Handy Cure - Laser Therapy Device

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$795.00

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Quick Overview

Handy-Cure is a small, non-invasive hand held device that is especially designed for the home Healthcare market to relieve a wide range of symptoms and treat pain.

Handy Cure is a (LLLT) low level laser therapy invention that combines different energies:

1. Low level pulse laser radiation
2. Infrared radiation
3. Visible red light

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Treatment with Handy Cure accelerates the healing process of injured tissues,

encourages cell renewal and improves blood circulation.

 

The Handy-Cure will:

  • Relieve acute and chronic muscle pain
  • Improve blood microcirculation
  • Reduce inflammation

Handy Cure is a (LLLT) low level laser therapy invention that combines 4 different energies:

1. Low level pulse laser radiation
2. Infrared radiation
3. Visible red light
4. Static magnetic fields

Once these radiances are synergized they provide a therapeutic outcome. The Handy Cure is the only device that combines all these radiances and it is clinically proven to achieve an effective and quick pain relief in a short time?

Handy Cure accelerates inflamed tissue recovery, it promotes cells renewal that result in an improvement in micro-circulation.

Handy Cure treats cell tissue that has become inflamed; the cell tissue inflammation is caused by a low or reduced micro-circulation resulting a (Ischemic injury) restriction in blood supply to tissues, causing a shortage of oxygen and glucose needed for cellular metabolism (to keep tissue alive). Handy Cure is extremely effective in above situations. (Inflamed cell tissue)

Once the Ischemic state is being shortened the duration of the disease is shortened and the pain is reduced as well.

Once the compact device is turned ON it speeds up the recovery and relieves the pain, it reduces or prevents the need for painkillers or other medication.

The device can be operated continuously for up to 18 hours without recharging the battery. Operating the Handy Cure is simple, painless with no side effects.

The Handy Cure device is pre-set with 3 different programs to treat various pain conditions. Each program uses different pulse frequency that alters the laser's light depth of penetration.

The Handy Cure is being used widely by therapists, medical experts, fitness trainers, private costumers etc.…

The Handy Cure can be used by each member of the family for countless conditions.

You can start treatment right away, in the comfort of your home; there is no need to schedule an appointment, travel and pay expensive fees for each treatment.

Some of the Benefits:

Combines 4 different sources of energy // Non-invasive // At home pain relief // easy to use // No side effects // compact device // travels with you // 18 hour battery // Effective // Easy // Affordable // Pain-free // safe 


Typical conditions which are treated by Handy-Cure include:

  • Spinal diseases comprising early
  • Osteochondrosis
  • Scoliosis
  • Intervertebral disk hernia
  • Post-traumatic pain
  • Carriage disorders
  • Radiculitis
  • Ischialgia

Joint diseases such as:

  • Arthritis
  • Arthrosis
  • Coxarthrosis
  • Contractures
  • Myositis
  • Muscle and ligament strains

 

 

Dimensions:14 cm X 5 cm X 5 cm                   Weight: 300 gram

 

 

How Does LLLT Work?

Low level laser therapy has been shown to treat a wide range of disorders which, at first glance, have nothing or very little in common. To list a few examples, LLLT can accelerate wound and burn healing, reduce pain in different limbs all over the body, improve the condition of patients after a stroke, help in treatment of diabetic angiopathy, and reduce stiffness and inflammation.

The physiological effects of laser light at low intensity are not completely understood, but what is known from a biochemical model is often summarized in terms of three main effects:

  • Biostimulation / tissue regeneration
  • anti-inflammatory
  • analgesic

LLLT and ATP

One of the most important effects of LLLT is that it accelerates Adenosine triphosphate (ATP) production, by increasing metabolism at the cellular level, and enabling the ischemic cells in the damaged tissue to heal and to attain their normal functions.

ATP is an organic compound composed of adenine, the sugar ribose, and three phosphate groups. It captures chemical energy obtained from the breakdown of food molecules and releases it to fuel other cellular processes, serving as the major energy source within the cell to drive a number of important biological processes. ATP is present in every cell, and essentially all the physiological mechanisms that require energy for operation obtain it directly from stored ATP.

Cells require chemical energy for three general types of tasks: to drive metabolic reactions that would not occur automatically; to transport needed substances across membranes; and to do mechanical work, such as moving muscles. When energy is needed by the cell, it is converted from storage molecules into ATP. ATP then serves as a shuttle, delivering energy to places within the cell where energy-consuming activities are taking place.

Extracellular, ATP has been found to act as a neurotransmitter. ATP receptors are widespread through the body. On its own it is known to have effects in the arteries, intestines, lungs, and bladder. It is also often released in tandem with other neurotransmitters, perhaps to add chemical stability.

Additional Beneficial Effects of LLLT

Aside from increasing ATP production, LLLT has been shown to have a number of other important effects. At the tissue level, blood microcirculation increases during and after the treatment with LLLT, new blood and lymphatic vessels are formed, and collagen synthesis is enhanced. Improvement of blood microcirculation facilitates the recovery of oxygen levels in damaged cells, as well as normalization of the delivery of pharmacological preparations employed to treat a given disease. Reduced microcirculation leads directly to inflammation of cell tissue, which changes the quantity of blood supply to the cells, resulting in ischemic injury. Any influence that can shorten the duration of the ischemic state will have a beneficial effect on the course of the disease and the accompanying pain.

LLLT has shown to have a positive effect at both the cellular and tissue level for the treatment of disorders resulting from:

  • inhibited blood supply, leading to the development of acute or chronic tissue hypoxia
  • destruction of tissue at different levels
  • decreased regenerative abilities of cells
  • Altered cell metabolism.

Therapeutic and Synergetic Benefits of Additional Modalities

One of the key features which differentiates Medical Quant's products from other LLLT devices is that they combines low level laser with additional modalities to achieve synergic therapeutic effects.

Low-intensity radiation in the red and infrared spectral ranges induces prolonged photochemical processes, which play an important role in the achieving the clinical therapeutic effects of quantum therapy. The most prominent of these effects is improved blood micro-circulation, which further enhances the therapeutic effect of the LLLT. The biological effect is due to the vasodilation of small blood vessels, a decrease in the adhesive ability of blood cells, and formation of new micro vessels.

In addition, low-intensity radiation via red light has a positive influence on the quantity and quality of endogenous photosensitizers in blood plasma, leading to increased cell bactericidal activity. This is thought to assist in healing wounds and trophic ulcers, when normal, not excessive level of bactericidal activity helps to keep wounds and ulcers clean, thus speeding up the healing process.

Static magnetic therapy has been shown to have a beneficial effect on the body, although the mechanism by which this is achieved is not yet fully understood. Possible explanations for the beneficial effect of static magnetic therapy include:

  • Decreasing the firing rate of chronic pain neurons.
  • Changing the rate of enzyme mediated reactions, which may play a role in inflammatory cascades and free radical generation.
  • Modulating intracellular signaling by affecting the functioning of calcium channels in cell membranes.
  • Causing changes in blood flow

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