FIELD: medicine; medical engineering.
SUBSTANCE: method involves applying variable electromagnetic field excited by amplitude-modulated signal having carrier frequency in 100-1000 kHz bandwidth and modulating frequency in 10-8000 kHz bandwidth, and irradiation with low intensity quasi-monochromatic radiation of visible and proximal infrared wavelength bandwidth with small spectrum width. Two action elements are used when performing the treatment. The first one is vaginal action element having inductive transmitter of resonant type emitting electromagnetic oscillations with carrier frequency belonging to 100-1000 kHz bandwidth amplitude-modulated in 10-8000 kHz bandwidth and low intensity quasi-monochromatic radiation of visible and proximal infrared wavelength bandwidth with small spectrum width. The treatment is carried out concurrently and in continuous mode. The device has power supply source, sinusoid signal oscillator and vaginal action element having dielectric casing. The casing encloses inductive transmitter winding. The sinusoid signal oscillator has active oscillator with inductive transmitter winding being concurrently used as inductive element of oscillatory circuit of the active oscillator. Low frequency oscillator is additionally available. Its output is connected to active oscillator circuit via modulator. Control tract has in series connected amplitude detector, DC amplifier and indicating unit. An additional supracutaneous treatment element has active oscillator, inductive transmitter winding concurrently serving as active oscillator inductance element, modulator, which input is connected to low frequency oscillator output and its output is connected to active oscillator circuit. The control tract has in series connected amplitude detector, DC amplifier and indicating unit. M photodiodes are connected in series via timer and acoustic indication element.
EFFECT: enhanced effectiveness of treatment.
5 cl, 4 dwg
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Authors
Dates
2005-03-27—Published
2003-01-08—Filed