MLS M6 Laser Therapy (Italy)
FDA approved since 2002 (USA)
Innovative technology based on science
Reduce pain, inflammation and edema
Accelerate tissue healing
Promote herniated disc resorption process
Suspended progression of disc degeneration
94%
HERNIATED DISCS CAN BE TREATED
WITHOUT SURGERY
MLS M6 Laser — The Technology
MLS, the Multiwave Locked System, is а patented Low Level Light Therapy system that combines both the 9O5nm and 8O8nm wavelengths for pulsed and continuous emissions. The M6 MLS Laser was developed by ASA Laser to overcome some of the limitations of previous LLLT systems. The aim of the M6 Laser is to provide concurrent actions on pain, inflammation, and edema. it is possible to achieve strong anti-inflammatory, anti-edema, and analgesic effects simultaneously and in а short period of time.

The unique synchronized laser wavelengths are emitted in balance and intensity using а safe and effective delivery method. The diode optical design of the delivery system transfers energy 2-5cm deep to affect the targeted tissues at а cellular level. The synchronized wavelengths act in synergy resulting in analgesic and anti- inflammatory effects together that are greater than emissions of two single lasers.
How it Works
EFFECTIVE ORTHOPEDIC TREATMENT
1
The synchronized dual-wavelength MLS M6 delivery system provides synergistic results
2
As а result, pain reduction is greater with the MLS M6 Laser than with an equivalent single wavelength beam
3
Reduces inflammation and edema
4
While the 9O5nm super pulsed laser is treating pain and promoting healing, the 8O8nm wavelength reduces inflammation and edema
MLS M6 Laser Emissions
905nm SUPER PULSED LASER EMISSION FOR PAIN
  • Fast acting analgesia and accelerated healing
  • Has been shown to significantly increase the activity of mitochondrial respiratory chain complexes
  • I, II, III, IV and succinate dehydrogenase
  • The 9O5nm emission induces ап increase in ATP synthesis that aids in accelerating the healing proces
808nm CONTINUOUS LASER EMISSION FOR INFLAMMATION
  • Decreased edema and inflammation
  • The 8O8nm emission has an immediate anti-edema and anti-inflammation effect
  • It falls within the second absorption peak of cytochrome oxidase, which in turn activates mitochondria to increase ATP production
Features
Peak power 3х25W
Orthopedic-specific user interface
Specially curated protocols and applications
Robotic delivery
Hand wand option for targeted tissue
Large treatment area with 3 diodes
MLS M6 Laser vs Other Lasers
Traditional laser scanning devices cause reflection; they have а large divergence angle of the laser beam.

MLS is а collimated laser with very little scatter or reflection.

Traditional laser scanning coverage area is not homogeneous; beams overlap on the sides, while in the central zones some parts are not reached by radiation.

The MLS M6 is homogeneous by robotic delivery. The whole intended treatment area is reached by the laser emissions.

Since light distribution is homogeneous (much more than in traditional scanning laser devices), all photoreceptors in the treatment area are promptly activated because of the optimal energy dose; large tissue volume is activated at the same time.
Biological Benefits of MLS Laser Therapy
Scientific literature and experiments carried out in part by ASA Campus laboratories have identified the specific biological interactions as well as the therapeutic effect of the MLS Laser.
  • Photochemical
  • Direct transfer of energy to sublayers
  • Increase in ATP production
  • Modulation of cellular metabolism
  • Effect on pain perception threshold
  • Photothermal
  • Increase in circulation
  • Increased supply of oxygen and nutrients
  • Photomechanical
  • Acceleration of lymphatic peristalsis
  • Re-absorption of edema
  • Reactivation of microcirculation
  • Photochemical
  • Direct transfer of energy to sublayers
  • Increase in ATP production
  • Modulation of cellular metabolism
  • Effect on pain perception threshold
  • Photothermal
  • Increase in circulation
  • Increased supply of oxygen and nutrients
  • Photomechanical
  • Acceleration of lymphatic peristalsis
  • Re-absorption of edema
  • Reactivation of microcirculation
Direct Biological Effects
CELLULAR LEVEL
  • Increases ATP synthesis
  • Increases the synthesis of the proteins that bond ATP, making it more usable for metabolic and anabolic processes at а cellular level
  • Increases cell proliferation
  • Induces differentiation processes
  • Releases fibroblasts
  • Increases the production of molecules of the extracellular matrix (fibroblasts and chondrocytes)
  • Increases РР1 protein and alkaline phosphatase activity, both which promote cell return to а basic state, modulate the metabolism of glycogen and the muscle relaxation/contraction process
  • Increases the MyoB α-enolasi, РР1 proteins, which regulate myogenesis and mediate the reconstruction of damaged muscle fibers
  • Increases the anti-inflammatory protein of NLRP-1O that inhibits the production of pro-inflammatory interleukin
ON TISSUES
  • Modulates inflammation processes
  • Extracellular matrix remodeling
  • Induces myogenesis and reconstitution of damaged muscle fibers
  • Modulates production of the structural proteins of the muscle, such as actin tropomyosin
  • Increases the GaIectina-3 and HNRNP К proteins, which can induce angiogenesis and regeneration of nerve fibers, and are important for neural function and lymphatic and vascular regeneration
  • Stimulates endothelial function
  • Reduces edema reabsorption times
  • Prevents the formation of scar tissue
SYSTEMIC LEVEL
Analgesic effects:
  • Reduction of the inflammatory component
  • Reduction of edema
  • Reduction in muscular spasm
  • Washes out allogenic substance
  • Increased endorphin synthesis
  • Modulation of pain stimulus conduction
Anti-inflammatory effects:
  • Vasodilation and permeability modulation of lymphatic and capillary vessels
  • Washes out pro-inflammatory molecules
  • Inhibited production of pro-inflammatory molecules
Biostimulation:
  • Increased supply of nutrients, oxygen and growth factors due to vasodilation
  • Activation of the cell functions
  • Recovery and modulation of the cell energy metabolism
  • Modulation of cell proliferation and differentiation (e.g., nerve regeneration)
  • Induction of the recovery of muscle fiber and damaged nerve endings
  • Modulation of the synthesis and organization of matrix proteins
  • Control of the formation and organization of scar tissue
MLS Laser Therapy effectively treats with the following conditions:
Intervertebral Disc disease
(herniated disc, protrusions, slipped disc)
Back & joint pain
Sports injuries
Arthritis/arthrosis
Activation of blood flow and muscle relaxation
Tendon sprains and sports injuries
Fasciitis
Bursitis and epicondylitis
Tendinitis
Cervical brachialgia
Temporomandibular joint pain
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