of Different Quadriceps Femoris Isometric Strengthening Methods N/A
Terminated NCT01561404 - Effect of the Inhibition of the Mammalian Target of Rapamycin on Metabolism and Exercise Phase 4
Completed NCT04535336 - Vitality Acupunch Exercise Program for Older Adults With Sarcopenia N/A
Completed NCT04880486 - Weight Training With VR in Out-Patients With Acute Exacerbation of Chronic Obstructive Pulmonary Disease N/A
Recruiting NCT06061315 - Effect of Collagen Peptides, in Combination With Resistance Training, on Body Composition and Muscle Strength in Untrained Men N/A
Completed NCT05366348 - The Effects of Horse-back Riding on Core Muscles in Adolescents N/A
Completed NCT04213586 - Effects of Whey Protein and Collagen Supplementation N/A
Completed NCT04626817 - Effect of Oral Isotretinoin on Muscle Strength in Patients With Acne Vulgaris: A Prospective Controlled Study N/A
Completed NCT03922113 - Muscle Function After Intensive Care
Completed NCT01449097 - Adductor-Canal-Blockade Versus the Femoral Nerve Block Effect on Muscle Strength and Mobilization in Healthy Volunteers Phase 4
Completed NCT06196268 - Core Strengthening vs Pilates Exercises on Posture, Body Awareness and Fatigue Among Female Athletes N/A
Completed NCT05882981 - Increased Femoral Anteversion and Physical Performance
Completed NCT00059436 - Mental Effort and Muscle Strength Phase 1
Recruiting NCT06410014 - Assessment of Overall Functioning in Patients With Complex Health Issues
Completed NCT04239417 - Effect of Preoperative Abdominal Exercises and Russian Current on Muscle Strength Post Ventral Hernioplasty N/A
Completed NCT04315077 - The Short Term Effects of Oceanix Supplementation on Recovery N/A