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low level laser treatment


What is low level laser treatment?

low level laser treatment

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low level laser treatment

low level laser treatment

low level laser treatment

low level laser treatment (LLLT) is a breakthrough tool in the management of painful musculoskeletal conditions. Also called low level laser treatment, LLLT is a light therapy based treatment for conditions such as neck pain, back pain, tendinopathies, sprains and strains.

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Every cell in the body has a light sensor in the mitochondria (the power house of the cell). These light sensors can be stimulated by the correct wavelength and frequency of light emitted by the laser. The laser stimulates deep and saturates the tissues. Specifically, it stimulates the light receptors deep in the mitochondria. This phenomenon draws out inflammation and stimulates anti-inflammatory effects. Inflammation in the body brings pain. Therefore, decreasing inflammation can help in reducing pain levels and accelerating the healing process.

laser The low level laser treatment used in our clinic, as well as many others, is different from a cauterizing, or hot laser. There are hot lasers used for surgical purposes that will actually burn through tissue. However, the low level laser treatment used in physical medicine settings is absolutely painless. If you couldn’t see the laser emitting bursts of light, you wouldn’t even know that it was on. You cannot feel the effects of the light penetrating deep into the tissues.

These lasers have been deemed efficacious for conditions such as acute neck pain, back pain, tendinopathies such as “tennis elbow”, “golf elbow”, plantar fasciopathy (or plantar fasciitis), ankle sprains, arthritis and arthrosis, disc degeneration and disc bulge. Most professional sports teams employ the use of LLLT on the sidelines. They are oftentimes used as the first line of defence against inflammation due to injured tissues on the field. It is a great conservative tool, without side effects, to utilize before contemplating orthopaedic surgery for things such as frozen shoulder, disc herniation, sciatica and nerve impingements.

Different wavelengths, frequencies and times stimulate different tissues at different depths of the body. It is necessary to choose the correct parameters for the laser to adequately encourage healing of the correct tissue. Even though most practitioners use low level laser treatment as a tool to quicken healing in musculoskeletal pathologies, that is only the beginning of what it can do. In fact, the skin is actually the most light sensitive part of the body. Therefore, many skin lesions can be treated with laser, such as wounds, fungal and bacterial skin infections and rashes.

New research is even emerging that some brain inflammation may be quelled by low-level laser therapy. Meaning that brain based inflammatory conditions such as depression, anxiety, ADHD, Alzheimer’s, and many more may be mitigated by drawing out the inflammation in the brain through laser therapy. Research is just on the cusp of truly understanding the full potential of LLLT and light therapy.

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What’s the Difference Between low level laser treatment and LED Light Therapy?

For many years, the healthcare industry has used low level laser treatment for several applications. Healthcare professionals use lasers for a multitude of applications, including wound care, plaque ablation, the reduction of pain and inflammation and even cancer treatment. More recently, light-emitting diodes (LEDs) have become popular for many of the same applications. From minimizing post-operative pain to reducing edema to stimulating the healing of otherwise non-healing wounds, LEDs have irrefutable therapeutic benefits.

Still, there are notable differences between laser and LED light therapy, and each has its pros, cons and ideal applications in the physical therapy and rehab setting. If you’re trying to decide which option to use in your clinic or hospital, keep the following facts and research in mind.
Mechanisms of Action

LASER, which stands for Light Amplification by Stimulated Emission of Radiation, is created when electrons become “excited,” or more energized, after absorbing energy from an electrical current. Once these excited electrons return to their normal state, they release that energy as particles of light called photons. These photons all exist at the same wavelength, and they are propelled in the same direction, giving them the coherence that allows lasers to exert significant effects on matter.

In clinical practice, low level laser treatment (LLT) therapy involves exposing tissues to red and near infrared (NI) light, which are lower in energy than the lasers used in surgery. When lasers come into contact with cells, they act on the mitochondria to increase adenosine triphosphate (ATP) production. In turn, that increased ATP production can lead to faster production of collagen, vascular structures, DNA, RNA and other materials essential to the healing process.

In contrast, LEDs emit incoherent light in a broader range of wavelengths. Their power output is significantly lower than that of lasers, which tends to make them less invasive and less potentially harmful to targeted tissues. Still, they exert the same end effect on ATP production and healing as lasers, albeit to a different degree.
The Results

Both laser and LED therapies have significant bodies of evidence backing their efficacy. For instance, one of the first uses of LLT was in the treatment of carpal tunnel syndrome, where it has proven effective in reducing pain and improving grip strength in mild to moderate cases. It has also shown promise in the treatment of chronic pain and a variety of sports injuries, and it may even have applications in neurorehabilitation.

Likewise, LEDs have clear benefits for wound care, burns and skin conditions, and the treatment of muscle damage and inflammation. For therapists who work with active populations, LEDs can even enhance muscles’ contractile ability and post-exercise recovery—a significant performance benefit for hard-training athletes.
The Right Choice for Your Clinic

Ultimately, your best choice of light therapy will come down to your specific patient population, desired applications and budget. That said, there are combination devices that allow you alternate between LED and LLT, as well as ultrasound and other modalities, with the flip of a switch.

What low level laser treatment Advantages Over Other Modes of Therapy?

low level laser treatment has been found to offer superior healing and pain relieving effects compared to other electrotherapeutic modalities, especially in the early stages of acute injuries, and for chronic problems. Low-level lasers can also be used for Acupuncture Point stimulation.

low level laser treatment is a universal method of treating muscle, tendon, ligament, connective tissue, bone and skin tissue with one simple piece of equipment, however, excellent results are also achieved when it is used to complement other treatment modalities, such as ice for acute injuries, or shockwave for more chronic conditions.

The portability and diversity of battery and mains-powered diode laser systems allows treatment to be carried out in clinical, hospital, and field locations. This opens up possibilities for the immediate and therefore more effective treatment of sporting and athletic injuries, such as muscle tears, haematomas, and tendinopathies.

This applies equally to the veterinary use of LLLT, which has applications in both large and small animal physiotherapy for both performance and companion animals. It is especially popular in the treatment of competition horses, racing greyhounds and agility dogs.

It is an attractive form of treatment for both human and animal athletes, especially those involved in professional sports, due to the prospect of shorter recovery and lay-off times. Importantly for athletes, laser therapy is a non-invasive, drug-free modality that can be applied on competition day without risking disqualification by drug-vetting tests.

What is low level laser treatment used for?

low level laser treatment is used to increase the speed, quality and tensile strength of tissue repair, resolve inflammation, and give pain relief.

It is an attractive form of treatment for animal athletes, due to the prospect of shorter recovery and lay-off times.

The portability of battery-powered diode laser systems enables treatment to be carried out in the barn, the trailer, or in the field, allowing the immediate and therefore more effective treatment of equine sports injuries, such as muscle tears, haematomas, and tendinopathies.

 

 


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