Magnetic therapy in orthopedics .

In phospholipid domain areas biomembranes magnetic fields significantly change the permeability of the lipid biosloya and secondary structure of the peripheral membrane proteins that perform regulatory and signaling function . This leads to the activation of metabolic enzymes and improving activity of the cells. Use of magnetic fields to cause the driving of conductive media (blood, lymph) , magnetohydrodynamic generation of forces , which leads to additional movement of the stream of free charges (ions ) , thereby increasing speed of chemical reactions. These phenomena are accompanied by the emergence of mechanical vibrations in the impact zone . Because of these changes is significantly reduced blood clotting and increases the likelihood of participation by the formed elements in chemical reactions. Enhanced convection processes in the cells , moving fluids , activates the cell metabolism. Occurring due to the action of magnetic fields of low frequency mechanical vibrations contribute to the emergence of piezoelectric effects in bone tissue, which , in turn , is the tread mechanism of immobilization osteoporosis. The magnetic field substantially reduces the rate of lipid peroxidation , which leads to activation of the trophic processes in organs and tissues , elimination of infiltration and accelerated tissue regeneration. Relaxing the smooth muscle of peripheral vessels , improving the rheological and colloidal properties of blood , magnetic fields cause an increase in the outflow of fluid from the organs and tissues exposed to exert anti-edema and anti-hypertensive effect . Induced with electrical currents are capable of blocking afferent impulses of pain hearth type gating unit , which is another mechanism for the analgesic effect . Magnetic field is turned on and in the vegetative fibers ( trophic effect) , causes a reduction in skeletal muscle ( neyrostimuliruyuschy effect) , sedative , calming and thermal effects. Under the influence of magnetic fields is an activation of the local blood flow , improve microcirculation and transcapillary exchange , an increase in blood supply to organs and tissues , a reduction in the inflammatory process. Stimulated with magnetic therapy proliferative processes in cellular and fibrous bone elements promote faster healing of fractures. Reduced stiffness, pain, swelling, an increase range of motion in the joints.

 

Osteoporosis – a group of metabolic skeletal disease characterized by low bone mass and impaired microarchitecture of bone tissue, leading to an increase in its fragility and increased risk of fracture . According to WHO , osteoporosis is today one of the major diseases of lifestyle . Under the influence of magnetic fields is the activation of local blood flow , improve microcirculation and transcapillary exchange , increase blood supply to organs and tissues , a reduction in the inflammatory process. Stimulated with magnetic therapy proliferative processes in cellular and fibrous elements contribute to the strengthening of bone and bone fractures heal faster . Trophic, neyromiostimuliruyuschy , kostnomodeliruyuschy effects of low-frequency magnetic fields make it possible to effectively implement the prevention and treatment of osteoporosis , actively influencing the processes of bone mineralization .

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