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low level laser therapy device Here’s a Quick Way to know


What is low level laser therapy device?

 

What is low level laser therapy device LLLT?-low level laser therapy device LLLT (Low Level Laser Therapy) is the application of red and near infra-red light over injuries or lesions to improve wound and soft tissue healing, reduce inflammation and give relief for both acute and chronic pain. First developed in 1967, it is now commonly referred to as low level laser therapy device LLLT.

low level laser therapy device LLLT is used to: increase the speed, quality and tensile strength of tissue repair; resolve inflammation and relieve pain (analgesia).

The red and near infrared light (600nm-1000nm) commonly used in low level laser therapy device LLLT can be produced by laser or high intensity LEDs. The intensity of low level laser therapy device LLLT lasers and LED’s is not high like a surgical laser. There is no heating effect.

The effects of low level laser therapy device LLLT are photochemical (like photosynthesis in plants). When the correct intensity and treatment times are used, red and near infrared light reduces oxidative stress and increases ATP. This improves cell metabolism and reduce inflammation. These effects can be enhanced with pulses however when analgesia is required there is a second mechanism which works best when a strong continuous beam is applied.

low level laser therapy device LLLT devices are typically delivering 10mW – 500mW (0.01 -> 0.01 Watts). The power density typically ranges from 0.005W/Cm² -> 5 W/Cm².

low level laser therapy device LLLT is popularly used for soft tissue injuries, joint conditions, neuropathic pain, non-healing leg and pressure ulcers.

NEWS The Lancet publishes landmark review of low level laser therapy device LLLT for neck pain read more and listen to interview here
Introduction to low level laser therapy device LLLT Video

Introduction to low level laser therapy device LLLT and dose response by Prof. Michael Hamblin, Wellman Centre for Photomedicine, Harvard Medical School
Source: International Dose Response Society

Download ‘low level laser therapy device LLLT dose review (PDF)’
This paper from Harvard Medical School reviews the low level laser therapy device LLLT mechanisms and the biphasic dose response. It summarises the molecular and cellular mechanisms of low level laser therapy device LLLT, gives a scientific explanation for the biphasic dose response (why a low dose has a stimulatory effect and why a high dose inhibits). Low power densities tend to get better healing and anti-inflammatory effects where higher power densities are more likely to inhibit (which may be useful if you just want an analgesic effect). I have to disclose an interest in this paper because I am a co-author. James Carroll CEO THOR Photomedicine.

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How low level laser therapy device work?

How does LLLT work?-mitochondriaLow Level Laser Therapy (LLLT) has a photochemical effect (like photosynthesis in plants). One of the main mechanisms of action occurs in the mitochondria (the cellular power plant inside every cell). The effect depend on the application of the correct wavelength and density of light, delivered to the target tissues for an appropriate period of time (typically between 30 – 60 seconds). Pulses can improve tissue repair and anti-inflammatory effect, analgesia is best achieved with a continuous beam.

TISSUE REPAIR AND ANTI-INFLAMMATORY EFFECTS

The primary effect occurs when light is absorbed in cytochrome c oxidase a protein within the mitochondria.

When cells get stressed (perhaps due to disease, injury or ageing) the mitochondria produces nitric oxide (NO). This competitively displaces oxygen from cytochrome c oxidase consequently reducing ATP (an essential intracellular cellular energy and extracellular signalling molecule) and causing an over production reactive oxygen species (ROS) and leading to oxidative stress. Oxidative stress is well known to lead to inflammation an cell death via the gene transcription factor NF-Kb.

Low Level Laser Therapy (LLLT) of the correct wavelength and density, dissociates NO allowing oxygen back in, so ATP is restored and oxidative stress reduced. Once normal mitochondrial function is restored by LLLT then cell metabolism is improves, and the patient gets better more quickly.

The effects of LLLT are photochemical(cold), not thermal. During treatment of the tissue with the 635nm laser, an interaction between cells and photons takes place: a photochemical reaction. Photons from the laser affect the tissue at the cellular level. The cold laser enters the tissue, alters cell membrane permeability, and at the cellular level is absorbed in the mitochondria. The mitochondria are the “powerhouse” of cells and make ATP which is needed for the life enhancement process of every cell which facilitates:The effects of LLLT are photochemical(cold), not thermal. During treatment of the tissue with the 635nm laser, an interaction between cells and photons takes place: a photochemical reaction. Photons from the laser affect the tissue at the cellular level. The cold laser enters the tissue, alters cell membrane permeability, and at the cellular level is absorbed in the mitochondria. The mitochondria are the “powerhouse” of cells and make ATP which is needed for the life enhancement process of every cell which facilitates:

– rapid cell growth. The laser accelerates cellular reproduction and growth.
– faster wound healing. The laser stimulates fibroblast development in the damaged tissue. The reduction in recovery time is an important consideration
– increased metabolic activity. Helps the body increase output of specific enzymes, greater oxygen to blood cells and more effective immune reponse are induced by laser
– reduced fibrous tissue formation. The laser reduces formation of scar tissue following tissue damage from cuts, scratches, burns, or following surgery
– anti-inflammatory action. The laser reduces swelling caused by bruising or inflammtion of joints to give improved joint mobility.
– increased vascular activity. The laser stimulates lymph and blood circulation, to allow the affected tissue to have the best possible circulation
– stimulate nerve function. Slow recovery of nerve function in damaged tissue can result in “dead” limb or numb areas. Laser will speed the process of nerve cell reconnection to bring the numb area back to life. Laser also increases the amplitude of action potentials to optimize muscle action.

Who use the low level laser therapy device?

Who need Islow level laser therapy device LLLT Right for You? Who should NOT getlow level laser therapy device LLLT?

Any provider should go over the benefits, risks, and alternatives tolow level laser therapy device LLLT. 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.

Laser therapy 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.
Laser therapy 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.
Laser therapy 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.
Laser therapy 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.
Laser therapy should not be used for a period of time after certain intra-articular (joint) injections.

If you are curious aboutlow level laser therapy device LLLT to help with a condition, my best advice would be to schedule a consultation with a provider. low level laser therapy device LLLT 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 uselow level laser therapy device LLLT 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 decidinglow level laser therapy device LLLT.

What is low level laser therapy Contraindications?

Cold laser therapy should not be used over any suspicious cancerous lesions, or carcinoma, over the thyroid, on pregnant patients, and there should not be direct irradiation of the eyes, as the laser can cause permanent damage to the eyes.

Pregnant women are recommended not to undergo the procedure, since its effects on unborn children are not yet known. The doctor and the patient should use protective eyeglasses so that there is no direct eye exposure.


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