Kivo Goggles are some of the best Light Therapy Goggles designed to block 95% of the blue, yellow, red, and near-infrared wavelengths emitted from light therapy panels
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Kivo Goggles: Blue, NIR, and Light Therapy Eye Goggles
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Kivo Goggles are some of the best Light Therapy Goggles designed to block 95% of the blue, yellow, red, and near-infrared wavelengths emitted from light therapy panels
Enhance your light therapy sessions with Kivo Red Light Therapy Goggles. Designed to protect your eyes from the intense light of blue, near-infrared, and red light wavelengths, these goggles ensure safe and comfortable therapy experiences. Near-infrared light penetrates deeply, promoting healing and rejuvenation, but it’s crucial to shield your eyes from prolonged exposure. Blue light is strong, and exposure can cause permanent damage.
Having a spare pairs of Kivo Red Light Goggles means you'll always be prepared, whether for shared sessions or unexpected needs. Crafted for durability and comfort, these goggles are an essential accessory for anyone serious about maximizing the benefits of red light therapy safely. Keep your eyes protected and maintain your therapy routine seamlessly with Kivo's reliable and high-quality red light goggles.
Available to purchase singularly, in 3's, or in commercial boxes. Variants show the total number of goggles in the box.
If you have ever looked for ways to help your aging pet move more comfortably or speed up the healing of a small scrape, you might have heard about red light therapy. Often called photobiomodulation, this approach is becoming quite common in veterinary care. It is a non-invasive, drug-free way to help our furry, and non-furry family friends feel better.
Migraine sufferers often search for non-invasive solutions that avoid the side effects associated with traditional pharmaceutical treatments. Red and Near-Infrared light are gaining recognition as evidence-based tools for long-term migraine prevention and management.
Getting the right dosage of Light Therapy is crucial to obtaining the results you're looking for. Our exclusive algorithm takes into account the outcomes of thousands of customers, feedback, as well as the results of numerous scientific studies, we've built a red light therapy dosage calculator that takes in the irradiance of a device, the distance you want to use it, whether you're changing brightness / pulse modes / treatment type, and takes all of that into account to calculate the correct dosage you need.
Red Light Dosage Calculator
Red and near-infrared light therapy—also known as photobiomodulation—is emerging as a promising treatment for concussions and brain injuries. By boosting cellular energy, improving blood flow, and reducing inflammation, red light helps the brain recover naturally after trauma. Clinical studies from institutions like Mass General Hospital and JAMA Network show it can improve brain connectivity, memory, and mood following head injuries.
Red and near-infrared light therapy (often called photobiomodulation) can be a powerful ally before and after surgery. By boosting cellular energy, improving circulation, and reducing inflammation, this safe, non-invasive treatment helps your body recover faster, with less pain and smoother healing. When used pre-surgery, it “preconditions” tissues for better resilience, and post-surgery it supports faster wound repair and scar reduction.
Nerve damage is one of the most challenging conditions to treat. Whether caused by injury, surgery, diabetes, or chronic illnesses, damage to peripheral nerves often leads to pain, numbness, tingling, and impaired function. Unlike skin or muscle, nerve tissue regenerates very slowly, and in some cases, healing is incomplete. Traditional treatments often focus on managing symptoms rather than repairing the underlying damage.
In recent years, however, there has been growing interest in a non-invasive approach that may support the body’s ability to repair nerve tissue: red and near-infrared (NIR) light therapy, also known as photobiomodulation (PBM). Studies are beginning to show that PBM can stimulate cellular repair processes, improve circulation, and enhance recovery in nerve-related conditions.
So, how does this work — and what does the science say?
How Red and Near-Infrared Light Affect Nerve Cells
Both red light (around 630–660 nm) and near-infrared light (around 810–850 nm) penetrate tissues and are absorbed by mitochondria, the “powerhouses” of cells. Specifically, they target an enzyme called cytochrome c oxidase, which is part of the mitochondrial respiratory chain. When stimulated by these wavelengths, mitochondria produce more ATP (adenosine triphosphate) — the energy currency of the cell (NIH).
In nerve cells, this extra energy allows for:
Axonal repair: Damaged axons (the long projections of neurons) can regrow when energy demands are met.
Myelin regeneration: Light therapy may support the repair of myelin, the protective sheath around nerves that is critical for fast and accurate signal transmission.
Protein synthesis: Increased ATP fuels the creation of structural proteins needed for nerve repair.
In short, light therapy helps “recharge” injured nerves so they can carry out the demanding process of repair.
Reducing Oxidative Stress and Inflammation
Nerve injury often creates an environment of oxidative stress, where excessive reactive oxygen species (ROS) damage cellular components. Photobiomodulation helps normalize ROS levels by making mitochondria more efficient. This not only protects neurons but also reduces secondary damage that can occur after the initial injury.
In addition, light therapy reduces inflammatory cytokines — signalling proteins that can prolong pain and impair healing. By calming the inflammatory response, PBM creates a more favorable environment for regeneration. Research in the Journal of Neurotrauma found that NIR therapy not only reduced oxidative stress but also improved functional recovery after nerve injury (PubMed).
Stimulating Neurotrophic Factors
One of the most promising findings is that red and NIR light increase levels of neurotrophic factors. These are proteins that guide nerve growth, survival, and function. Among the most important are:
Nerve Growth Factor (NGF): Promotes survival and growth of sensory and sympathetic neurons.
Brain-Derived Neurotrophic Factor (BDNF): Supports synaptic plasticity, learning, and repair.
A study published in Neuroscience Letters found that PBM increased expression of BDNF and NGF in animal models, leading to enhanced axon regeneration and functional recovery (NIH).
This means that light therapy doesn’t just provide energy; it also helps activate the genetic and molecular programs necessary for nerves to rebuild themselves.
Improving Circulation and Nutrient Delivery
Nerves, especially peripheral nerves, have limited blood supply compared to other tissues. Poor circulation can slow healing and leave damaged nerves starved of oxygen and nutrients. Near-infrared light penetrates deeper than red light and stimulates nitric oxide release, which relaxes blood vessels and improves microcirculation.
A study in Lasers in Surgery and Medicine demonstrated that animals treated with NIR after nerve injury had faster functional recovery and improved nerve conduction velocity compared to controls (PubMed). Improved blood flow is key not only for repair but also for clearing out metabolic waste products that accumulate in injured tissues.
Evidence from Clinical and Preclinical Studies
While much of the research has been done in animal models, the results are encouraging - and early human studies are beginning to confirm the benefits.
Peripheral nerve injury: Animal studies show that PBM accelerates axonal regrowth and improves recovery of motor and sensory function.
Carpal tunnel syndrome: Clinical trials using NIR light have reported reductions in pain and improvements in grip strength and nerve conduction (PubMed).
Diabetic neuropathy: Studies suggest that PBM reduces pain and numbness while improving quality of life for patients with diabetic nerve damage.
Post-surgical nerve recovery: Patients treated with red/NIR light after surgery have shown reduced pain, less inflammation, and better long-term functional outcomes.
Although more large-scale clinical trials are needed, the existing data strongly suggest that photobiomodulation is a safe and effective adjunct therapy for nerve regeneration.
What Patients Report
Beyond the lab, many people using red and near-infrared therapy devices report improvements such as:
Reduced tingling and numbness
Decreased nerve pain
Improved muscle activation in affected areas
Better coordination and grip strength
While individual results vary, these reports align with the physiological mechanisms demonstrated in research.
Suggested Protocol for Nerve Regeneration (Using the Kivo Elite Panel)
If you are considering red and NIR light therapy at home, consistency is key. Nerve healing is slow, and results are usually seen over weeks to months. A commonly recommended protocol is:
Wavelength: Red + Near-Infrared
Brightness: High (Level 5 on Kivo Elite Panel)
Pulse: 40 Hz (associated with neurological repair and brain wave entrainment)
Duration: 15–20 minutes per affected area
Frequency: 5–7 times per week
Treatment Length: At least 8–12 weeks, longer for chronic conditions
This can be used alongside conventional treatments such as physical therapy, medications, and lifestyle interventions. Always consult a healthcare provider before starting new therapies, especially if you have a medical condition.
For more Light Therapy Treatment Protocols, visit our help site: https://help.KivoTherapy.com
Why This Matters
Nerve damage can be life-changing, affecting mobility, sensation, and independence. Traditional medicine often offers limited solutions beyond pain relief. Light therapy represents a shift — instead of masking symptoms, it seeks to help the body heal itself.
As the research base expands, red and near-infrared therapy may become a standard part of nerve rehabilitation protocols, both in clinics and at home. Devices like the Kivo Elite Panel make it possible to access this promising therapy safely and consistently.
For those dealing with nerve injuries, neuropathy, or post-surgical recovery, photobiomodulation offers real hope: faster healing, less pain, and a better chance of regaining function.
ADHD is more than just a buzzword these days. With rising diagnoses across all age groups, more people are looking for drug-free alternatives to help manage symptoms like brain fog, impulsivity, low motivation, and poor focus. One emerging tool that’s getting attention? Red light therapy and near-infrared (NIR) light therapy.
Light therapy is a powerful tool for skin health, injury recovery, and overall wellness — but like all good things, too much can become counterproductive. Whether you’re using red light, near-infrared (NIR), blue light, or yellow light therapy, understanding the limits is key to getting results without side effects.
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Kivo Red Light & Near Infrared Therapy panels, masks, and devices can help with pain, healing, skin issues, as well as overall wellness & health. Kivo products are not intended to diagnose, cure, or prevent specific diseases. The Kivo website is not intended as medical advice, please consult a qualified health professional prior to using these products. Any SAVINGS price is a price compared to similar products in the market place, unless a product is specifically marked as ON SALE or CLEARANCE.
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