How strength, balance, body awareness, and red light therapy help dogs stay active and reduce injury risk

Conditioning for dogs

How strength, balance, body awareness, and red light therapy help dogs stay active and reduce injury risk

Help your dog stay strong, mobile, and ready for everyday life
Talk with a MedcoVet clinician about your dog’s fitness level, injury history, soreness, mobility, and at-home conditioning support options.

Written by: Alon Landa
Medically reviewed by: Kristy Williams, CVT, CCFT (Specialties: Pet rehabilitation, pain management, photobiomodulation)

Reviewed: July 2026
Updated: July 2026

Help your dog stay strong, mobile, and ready for everyday life

Talk with a MedcoVet clinician about your dog’s fitness level, injury history, soreness, mobility, and at-home conditioning support options.

Sprite

What is canine conditioning?

Canine conditioning is fitness training for dogs. It uses controlled, low-impact conditioning exercises to build strength, body awareness, balance, core strength, mobility, range of motion, and physical preparation for daily life, dog walks, sports, and recovery after injury. A good canine fitness program helps dogs move better, protect joints, build stabilizer muscles, and reduce the risk of compensation injuries.

If your dog is active, aging, recovering from an injury, or starting a fitness program:

Want help supporting your dog’s strength, mobility, and recovery?

Lucy

Why conditioning for dogs matters

Most people discover canine conditioning after something goes wrong.

A dog tears an ACL. A senior dog starts slipping on the floor. A canine athlete gets sore after agility. A dog finishes rehab and the owner wants to keep the progress going.

That is where conditioning for dogs becomes powerful.

Canine conditioning gives dogs a way to graduate from rehab into everyday strength. It helps rebuild strength after injury, maintain muscle mass in senior dogs, improve body awareness, and support the small stabilizer muscles that keep the larger muscle groups working properly.

Those small muscles matter.

They help control movement. They protect joints. They support balance, posture, coordination, and normal mobility.

A strong dog is less likely to sustain orthopedic injuries. Strong muscles can help prevent common injuries like ACL tears by supporting the knees, hips, shoulders, spine, and core during everyday activities.

Canine conditioning after rehab

Canine conditioning after rehab

Dogs recovering from injury often need more than rest.

Rehab helps restore function after pain, surgery, weakness, or injury. Canine conditioning helps keep that progress moving forward.

This is especially important for dogs recovering from:

  • ACL or CCL injury
  • Knee surgery
  • Hip or elbow dysplasia
  • Arthritis
  • IVDD
  • Muscle strain
  • Sprains
  • Shoulder injuries
  • Hind leg weakness
  • Back pain
  • Sport-related soreness

After an injury, dogs often compensate. They shift weight away from the sore area. They overuse the front legs. They avoid loading one hind leg. They move differently without meaning to.

That can create new problems.

Conditioning exercises help rebuild strength, improve symmetry, and teach the body how to move with better control again.

Canine conditioning for healthy dogs

Canine conditioning for healthy dogs

Healthy dogs benefit too.

A dog does not need to be injured to need fitness. Conditioning supports regular exercise, daily walks, hiking, running, playing, stairs, getting in and out of the car, and moving safely on hard surfaces.

Dogs carry about 60% of their body weight through the front end. That means the front legs, shoulders, neck, and core work hard every day, even when the dog looks relaxed.

Canine conditioning helps support the whole body:

  • Front legs
  • Hind legs
  • Rear end
  • Core
  • Shoulders
  • Spine
  • Paws
  • Stabilizer muscles
  • Balance system

A fitness program can also help dogs stay lean, which protects joints and supports long-term mobility.

Your dog deserves strength for more than sport.

Your dog deserves strength for daily life.

Canine conditioning for senior dogs

Canine conditioning for senior dogs

Senior dogs need gentle conditioning to maintain muscle mass, mobility, and confidence.

Older dogs often lose muscle gradually. Their rear end may weaken. Their hind feet may drag. Their body awareness may fade. They may still want to walk, but daily walks get shorter.

Canine fitness can help.

Regular fitness improves mobility in senior dogs, including senior dogs with arthritis. Controlled, low-impact exercise promotes joint circulation, supports range of motion, and helps slow the physical decline that comes with reduced movement.

Senior dogs may benefit from:

  • Sit-to-stand transitions
  • Weight shifts
  • Cavaletti poles
  • Slow leash walks
  • Gentle dog stretching
  • Body awareness exercises
  • Balance work on stable surfaces
  • Low-impact strength training
  • Rest days between conditioning sessions

Regular conditioning can help slow arthritis progression in dogs by keeping joints moving, muscles active, and body weight under better control.

Start easy.

Senior dogs do not need hard workouts. They need consistent, thoughtful movement.

Canine conditioning for puppies

Canine conditioning for puppies

Puppies need low-impact conditioning until their bodies mature.

Depending on breed and size, puppies may need to avoid high-impact fitness training until 12 to 24 months old. Large breeds often take longer to finish growing.

Puppy classes with body awareness exercises can build fitness foundations without joint harm.

Good puppy conditioning includes:

  • Walking over low objects
  • Standing on different stable surfaces
  • Gentle balance games
  • Basic body awareness
  • Target stick work
  • Rear feet awareness
  • Front paws on a low platform
  • Sit-to-stand transitions
  • Puppy pushups
  • Short sessions
  • Plenty of rest

Puppy pushups can strengthen dogs with low impact. A puppy pushup usually means asking the dog to move from sit to down to stand in a controlled way, using treats and positive reinforcement.

Keep it fun. Keep it short.

Puppies are building coordination, not chasing intensity.

How often should dogs do conditioning?

Adult dogs often benefit from 10 to 15 minutes of conditioning two to three sessions per week.

That is enough for many dogs.

A good schedule might look like this:

  • Monday: conditioning session
  • Tuesday: rest day or easy walk
  • Wednesday: conditioning session
  • Thursday: regular dog walks
  • Friday: rest day
  • Saturday: light conditioning or sport practice
  • Sunday: easy recovery walk

The best plan depends on the dog’s current fitness level, age, injury history, breed, body structure, and goals.

Start with one exercise. Then gradually build.

Gradual progression keeps conditioning safe. Too much load too soon can create soreness, compensation, and setbacks.

Foundational canine conditioning exercises

Foundational exercises teach dogs how to use their body with control.

Start on a flat surface. Use stable surfaces before adding unstable equipment. Reward your dog with treats, praise, or a marker word when they perform the movement correctly.

A marker word, like “yes,” works like clicker training. It tells the dog the exact moment they did the correct behavior.

Sit-to-stand transitions

Sit-to-stand transitions strengthen the hindquarters and build controlled movement.

Ask your dog to sit, then stand. Reward the clean stand. Repeat slowly.

Watch the rear end. The hind legs should work evenly. The dog should not rock forward too much or twist.

This is one of the most effective exercises for hind leg strength.

Weight shifts

Weight shifts build core awareness in dogs.

Have your dog standing squarely on all four paws. Gently lure the head slightly left, right, forward, and back so the body shifts weight without stepping.

Small movement.

Big benefit.

Weight shifts help the dog’s core, front legs, hind legs, and stabilizer muscles work together.

Cavaletti poles

Cavaletti poles improve joint flexion, rhythm, limb muscle activation, and body awareness.

Set poles low and spaced appropriately for your dog’s size. Walk slowly. Reward calm, controlled steps. Your dog should be looking forward, not up to you.

Cavaletti can help dogs learn where their rear feet are. That rear end awareness matters for sport dogs, senior dogs, and dogs recovering from injury.

Front paws elevated

Place your dog’s front feet on a low, stable platform.

This can help build shoulder strength, core strength, and body awareness. It also teaches the dog to load the rear end in a controlled way.

Keep the platform low. Use a non-slip surface.

Rear feet awareness

Rear feet awareness exercises teach dogs to understand where their hind feet are.

Many dogs know what their front paws are doing. Their rear feet are another story.

Use a low platform, target stick, or small object to teach the dog to step, place, and adjust the hind feet with control.

Balance work

Balancing exercises strengthen stabilizer muscles effectively.

Start on stable surfaces first. Later, some dogs may progress to conditioning equipment such as balance discs, a wobble board, or another unstable surface.

Unstable equipment can be helpful, but it can also make an exercise too difficult.

Use it carefully. Ask a canine rehab professional if your dog has an injury history.

Conditioning equipment for dogs

You do not need a full gym to start canine conditioning.

Useful conditioning equipment can include:

  • Non-slip mat
  • Low platform
  • Cavaletti poles
  • Target stick
  • Balance discs
  • Wobble board
  • Fit bone
  • Cones
  • Treats
  • Clicker or marker word
  • Harness
  • Stable step
  • Raised surface

Start with stable surfaces. Then gradually increase difficulty.

Unstable equipment should be used only when the dog has enough strength and control. A wobble board can be useful for one dog and too much for another.

The individual dog matters.

Dog stretching and range of motion

Dog stretching can support flexibility, but it should be gentle and appropriate.

Never force a stretch. Never pull a limb into position. Dogs should feel safe and comfortable.

Range of motion exercises may help dogs recovering from injury, older dogs, or dogs with stiffness. These exercises should be guided by a veterinarian, rehab professional, or trained clinician when pain or injury is involved.

Spinal flexibility, shoulder mobility, and hip range of motion can all influence how well a dog moves.

Pain changes everything.

If your dog resists, trembles, pulls away, or seems sore, stop.

Conditioning for canine athletes

Canine athletes need strength, cardio, balance, mobility, and recovery.

Agility dogs, dock diving dogs, flyball dogs, hunting dogs, scent work dogs, and hiking dogs all ask a lot from their bodies.

A conditioning program for canine athletes may include:

  • Core strength
  • Shoulder strength
  • Hind leg strength
  • Rear end awareness
  • Balance work
  • Cardio conditioning
  • Body awareness exercises
  • Sport-specific movements
  • Rest days
  • Recovery support

Fitness training helps prepare the dog’s body for the demands of sport. It also helps reduce the risk of injuries caused by fatigue, weakness, poor landing mechanics, or compensation.

For active dogs, conditioning and recovery belong together.

Read more about sport recovery here: Red Light Therapy for Agility Dogs.

Conditioning for pet dogs

Canine conditioning is also good for pet dogs.

Any dog who goes for walks, climbs stairs, plays in the yard, hikes in the woods, walks on sidewalks, jumps into the car, or moves across hard surfaces can benefit from better strength and balance.

Daily life asks dogs to use their body.

Conditioning helps them use it well.

A pet dog fitness program can be simple:

  • Daily walks
  • Two to three conditioning sessions per week
  • Sit-to-stand transitions
  • Weight shifts
  • Cavaletti poles
  • Body awareness games
  • Gentle stretching
  • Rest days

Most dogs do better when conditioning feels like new tricks, not a workout.

Make it fun.

A note on behavior conditioning

The word conditioning can also refer to behavior training.

That is different from canine conditioning for fitness.

In behavior training, classical conditioning modifies a dog’s emotional responses by associating emotions with specific triggers. Counter-conditioning pairs a negative trigger with positive rewards to change associations. Desensitization introduces triggers at low levels to prevent panic.

Operant conditioning uses rewards or consequences to teach behaviors. Positive reinforcement rewards desired behavior. Negative punishment removes a reward to decrease behavior. Shaping reinforces small steps leading to a final behavior. Clicker training uses a marker to indicate the correct behavior.

Modern dog training emphasizes clear communication, consistency, and positive reinforcement to build confidence and strengthen the owner-dog bond.

This page focuses on physical canine conditioning: strength, balance, proprioception, range of motion, stabilizer muscles, and injury prevention.

How red light therapy supports canine conditioning

How red light therapy supports canine conditioning

Photobiomodulation, or PBM, also called red light therapy, low-level laser therapy, LED therapy, cold laser, and near-infrared therapy, refers to the same therapeutic category using light energy to influence cellular biology.

Red light therapy can support canine conditioning by helping reduce inflammation, support circulation, ease discomfort, and support recovery after exercise.

Learn more here: Science of Red Light Therapy.

This is especially useful for dogs recovering from injury, senior dogs, canine athletes, and dogs building strength after rehab. Red light therapy can help support the tissues that are working harder during conditioning sessions.

It may support:

  • Muscle recovery after conditioning exercises
  • Joint comfort after strength training
  • Circulation around working tissues
  • Reduced soreness
  • Physical therapy tolerance
  • Mobility in senior dogs
  • Recovery after sport practice
  • Comfort during arthritis management
  • Support after rehab
  • Injury prevention plans

Red light therapy does not replace veterinary care, rehab, or strength training. It works best as part of a complete plan.

Why Luma is helpful for canine conditioning

The MedcoVet Luma gives dog owners a way to support recovery and mobility at home as part of a canine conditioning program.

Luma uses red and near-infrared light to support circulation, inflammation control, cellular activity, and comfort. It is non invasive, drug free, and designed for guided home use.

For dogs graduating from rehab, Luma can help support comfort while they rebuild strength. For canine athletes, Luma can support recovery between training sessions. For senior dogs, Luma can support mobility and comfort as they work to maintain muscle mass. For pet dogs, Luma can help support active daily life.

Luma may support:

  • Recovery after conditioning sessions
  • Comfort in older dogs
  • Joint comfort after daily walks
  • Muscle support after targeted exercises
  • Mobility support for dogs recovering from injury
  • Better tolerance for physical therapy exercises
  • Support for canine athletes
  • Comfort during strength training
  • Long-term movement support

For broader guidance, visit Red Light Therapy for Dogs.

👉 Want to know if Luma fits your dog’s fitness and recovery plan?

Gideon

Real Dogs, Real Conditioning Support

Many dogs find conditioning after an injury.

They finish rehab. They rebuild strength. They learn how to move with more confidence again.

Luma gives pet parents a way to support comfort, recovery, and mobility at home as part of their dog’s conditioning routine.

Categories
1-5 of 5 results
  • Izzy

    “Izzy started limping after her agility lessons. She is 7 years old but will not slow down, being a border…”

  • Willa

    “The Luma helped Willa’s recovery with her psoas injury and she is now back to competing in all the sports…”

  • Sprite

    “Sprite is an active sports dog who sustained an injury. The Luma is instrumental in her rehab program. It’s helping…”

  • Ghillie

    “Ghillie is back to running in agility and competing in Obedience and Rally. I take the Luma with me and…”

  • Bailey

    “Bailey is a competitive agility dog. So being healthy and strong is very important. He slipped on our wooden floors…”

Want help deciding if Luma fits your dog’s conditioning and recovery plan?

Ghillie

MedcoVet’s clinical view on canine conditioning

MedcoVet focuses on photobiomodulation protocols for dogs with pain, inflammation, mobility issues, arthritis, sport recovery, surgery recovery, and injury prevention support.

Our clinical approach considers the individual dog: age, breed, injury history, current fitness level, mobility, soreness patterns, sport schedule, weight, and recovery needs.

Canine conditioning helps dogs build strength, confidence, balance, and control. Red light therapy supports the recovery side of that work.

Conditioning builds the body.

Recovery helps the body keep going.

Questions dog owners ask about canine conditioning

Canine conditioning is fitness training for dogs. It uses controlled exercises to build strength, balance, body awareness, range of motion, core stability, and mobility.

No. Conditioning for dogs is helpful for canine athletes, senior dogs, dogs recovering from injury, puppies learning body awareness, and healthy pet dogs who go on regular walks.

Many adult dogs benefit from 10 to 15 minutes of conditioning two to three sessions per week. The plan should match the dog’s current fitness level.

Good beginner exercises include sit-to-stand transitions, weight shifts, cavaletti poles, front paws elevated on a stable surface, and simple body awareness exercises.

Yes. Canine fitness can help senior dogs maintain muscle mass, improve mobility, support joint health, and move with more confidence.

Yes. Strong muscles, better balance, improved body awareness, and good core strength can help protect joints and reduce orthopedic injury risk.

Yes, but it should be low impact. Puppies can work on body awareness, balance, puppy pushups, and foundation skills. Avoid high-impact work until growth plates mature.

Clinical summary

Mechanism:
Canine conditioning uses controlled exercises to improve strength, balance, proprioception, range of motion, body awareness, core stability, and muscular endurance. These exercises target stabilizer muscles and specific muscle groups that support joints, movement control, and injury prevention.

Evidence level:
Canine fitness and rehabilitation principles are widely used in veterinary rehabilitation and sports medicine. Evidence supports controlled exercise for improving strength, mobility, joint function, weight management, and recovery after selected injuries. Program design should account for age, health status, orthopedic history, and current fitness level.

When red light therapy works best:
Red light therapy works best when dogs need support for muscle recovery, joint comfort, inflammation control, physical therapy tolerance, arthritis-related stiffness, post-rehab conditioning, or sport recovery. It may be especially helpful for senior dogs, canine athletes, and dogs rebuilding strength after injury.

When not to use red light therapy:
Do not use red light therapy as a substitute for veterinary evaluation after acute injury, severe pain, sudden lameness, swelling, collapse, or unexplained weakness. Dogs with untreated infection, known or suspected tumors, or unexplained pain should be evaluated before use.

Build strength before the injury

Canine conditioning helps dogs move with more control, power, and confidence.

It helps senior dogs stay mobile. It helps pet dogs handle daily life. It helps canine athletes prepare for sport. It helps dogs recovering from injury rebuild safely.

Start small. Stay consistent. Respect rest days.

Then support the work with recovery.

Is red light therapy right for your dog?

Want help supporting your dog’s conditioning and recovery plan?

Dave

Evidence Citations

  • 830 nm light-emitting diode (led) phototherapy significantly reduced return-to-play in injured university athletes: a pilot study.

    By Foley

    • 2016

    • Journal: Laser Ther

    Abstract: “Over a 15-month period, a total of 395 injuries including sprains, strains, ligament damage, tendonitis and contusions were treated” “The average LED-mediated RTP in the 65 subjects was significantly shorter at 9.6 days, compared with the mean anticipated RTP of 19.23 days (p = 0.0066, paired two-tailed Student’s t-test). “A subjective satisfaction survey was carried out among the 112 students with injuries incurred from January to May, 2015. Eighty-eight (78.5%) were either very satisfied or satisfied, and only 8 (7.2%) were dissatisfied.”

    One Sentence Outcome:LED phototherapy was associated with a shorter return-to-play time in injured university athletes, including sprains, strains, ligament damage, tendonitis and contusions.

    Study Parameters:Human Single-arm (retrospective?) 65 participants ⌛ ~1-2 weeks per patient; Sessions: 3-6 on average; Treatment time: 1200 sec

    Device Parameters: Wavelength: 830 nm; Irradiance: 0.05 W/cm²; Dose: 60 J/cm²

    Evidence Level:Pilot study|Retrospective clinical study

    Study Type: Human Single-arm (retrospective?) 65 participants ⌛ ~1-2 weeks per patient

    Outcome Direction: Positive

  • A Meta-Analysis of Randomized Controlled Trials on the Effects of Photobiomodulation Therapy on Running Performance

    By do Nascimento

    • 2024

    • Journal: Int J Exerc Sci

    Abstract:

    One Sentence Outcome:A meta-analysis of randomized trials found no significant overall improvement in running performance from PBM alone or with training, highlighting mixed sports-performance evidence.

    Study Parameters:Meta-analysis

    Device Parameters: Wavelength: “Twelve studies fulfilled the inclusion criteria. No significant effects in favor of PBM were found (SMD = 0.13; p = 0.11). There was no effect considering the presence (SMD = 0.16; p = 0.38) and absence (SMD = 0.11; p = 0.25) of training, and there was no dose-response effect (p = 0.82).” “Our findings indicate that PBM alone or combined with a training program does not improve running performance in terms of time-trial and time-to-exhaustion testing. More studies involving PBM plus training and doses higher than 1000 J are needed to determine if PBM is effective in improving running performance.” nm

    Evidence Level:Meta-analysis

    Study Type: Meta-analysis

    Outcome Direction: Positive

  • Photobiomodulation therapy and NMES improve muscle strength and jumping performance in young volleyball athletes: a randomized controlled trial study in Brazil.

    By da Cunha

    • 2019

    • Journal: Lasers Med Sci

    Abstract: “This study found that, for volleyball athletes, photobiomodulation therapy and NMES both promoted benefits in terms of muscle-strength gain. In addition, these benefits were maintained for 2 weeks even after training was interrupted. Dominant lower limb strength improved in the NMES group compared to the control group. Non-dominant lower limb strength increased in both the photobiomodulation therapy group and the NMES group compared to the control group, but the NMES group improved significantly more than the photobiomodulation therapy group; the NMES group also improved in global impression of jumps compared to the control group.”

    One Sentence Outcome:PBM and NMES improved selected strength and jumping-performance outcomes in young volleyball athletes during a training program.

    Study Parameters:Human Randomized trial 36 participants ⌛ 6-week treatment -> 2-week follow-up; Sessions: 18 / 6 weeks; Treatment time: 240 (6p) sec

    Device Parameters: Wavelength: 850 nm; Power: 150 mW; Energy: 36 (6p) J; Dose: 0.8 J/cm²

    Evidence Level:Randomized controlled trial

    Study Type: Human Randomized trial 36 participants ⌛ 6-week treatment -> 2-week follow-up

    Outcome Direction: Positive

  • Effects of High Intensity Laser Therapy in the Treatment of Tendon and Ligament Injuries in Performance Horses

    By Zielińska

    • 2020

    • Journal: Animals (Basel)

    Abstract: “After the treatment, pain, swelling and lameness were significantly improved by HILT compared with the control group (p = 0.023, 0.008 and 0.044, respectively). No significant changes were found in lesion echogenicity degree between both groups in measurements taken during treatment (p = 0.188) and after treatment (p = 0.070). For lesion percentage reduction, the statistical modelling showed a significant improvement in the HILT group compared with the control group during (p = 0.038) and after treatment (p = 0.019). In conclusion, HILT promoted analgesic and anti-oedema effects, with visual lameness reduction in horses with tendon and ligament injuries, and reduced lesion percentage but did not influence change in lesion echogenicity.”

    One Sentence Outcome:High-intensity laser therapy was associated with improved pain, swelling, lameness and lesion reduction in performance horses with tendon and ligament injuries.

    Study Parameters:Horse

    Device Parameters: Wavelength: 808+ 980 nm

    Evidence Level:Veterinary clinical study

    Study Type: Horse

    Outcome Direction: Mixed / null

  • Short- and long term follow-up of 150 sports horses diagnosed with tendinopathy or desmopathy by ultrasonographic examination and treated with high-power laser therapy

    By Pluim

    • 2018

    • Journal: Res Vet Sci

    Abstract: “Notwithstanding the wide variability in lameness score at admission, there was a statistically significant overall improvement in both lameness and ultrasonographic scores the day after cessation of laser therapy (week 2) and 4 weeks later (week 6), across all types and stages of tendinopathy or desmopathy and both for horses diagnosed with a single disorder and for horses suffering from multiple causes of lameness. The lack of a control group precludes drawing of any conclusions about causal effects, but this finding can be considered quite interesting, as the improvement manifests after a much shorter time interval than described in literature for other treatment modalities.” Comment: Dose parameters not reported.

    One Sentence Outcome:In 150 sports horses with tendinopathy or desmopathy treated with high-power laser therapy, lameness and ultrasonographic scores improved over short-term follow-up, although causality is limited by lack of a control group.

    Study Parameters:Horse

    Device Parameters: Wavelength: 635+ 660+ 810+ 980 nm

    Evidence Level:Veterinary clinical study

    Study Type: Horse

    Outcome Direction: Positive

  • An Investigation Into the Short-Term Effects of Photobiomodulation on the Mechanical Nociceptive Thresholds of M. Longissimus and M. Gluteus Medius, in Relation to Muscle Firing Rate in Horses at Three Different Gaits

    By Ahmed

    • 2021

    • Journal: J Equine Vet Sci

    Abstract: “No significant effect of treatment was noted for the MNTs. The AMG results were analyzed in terms of their temporal summation (T-score), where statistically significant improvements in the T-scores for M. longissimus and M. gluteus medius were noted for the different gaits.” “It is concluded that cold and LLLT causes a decrease in the firing frequency of horse muscles, a change that is similar to the effects of analgesia on muscles of subjects experiencing pain. However, for the first time, the present study reveals evidence that supports an effect of LLLT on muscle function.”

    One Sentence Outcome:PBM did not significantly change mechanical nociceptive thresholds but showed evidence of altered muscle firing patterns in horses at different gaits.

    Study Parameters:Horse

    Device Parameters: Wavelength: 905 nm

    Evidence Level:Veterinary clinical study

    Study Type: Horse

    Outcome Direction: Mixed / null

  • Effects of Low-Level Laser Therapy and Chiropractic Care on Back Pain in Quarter Horses.

    By Haussler

    • 2020

    • Journal: J Equine Vet Sci

    Abstract: “Low-level laser therapy, as applied in this study, produced significant reductions in back pain, epaxial muscle hypertonicity, and trunk stiffness. Combined laser therapy and chiropractic care produced similar reductions, with additional significant decreases in the severity of epaxial muscle hypertonicity and trunk stiffness.” Note: No negative control group.

    One Sentence Outcome:Low-level laser therapy was associated with reduced back pain, epaxial muscle hypertonicity, and trunk stiffness in Quarter Horses.

    Study Parameters:Horse

    Device Parameters: Wavelength: 810 nm

    Evidence Level:Veterinary clinical study

    Study Type: Horse

    Outcome Direction: Positive

  • Photobiomodulation Therapy Combined with a Static Magnetic Field Applied in Different Moments Enhances Performance and Accelerates Muscle Recovery in CrossFit® Athletes: A Randomized, Triple-Blind, Placebo-Controlled Crossover Trial

    By Pinto

    • 2022

    • Journal: Oxid Med Cell Longev

    Abstract: “PBMT-sMF enhanced the performance of functional tests, decreased the levels of biochemical markers of muscle damage and inflammation, decreased oxidative stress, and increased antioxidant activity in CrossFit® athletes when applied before or after WOD.”

    One Sentence Outcome:PBMT plus static magnetic field improved functional performance and reduced markers of muscle damage, inflammation and oxidative stress in CrossFit athletes.

    Study Parameters:Human Randomized trial, crossover, double-blind 12 participants ⌛ 4 sessions (-> 48h follow-up) with 1-week washout periods

    Device Parameters: Wavelength: 633+ 850+ 905 nm

    Evidence Level:Randomized controlled trial

    Study Type: Human Randomized trial, crossover, double-blind 12 participants ⌛ 4 sessions (-> 48h follow-up) with 1-week washout periods

    Outcome Direction: Positive

  • Infrared Low-Level Laser Therapy (Photobiomodulation Therapy) before Intense Progressive Running Test of High-Level Soccer Players: Effects on Functional, Muscle Damage, Inflammatory, and Oxidative Stress Markers-A Randomized Controlled Trial.

    By Tomazoni

    • 2019

    • Journal: Oxid Med Cell Longev

    Abstract: “PBMT increased the VO2 max (both relative and absolute values-p < 0.0467 and p < 0.0013, respectively), time until exhaustion (p < 0.0043), time (p < 0.0007) and volume (p < 0.0355) in which anaerobic threshold happened, and volume in which aerobic threshold happened (p < 0.0068). Moreover, PBMT decreased CK (p < 0.0001) and LDH (p < 0.0001) activities. Regarding the cytokines, PBMT decreased only IL-6 (p < 0.0001). Finally, PBMT decreased TBARS (p < 0.0001) and carbonylated protein levels (p < 0.01) and increased SOD (p < 0.0001)and CAT (p < 0.0001) activities. The findings of this study demonstrate that preexercise PBMT acts on different functional aspects and biochemical markers. Moreover, preexercise PBMT seems to play an important antioxidant effect, decreasing exercise-induced oxidative stress and consequently enhancing athletic performance and improving postexercise recovery."

    One Sentence Outcome:Pre-exercise PBM improved performance markers and reduced muscle damage, inflammatory and oxidative stress markers in high-level soccer players.

    Study Parameters:Human Randomized trial, crossover, double-blind 22 participants ⌛ 2 sessions (1 active, 1 sham) with 14-day washout; Sessions: 1; Treatment time: 100 sec

    Device Parameters: Wavelength: 810 nm; Power: 100 per diode (5 diodes) mW; Energy: 850 per lower limb J; Dose: 275 J/cm²; Area: 0.0364  cm2 spot size per diode (5 diodes) 9.6 cm2 cluster area

    Evidence Level:Randomized controlled trial

    Study Type: Human Randomized trial, crossover, double-blind 22 participants ⌛ 2 sessions (1 active, 1 sham) with 14-day washout

    Outcome Direction: Positive

  • Photobiomodulation therapy in dogs undergoing TPLO after cranial cruciate ligament rupture shows promise but no statistically significant difference in a randomized trial

    By Chavez et al.

    • 2023

    • Journal: American Journal of Veterinary Research

    Abstract: Objective: assess PBMT after TPLO for CCLR using CRP, percentage weight bearing, pain scores, and surgical site infection. Fifty-four dogs were randomized to PBMT or sham. No statistically significant differences were found for CRP, weight bearing, or pain scores, although surgical site infections occurred only in controls.Objective: assess PBMT after TPLO for CCLR using CRP, percentage weight bearing, pain scores, and surgical site infection. Fifty-four dogs were randomized to PBMT or sham. No statistically significant differences were found for CRP, weight bearing, or pain scores, although surgical site infections occurred only in controls.

    One Sentence Outcome:This study reported a mixed outcome for the photobiomodulation intervention or evidence question.

    Study Parameters:Treatment immediately after induction and again at 6 h, 24 h, 48 h, and 8 weeks after TPLO; sham treatment on same schedule in controls.

    Device Parameters: PBMT device; exact wavelength/power not stated in the PubMed abstract.

    Evidence Level:Level 1b (veterinary randomized controlled trial)

    Study Type: RCT

    Outcome Direction: Mixed

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Author Image - Alon Landa

About the Author
Alon Landa is the CEO and co-founder of MedcoVet, a leader in at-home red light therapy for pets. With over 20 years of experience in medical technology and firsthand involvement in developing the Luma, Alon combines deep technical knowledge with a passion for improving pet health. He regularly collaborates with veterinarians and pet parents to advance photobiomodulation (PBM) care at home.
 📍 Based in Boston, MA
📖Read more from Alon here

Kristy Williams Medical Reviewer Headshot

About the Medical Reviewer
Clinical Focus: Surgery, anesthesia, canine fitness, injury prevention, agility
Kristy Williams brings over 30 years of experience to the veterinary field. Her career began in the 1990s, working as a civilian for the Army Veterinary Corps at RAF Feltwell in England, where she first discovered her passion for animal care and supporting their families. Upon returning to the United States, Kristy pursued her education and graduated in 2005 as a certified veterinary technician after passing the national exam. She has since gained extensive experience in both general practice and emergency/referral practices.
Read More about Kristy here.

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