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What is lllt laser?

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What is Low level LLLT Laser?-Low level LLLT Laser is a painless, non-invasive treatment that uses light therapy to reduce inflammation, reduce pain and promote tissue healing. It is useful for acute and chronic musculo-skeletal injuries, trigger points/myofascial pain and neuropathic pain.Low Level LLLT Laser (LLLT), also called cold laser, soft laser or LILT, is a form of photobiomodulation which involves the application of monochromatic and coherent light to injuries and lesions to stimulate healing, reduce pain, and to promote tissue repair and nerve regeneration.

Unlike non-coherent light emitting devices, such as common LEDs and so-called SLDs (usually just infrared LEDs), the coherent, monochromatic and polarised radiation emitted by LASER has unique, specific, and scientifically-proven effects that, at the 810nm wavelength primarily used by SpectraVET, persist deep into the tissue.

What is Low Level LLLT Laser For Hairloss?-Where do I begin? Low Level LLLT Laser for hair loss, or “LLLT” for short, has been around for a long time. The first ever mention of low level LLLT Laser having a positive effect on hair growth was in 1967. A Hungarian scientist named Dr. Endre Mester was using the new laser technology to see if it would cause cancer in mice. I say “new” because lasers were only invented seven years earlier in 1960. During his experiment he shaved some mice so that the laser could better penetrate their skin (this wasn’t a cutting laser) and while he learned that low level laser light doesn’t cause cancer he also noted that the areas where the mice were “hit” with the laser seemed grow more hair. Is this conclusive evidence that low level LLLT Laser for hair loss works? Of course not, because the mice didn’t have any sort of genetically programmed hair loss, natural or manmade, and they were essentially just normal average mice with their fur shaved off so it kind of doesn’t make sense, unless there is more to the story, but it is the first documented observation of this phenomenon. Personally, I don’t think we can rule out that he was just shooting lasers as these mice like any ten year old kid would as soon as he got his hands on a new laser toy, like kids do with magnifying glasses on sunny days:) This observation was made a full forty years BEFORE the first FDA cleared laser device for hair loss hit the market. This means that the technology behind laser hair restoration systems isn’t anything new and in fact it is quite old in the overall scheme of things, not to mention it is fairly primitive.

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How lllt laser work?

How LLLT Laser work?-For low-power visible or near-infrared light to have an effect on a biologic system, the photon must be absorbed by electronic absorption bands belonging to a photon acceptor or chromophore (first law of photobiology) . A chromophore is a molecule (or portion of a molecule) which imparts a color to a compound (e.g. chlorophyll, hemoglobin, myoglobin, cytochrome c oxidase, other cytochromes, flavin, flavoproteins or porphyrins) . The “optical window” in a tissue describes a range of wavelengths where the penetration of light into tissue is maximized by employing red and near-infrared wavelengths . The optimum wavelength has been estimated to be around 810 nm. Mitochondria are “the cellular power plants” in our cells and as such they convert food molecules and oxygen into energy (ATP) by oxidative phosphorylation. It has been proposed that cytochrome c oxidase (COX) is the primary photo-acceptor for the red-NIR wavelength range in mammalian cells . Nitric oxide (NO) produced in mitochondria can inhibit respiration by binding to COX and displace oxygen especially in injured or hypoxic cells . It is proposed that LLLT can photo-dissociate NO from COX and reverse the mitochondrial inhibition of respiration due to excessive NO binding . The process of light mediated vasodilation was first described by RF Furchgott in 1968, and his research on the biological properties of nitric oxide eventually led to the award of a Nobel Prize in 1998 . LLLT is able to produce a shift in the overall cell redox potential in the direction of greater oxidation by increasing reactive oxygen species (ROS) and decreasing reactive nitrogen species (RNS). The long-term effects of LLLT are thought to be due to the activation of various transcription factors by the immediate chemical signaling molecules produce from mitochondrial stimulation by LLLT. The most important of these signaling molecules are thought to be ATP, cyclic-AMP, NO and ROS .

LLLT at low doses has been shown to enhance cell proliferation of fibroblasts , keratinocytes, endothelial cells and lymphocytes . The mechanism of proliferation is thought to result from photo-stimulation of the mitochondria leading to activation of signaling pathways and up regulation of transcription factors eventually giving rise to increases in growth factors . LLLT can enhance neovascularization, promote angiogenesis and increase collagen synthesis to aid in the healing of acute and chronic wounds . It has been observed in many studies, that LLLT exhibits a biphasic dose response curve, where by lower doses of light are more effective than much higher doses. These low doses of light have demonstrated the ability to heal skin, nerves, tendons, cartilage and bones.

How Low-Level LLLT Laser works-LLLT is also known as Cold LLLT Laser. It uses laser light placed exactly over the area with pain. The device which is only flashlight size emits specific wavelengths of light to penetrate about 2 to 5 cm through the layers of the skin. A wavelength power of 830 or 940 nm has been reported to have a moderate effect on pain. But the studies are not completely conclusive as efficacy may depend on several other factors.

Class 3B for LLT

Not all types of lasers can be used to help chronic pain relief. The Food & Drugs Administration (FDA) classified medical laser treatment into 3 types: Class 4 Surgical Lasers, Class 3B Non-surgical Lasers, and Class 3A Low-Level Lasers. Class 3B and Class 3A are used in non-invasive treatments. In relation to chronic pain treatment, only Class 3B is able to penetrate and help in the healing process of deep tissue and joint pains.

Self-healing of the body

This LLLT Laser stimulates all types of cells.There are about 200 cell types in our body including the musculoskeletal cell system which is responsible for our movements and body support. When laser lights are directed to the pain areas, the muscle cells will start to heal and pain will be reduced. According to studies, a number of conditions merited from low laser treatment. It can be an alternative cure for rheumatoid arthritis, carpal tunnel syndrome, fibromyalgia, back pain, knee pain, tendonitis, neck pain and others. The first three diseases mentioned are autoimmune diseases just like polymyalgia rheumatica. There have also been testimonies and positive feedback about LLLT from PMR patients in social media.

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Why lllt laser?

What Are the Benefits of LLLT Laser?-LLLT Laser offers patients a safe and effective therapy for a wide range of medical conditions, including soft tissue and sports injuries, arthritic conditions, repetitive stress injuries, wound healing and a variety of general health problems.

Clinical Benefits

Eliminates pain
Reduces the need for pharmaceuticals
Restores normal range of motion and physical function
Non-invasive
Non-toxic
No known adverse effects
No drug interactions
Often makes surgical interventions unnecessary
Provides a treatment alternative for patients that have not responded to conventional therapies

Physiological Effects

Increased production and release of:
Endorphins – natural analgesics
Cortisol – precursor of cortisone
Growth hormone – instrumental in tissue repair
ATP – improves and regulates cellular metabolism
Increased protein synthesis – collagen, DNA, fibroblasts
Venous and lymphatic flow facilitated
Increased angiogenesis – elevation of oxygen saturation
Enhanced immune response, etc.

What are the benefits of LLLT Laser?-The three benefits of LLLT Laser are it improves wound tissue regeneration, reduces inflammation and has an analgesic effect.These three PDF files summarise the effects of LLLT Laser and clinical benefits for:

Wound Healing
Sports injuries
Chronic Pain

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Who use lllt laser?

Who need Is LLLT Laser Right for You? Who should NOT get LLLT Laser?-Any provider should go over the benefits, risks, and alternatives to LLLT Laser. Informed consent should always be obtained prior to treatment. The provider should be knowledgeable of these, and assess a person’s health, contraindications and appropriateness of treatment prior to treating.

LLLT Laser should be used with caution in pregnancy and only by an experienced practitioner. Research studies are inconclusive as to fetal effects. The laser can safely be used on parts of the body, and risk should be assessed on an individual basis.
LLLT Laser should not be used directly after other phototherapies such as sun bathing, cosmetic procedures that use light therapy, cancer treatment or on areas of skin treated with products to increase photosensitivity.
LLLT Laser should not be used on fractures prior to proper stabilization or reduction of fracture. Laser can safely be used after a fracture has been stabilized via open (surgical) or closed reduction.
Laser should not be used over areas of tattooed skin as the ink may increase heat production or affect the art work.
LLLT Laser should never be placed over the thyroid located in the neck, as this can cause a thyroid storm, a condition of over-production of thyroid hormone.
Laser should never be targeted on the eye, and appropriate measures should be taken to avoid exposure.
LLLT Laser should not be used for a period of time after certain intra-articular (joint) injections.If you are curious about LLLT Laser to help with a condition, my best advice would be to schedule a consultation with a provider. LLLT Laser may be an option alone, or in combination with other modalities such as chiropractic, essential oils, infrared heat therapy with a BioMat, nutritional modification, etc. I rarely use LLLT Laser alone to treat patients, but other providers may treat differently. I have had to tell individuals that I didn’t think laser would be appropriate for their condition due to inaccurate diagnosis, scope of practice, or due to the severity of their condition other interventions were more appropriate. An appropriate diagnosis is important when deciding LLLT Laser.

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