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low level laser light therapy

What is low level laser light therapy?

low level laser light therapy

What is MLS low level laser light therapy LLLT?-MLS low level laser light therapy LLLT is a non-invasive pain management technique that uses low-level low level laser light therapy LLLT to reduce pain and inflammation. It is most commonly used for pain related to arthritis or sciatica. It’s been used in Europe for pain management for decades, and has recently been used in veterinary care.

MLS therapy is also sometimes referred to as cold low level laser light therapy LLLT (but only when utilized as specified below). MLS low level laser light therapy LLLT is creating much discussion in the pain treatment community, but without much evidence of efficacy beyond the anecdotal. Multiwave lock system (MLS) low level laser light therapy LLLT uses two therapeutic wavelengths – 808 nanometer (anti-edemic and anti-inflammatory) and 905 nanometer (analgesic) – to reach deeper into tissues and nerves that are affected by pain and inflammation.

According to Dr. Jean Santo, a pain management specialist and anesthesiologist, these synchronized wavelengths cause a metabolic reaction in the cells that stimulates healing and pain relief. In general, all low level laser light therapy LLLT treatments work in essentially the same manner, according to doctor of chiropractic Dr. Phil Harrington, who trained at Palmer College of Chiropractic:

“By stimulating the cytochrome oxidase enzyme, we are utilizing that oxygen in the respiratory chain inside of the mitochondria, producing more ATP for that cell. So regardless of what kind of cell it is, it’s going to function at a higher level. Now, we are not turbocharging. We’re not making your body do anything that it could not normally do. We’re just facilitating the process. We are helping those cells produce the energy that they normally would, so they can function as they normally should.”

Lasers are, essentially, helping the cell to complete a natural process that has, for some reason, stalled or slowed. The following video, from the producers of the technology, gives a great overview of this treatment option.

Low level low level laser light therapy LLLT, also known as phototherapy or cold laser, uses low intensity lasers and light emitting diodes (LEDs) at the infrared and visible red wavelengths to relieve pain and reduce inflammation caused by damaged tissue.

Low level low level laser light therapy LLLT (LLLT) is not a newly-discovered treatment. It was pioneered in the 1960s and there are thousands of published studies documenting its effects in a range of medical and veterinary applications. Health professionals around the world use low level low level laser light therapy LLLT to treat patients suffering from a range of pain conditions.
Low Level low level laser light therapy LLLT can assist to relieve muscle and joint pain
speed healing
reduce swelling
promote relaxation of muscles to alleviate spasms
improve functionality and mobility
relieve stiffness

low level laser light therapy

The low level laser light particles, known as photons, penetrate into the tissue through the skin to a specific depth depending on the wavelength. Typically, low level laser devices use 600nm-1000nm (visible red-infrared) wavelengths.

Unlike surgical lasers, the intensity of low level laser is not high enough to produce heat, so it cannot burn or heat the skin.

The Handy Pulse Laser is an LLLT laser which combines low-level pulse laser infrared radiation, pulsating LED infrared radiation, visible LED red light, and a static magnetic field.

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How low level laser light therapy work?

How low level laser light therapy LLLT Works?-There are three phases of hair growth: the anagen phase, which is the growth stage; the catagen stage, which is the transition stage where hair follicles begin to shrink; and the telogen phase, where hair follicles become dormant and shed. The stimulation from low level laser light therapy LLLT helps to shift hair follicles into the anagen phase (and therefore restore hair growth), in multiple ways.

low level laser light therapy LLLT, in the right wavelengths, penetrates into the tissue eliciting photochemical and photo-biological responses. The effect takes place within the mitochondria; the organelle (part of the cell) responsible for producing ATP. When light is absorbed it causes a build-up of single oxygen molecules that accelerate the formation of ATP (adenosine triphosphate), the cells’ energy and fuel source, to 10 times the average rate. Increased ATP production leads to a secondary cascade or reactions: increasing immune response, accelerating the healing process and reducing pain.

low level laser light therapy LLLT uses a light that produces a specific wavelength (typically in the range of 630 to 670 nanometers) which has a unique ability to be absorbed by the molecules of the hair follicles. This type of light penetrates the scalp and stimulates the epidermal stem cells which are responsible for the regeneration of hair follicles. The increased blood flow that low level laser light therapy LLLT causes helps to increase the delivery of nutrients and oxygen to the hair follicles. low level laser light therapy LLLT stimulates metabolic processes necessary for hair growth and helps to prevent the build-up of DHT in the follicles.

low level laser light therapy

How low level laser light therapy LLLT to the treatment of pain?

Acute orthopedic conditions such as sprains , strains, post-surgical pain, a whiplash injury , muscular back pain, cervical or lumbar radiculopathy, tendinitis and chronic conditions such as osteoarthritis , rheumatoid arthritis, frozen shoulder, neck and back pain, epicondylitis, carpal tunnel syndrome, tendinopathy, fibromyalgia, plantar fasciitis, post tibial fracture surgery and chronic regional pain syndrome are amenable to low level laser light therapy LLLT. Dental conditions producing pain such as orthodontic procedures, dentine hypersensitivity, and third molar surgery respond well to treatment with low level laser light therapy LLLT. Neuropathic pain conditions can also be treated such as post herpetic neuralgia, trigeminal neuralgia , and diabetic neuropathy. Due to the wide spectrum of conditions one would surmise that multiple mechanisms can operate to achieve pain relief.

The peripheral nerve endings of nociceptors, consisting of the thinly myelinated A∂ and unmyelinated, slow-conducting C fibers, lie within the epidermis. This complex network transduces noxious stimuli into action potentials. Moreover these nerve endings are very superficial in nature and thus are easily within the penetration depths of the wavelengths used in low level laser light therapy LLLT. The cell bodies of neurons lie within the dorsal nerve root ganglion, but the elongated cytoplasm (axons) of the neurons extends from the cell body to the bare nerve endings in the surface of the skin. The direct effect of low level laser light therapy LLLT are initially at the level of the epidermal neural network, but the effects move to nerves in subcutaneous tissues, sympathetic ganglia, and the neuromuscular junctions within muscles and nerve trunks.

low level laser light therapy LLLT applied with a sufficient level of intensity causes an inhibition of action potentials where there is an approximately 30% neural blockade within 10 to 20 minutes of application, and which is reversed within about 24 hours . The laser application to a peripheral nerve does have a cascade effect whereby there is suppressed synaptic activity in second order neurons so that cortical areas of the pain matrix would not be activated.

low level laser light therapy

Adenosine triphosphate (ATP) is the source of energy for all cells, and in neurons this ATP is synthesized by mitochondria while they are located in the dorsal root ganglion. These mitochondria are then transported along the cytoskeleton of the nerve by a monorail system of molecular motors. low level laser light therapy LLLT acts like an anesthetic agent, in that both low level laser light therapy LLLT and anesthetics have been shown to temporally disrupt the cytoskeleton for a matter of hours as evidenced by formation of reversible varicosities or beading along the axons, which in turn cause mitochondria to “pile up” where the cytoskeleton is disrupted. The exact mechanism for this effect is unknown but it is not a thermal action. It has been shown that low level laser light therapy LLLT at the correct dose decreases mitochondrial membrane potential (MMP) in DRG neurons and that ATP production is then reduced so perhaps the lack of ATP could be cause of this neural blockade. The most immediate effect of nociceptor blockade is pain relief which occurs in a few minutes and has been shown by the timed onset of a conduction blockade in somatosensory-evoked potentials (SSEPs). This inhibition of peripheral sensitization not only lowers the activation threshold of nerves but also decreases the release of pro inflammatory neuropeptides (i.e. substance P and CGRP). In persistent pain disorders this reduction of tonic input to activated nociceptors and their synaptic connections, leads to a long-term down-regulation of second-order neurons. The modulation of neurotransmitters is a further possible mechanism of pain relief, as serotonin and endorphin levels have been shown to increase in animal models and following laser treatment of myofascial pain in patients [81]. Thus low level laser light therapy LLLT can have short, medium and long term effects. Fast acting pain relief occurs within minutes of application, which is a result of a neural blockade of the peripheral and sympathetic nerves and the release of neuromuscular contractions leading to in a reduction of muscle spasms.

In the medium term there is a decrease of local edema and a reduction of inflammation within hours to days. The action of low level laser light therapy LLLT in reducing swelling and inflammation has been well established in animal models as well as in clinical trials. The numbers of inflammatory cells has been shown to be reduced in joints injected with protease, in collagen-induced rheumatoid arthritis, and in acute pulmonary inflammation . The expression levels of pro-inflammatory cytokines have been shown to be reduced by low level laser light therapy LLLT in burn wounds, in muscle cryo lesions and in delayed type hypersensitivity. The long term effects of low level laser light therapy LLLT occur within a week or two and can last for months and sometimes years as a result of improved tissue healing.

Why low level laser light therapy?

The Erchonia laser has been found to offer superior healing and pain relieving effects. The results seem equally untouchable for early stages of acute injuries, and for chronic problems. LLLT is a universal method of treating mucles, ligament, tendon, connective tissue, bone, neurological dysfunction or damage and skin tissue. When the laser is applied with chiropractic care the best results are achieved to organize the nervous system and promote healing. Erchonia laser therapy is a major advantage for athletes due to the neurological applications and extremely fast results that can be achieved.

low level laser light therapy LLLT is a non-invasive procedure, meaning that it does not require a surgical incision. This means that there is no prolonged recovery time.

Laser therapy also does not involve taking any medications, and many patients prefer to avoid taking medications. Studies have so far found that low level laser light therapy LLLT does not have serious side effects when used properly by a doctor.

low level laser light therapy

How many time low level laser light therapy LLLT are Needed?

The frequency and number of treatments depend on the conditions being treated.

Each individual will respond differently as low level laser works on the cells processes for the effect. Low level laser is suitable immediately before and after surgical procedures.

Who and where low level laser light therapy?

low level laser light therapy LLLT, also known as low level laser therapy, LLLT and therapeutic laser therapy is a treatment that uses a low-powered laser, that does not produce heat to treat conditions and injuries in animals of all kinds – dogs, cats, domestic pets, cows, horses and even humans.

low level laser light therapy LLLT is used to treat multiple ailments and injuries and is also beneficial to pets recovering from surgery. The treatment is particularly useful for animals that have a painful condition or injury. Treatable ailments include:

Joint, ligament or tendon injuries
Muscle sprains or strains
Skin lesions including wounds
Hematomas (swelling of blood in body tissue)
Post-trauma wounds
Post-surgical wounds
Nerve injury

low level laser light therapy

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