Related Experiment Video
Updated: Mar 22, 2026

The Use of Thermal Infra-Red Imaging to Detect Delayed Onset Muscle Soreness
Published on: January 22, 2012
Effects of Light-Emitting Diode Therapy on Muscle Hypertrophy, Gene Expression, Performance, Damage, and
Cleber Ferraresi1, Danilo Bertucci, Josiane Schiavinato
1From the Laboratory of Electrothermophototherapy, Department of Physical Therapy (CF, NP), and Post-Graduation Program in Biotechnology (CF, EM, NP), Federal University of São Carlos; Optics Group, Physics Institute of São Carlos, University of São Paulo, São Carlos (CF, VB), São Paulo, Brazil; Wellman Center for Photomedicine, Massachusetts General Hospital, Boston, Massachusetts (CF, MRH); Department of Physiological Sciences, Federal University of São Carlos, São Carlos (DB); Faculty of Medicine, University of São Paulo, Ribeirao Preto (JS, AA); Center for Cell Therapy and Regional Blood Center of Ribeirao Preto (JS, AA, RP); Departments of Medicine (RR) and Genetic and Evolution (AFC), Federal University of São Carlos, São Carlos; Post-Graduation Program in Bioengineering, University of São Paulo, São Carlos (VMA), São Paulo, Brazil; Department of Dermatology, Harvard Medical School, Boston (MRH); and Harvard-MIT Division of Health Sciences and Technology, Cambridge (MRH), Massachusetts.
Objective:
The aim of this study was to verify how a pair of monozygotic twins would respond to light-emitting diode therapy (LEDT) or placebo combined with a strength-training program during 12 weeks.
Design:
This case-control study enrolled a pair of male monozygotic twins, allocated randomly to LEDT or placebo therapies. Light-emitting diode therapy or placebo was applied from a flexible light-emitting diode array (λ = 850 nm, total energy = 75 J, t = 15 seconds) to both quadriceps femoris muscles of each twin immediately after each strength training session (3 times/wk for 12 weeks) consisting of leg press and leg extension exercises with load of 80% and 50% of the 1-repetition maximum test, respectively. Muscle biopsies, magnetic resonance imaging, maximal load, and fatigue resistance tests were conducted before and after the training program to assess gene expression, muscle hypertrophy and performance, respectively. Creatine kinase levels in blood and visual analog scale assessed muscle damage and delayed-onset muscle soreness, respectively, during the training program.
Results:
Compared with placebo, LEDT increased the maximal load in exercise and reduced fatigue, creatine kinase, and visual analog scale. Gene expression analyses showed decreases in markers of inflammation (interleukin 1β) and muscle atrophy (myostatin) with LEDT. Protein synthesis (mammalian target of rapamycin) and oxidative stress defense (SOD2 [mitochondrial superoxide dismutase]) were up-regulated with LEDT, together with increases in thigh muscle hypertrophy.
Conclusions:
Light-emitting diode therapy can be useful to reduce muscle damage, pain, and atrophy, as well as to increase muscle mass, recovery, and athletic performance in rehabilitation programs and sports medicine.
Related Concept Videos
Exercise and Muscle Performance
Endurance exercises
Endurance exercises involve running, swimming, or cycling, which require repetitive movements with low force output. When a person engages in endurance exercise, a few noticeable changes occur in their skeletal muscles. For instance, the number of capillaries...
Muscle Stimulation Frequency
Wave summation
At low firing rates, motor neurons induce individual twitch contractions in muscle fibers. These twitches...
Satellite Stem Cells and Muscular Dystrophy
Muscle Recovery and Fatigue
Skeletal Muscle Relaxants: Adverse Effects
Unlike...

