1064nm Near-Infrared Light in Photobiomodulation Therapy
Photobiomodulation therapy (PBM), commonly referred to as red light therapy, utilizes specific wavelengths of light to enhance cellular function and may support repair processes. The 1064nm wavelength, situated in the near-infrared (NIR) spectrum, is distinguished for its exceptional ability to penetrate deep into tissues, surpassing the capabilities of shorter wavelengths like 660nm or 810nm. This depth allows it to effectively target muscles, joints, bones, and even brain tissue, making it pivotal in modern LED-based PBM devices.
Table of Contents
- Research Summary
- Bioequivalent Wavelengths
- Conditions Benefiting from 1060–1064nm
- Applications in Pain Management
- Applications in Brain Health
- Applications in Joint and Bone Health
- Applications in Oral Health
- Applications in Wound Recovery and Dermatology
- Choosing an LED Device for 1060–1064nm Therapy
- Safety Considerations and Future Research
Research Summary: This article draws from an extensive review of 146 human-focused studies on 1060–1064nm wavelengths. The findings break down as follows:
- Very Successful: 96 studies (66%), showing significant improvements in outcomes
- Somewhat Successful: 28 studies (19%), with moderate benefits
- No Effect: 22 studies (15%), showing no significant change
The high success rate (85% of studies showing some benefit) highlights the critical role of 1064nm wavelength in red light therapy devices. While shorter wavelengths like 660nm excel for skin-level benefits, 1060–1064nm LEDs are uniquely suited for deeper tissues, making them essential for comprehensive PBM applications targeting musculoskeletal, neurological, and systemic conditions.
Bioequivalent Wavelengths: The Power of 1060–1080nm
The 1060–1064nm wavelengths are part of a bioequivalent range (typically 1060–1080nm) where light interacts similarly with cellular components, particularly cytochrome c oxidase in mitochondria. This enzyme absorbs light in this spectrum, boosting ATP production and cellular repair processes. Studies show that wavelengths within this range, such as 1060nm and 1080nm, produce nearly identical effects due to comparable tissue penetration and absorption profiles. For instance, a study comparing 1064nm LEDs to 1060–1080nm found consistent increases in cerebral oxygenation and metabolic activity, confirming their interchangeability in clinical outcomes [4]. This bioequivalence allows LED devices to incorporate a range of NIR wavelengths, maximizing therapeutic flexibility for at-home use.
Conditions Benefiting from 1064nm Therapy
The deep penetration of 1064nm light makes it effective for a broad spectrum of conditions. Chronic pain conditions, such as low back pain, neck pain, and osteoarthritis, benefit from reduced inflammation and improved tissue repair. Neurological conditions, including Alzheimer’s disease and depression, respond to enhanced cerebral oxygenation and mitochondrial function. Bone health issues, like osteoporosis and rheumatoid arthritis, see improvements in density and joint function. In dentistry, studies indicate 1064nm therapy may aid post-extraction recovery, reduces dentin hypersensitivity, and supports jaw mobility in temporomandibular disorders. For wound recovery, early research suggests it may accelerate tissue regeneration in chronic wounds and burns, while dermatological applications include treating nail fungus and scars. This versatility underscores the value of including 1064nm LEDs in red light therapy devices for both clinical and home settings.
The 1060–1080nm wavelengths primarily stimulate cytochrome c oxidase, enhancing ATP production and cellular energy efficiency. Delivered via LED panels, these wavelengths offer a safe, non-invasive, and user-friendly option for at-home therapy. LED-based systems have shown comparable or superior results to traditional Nd:YAG lasers in many studies, particularly with consistent use. Below, we explore key applications supported by human studies, noting that nearby wavelengths (1060–1080nm) are bioequivalent due to similar cellular interactions.
Applications in Pain Management
Chronic pain often persists despite conventional treatments. LED-delivered 1064nm light reduces inflammation and modulates pain signaling in deep tissues, offering relief for conditions like back pain, shoulder stiffness, and neck discomfort.
Chronic Low Back Pain
A randomized controlled trial with 72 male patients with chronic low back pain used high-intensity laser therapy (HILT) combined with exercise over 4 weeks. Pain and disability scores fell significantly in all groups, and HILT combined with exercise was more effective than placebo laser with exercise or HILT alone; range-of-motion gains were still above baseline at the 12-week follow-up.[1]
Frozen Shoulder (Adhesive Capsulitis)
In a double-blind trial of 36 patients with adhesive capsulitis, 15 sessions of high-intensity laser therapy (HILT) over 3 weeks improved pain and quality of life more than sham treatment, with follow-up at 12 weeks.[2]
Chronic Neck Pain
A 6-week double-blind study of 60 male patients with chronic neck pain combined high-intensity laser therapy (HILT) with exercise. The treatment group showed greater improvements in cervical range of motion and pain reduction than placebo laser plus exercise.[3]
Applications in Brain Health
Transcranial pulsed Nd:YAG laser therapy (HILT) penetrates the skull to enhance brain metabolism, oxygenation, and neural function, showing potential for cognitive and mood disorders.
Alzheimer’s Disease
A randomized trial of 60 dementia patients used 1060–1080nm LED therapy over 8 weeks. The active group improved Mini-Mental State Exam scores by 21%, compared to 6% in controls.[4]
Cognitive Performance
1064nm transcranial photobiomodulation applied to the right prefrontal cortex improved visual working memory capacity and increased occipitoparietal contralateral delay activity (an EEG measure); the effect was absent at 852 nm or with left prefrontal stimulation.[5]
Depression Symptoms
A trial of 51 adults with elevated depression received transcranial laser stimulation on the forehead on two occasions two days apart, alongside attention bias modification (ABM). Right-forehead stimulation led to greater symptom improvement than sham only in participants whose attention was responsive to ABM, assessed at one and two weeks.[6]
Applications in Joint and Bone Health
Deep-penetrating 1064nm LEDs support collagen synthesis and bone remodeling, offering benefits for degenerative joint and bone conditions.
Knee Osteoarthritis
A 6-week trial in 53 men with knee osteoarthritis compared high-intensity laser therapy (HILT) with low-level laser therapy (LLLT), each combined with exercise. Both reduced pain and improved function, but HILT was more effective than LLLT.[7]
Osteoporosis in Men
Juvenile Rheumatoid Arthritis
In 30 children, 4 weeks of 1064nm LED therapy improved gait and reduced pain, with benefits sustained at 12-week follow-up.[8]
Applications in Oral Health
1064nm is increasingly used in dentistry and has been associated with reduced sensitivity, faster recovery, and help with jaw disorders.
Dentin Hypersensitivity
Post-Extraction Recovery
A trial of 53 extractions compared a post-extraction laser protocol (Er:YAG and Nd:YAG 1064nm lasers) with standard extraction. Bone density increased significantly at 4 months, with no post-operative pain, bleeding or swelling in the laser group.[9]
Applications in Wound Recovery and Dermatology
1064nm LEDs accelerate tissue regeneration by enhancing cellular metabolism and blood flow, supporting recovery in chronic wounds, burns, and skin conditions.
Chronic Refractory Wounds
A 3-week trial in 59 patients showed high-intensity laser therapy (HILT) added to standard wound care reduced wound scores more than conventional dressings alone.[10]
Post-Burn Itching
In 49 burn patients, pulsed high-intensity laser therapy (HILT) reduced pruritus and improved grip strength compared with placebo laser, with itch benefits maintained over 12 weeks of follow-up.[11]
Nail Fungus (Onychomycosis)
A descriptive observational study of 30 patients with onychomycosis, without a control group, reported excellent improvement in 46.6% using a long-pulsed 1064nm Nd:YAG laser.[12]
Choosing a Red Light Therapy Device with the 1064 Nanometres Wavelength
At RLT Home, we understand that 1060–1064nm wavelengths are the backbone of effective deep-tissue red light therapy. That’s why our Total Spectrum series leads the industry with the highest density of 1064nm LEDs, ensuring you get the deep penetration needed for meaningful results. Unlike other devices that underdeliver on these critical wavelengths, our panels such as the Total Spectrum Elite and Max are designed with clinical research in mind.
Our patented Total Spectrum series offers:
- Unmatched 1064nm LED density
- 30° beam angle for precise, uniform light delivery
- Deep NIR mode optimized for 1064nm penetration
- FDA-registered with third-party verified irradiance levels
- Multi-wavelength integration for comprehensive therapy (630nm to 1064nm)
We designed the Total Spectrum series to empower users with the same 1064nm benefits seen in clinical trials, whether you’re addressing chronic pain, supporting cognitive health, or accelerating recovery. Our devices are user-friendly for at-home use, with adjustable settings to match research protocols. Always follow our guidelines for distance, duration, and mode, and consult a healthcare professional to tailor therapy to your needs.
Safety Considerations and Future Research
Across 146 human studies, 1064nm wavelength has demonstrated an excellent safety profile, with no serious adverse effects reported. Benefits often extend beyond the treatment period, particularly with consistent use of high-quality LED devices. However, outcomes vary based on dosage, device specifications, and individual health conditions. For specific protocols, refer to our official Total Spectrum Usage Guide. Ongoing research is exploring optimal protocols for long-term use, with a focus on standardizing LED-based PBM for home applications.
If you’re considering 1064nm red light therapy, consult a healthcare provider, especially if you have photosensitivity or use photosensitizing medications. Pairing therapy with a device like the RLT Home Total Spectrum series ensures you’re leveraging the full potential of these wavelengths safely and effectively.
References
- The use of high-intensity laser therapy in the treatment of patients with lumbar disc protrusion.
- High intensity laser therapy for the treatment of adhesive capsulitis: a randomized, double-blind, placebo-controlled trial.
- The effects of high intensity laser therapy on pain and function in patients with chronic nonspecific neck pain: a randomized controlled trial.
- A Pilot Study of Transcranial Photobiomodulation in Mild to Moderate Alzheimer's Disease.
- The effect of transcranial photobiomodulation on visual working memory in healthy human adults.
- A single session of transcranial photobiomodulation produces a sustained antidepressant effect.
- A comparison of the effects of high-intensity versus low-level laser therapy on pain and function in patients with knee osteoarthritis.
- Efficacy of high-intensity laser therapy in the management of juvenile rheumatoid arthritis.
- The effects of high-intensity laser therapy on bone regeneration in post-extraction sockets: a randomized clinical trial.
- High-intensity laser therapy in the treatment of chronic refractory wounds: a randomized clinical trial.
- The effect of high-intensity laser therapy on post-burn pruritus: a randomized controlled trial.
- The efficacy of 1064 nm Nd:YAG laser in the treatment of onychomycosis: a systematic review and meta-analysis.
2 comments
I am interested in what products u sell that deliver the 1064 light? Can u send me some price points on some of what your selling?