FIELD: medicine; physiotherapy.
SUBSTANCE: influence is performed in two sequential steps. The first one concludes in simultaneous influence of high-frequency electromagnet field formed by sinusoidal signal with frequency of f1, with amplitude-modulated low-frequency signal with permanently changing frequency within 50-8000 Hz and visible red and nearer IR-red range radiation. The second step is based upon influence of high-frequency electromagnet field formed by sinusoidal signal with frequency f2=1,32f1 simultaneouslywith influence of amplitude-modulated low-frequency signal with permanently changing frequency within 50-8000 Hz and with visible yellow and green range radiation. During influence the labile method is applied: irradiator moves slowly above the area of pathology at speed of 1cv/s and lower. To realize the method the physiotherapeutic device is used which has power source, low-frequency signal source and influence element. The latter has light-emitting module with N light-emitting diodes and self-contained generator, and active radiator fixed against the base of the circuit of self-contained generator. Circuit formed by capacitor connected in series with two-positioned two-contact key, is connected in parallel to outputs of capacitor of self-contained generator. Device is additionally provided with control section which has amplitude detector connected in series with dc amplifier and indicator/light-emitting diode. Low frequency signal source is made in form of generator with frequency permanently changing within 50-8000 Hz range. The source additionally has P light-emitting diodes, each of which has base onto which M light-emitting diodes. Casing of influence element is made for mounting and removal of light-emitting module. Casing has additional split dielectric handle faste4ned to casing. Dielectric circuit with circuit elements is installed inside the handle. Device has P+1 removable light-emitting modules. Any module has base onto which M light-emitting diodes of one, two or three sorts are fixed.
EFFECT: improved efficiency of treatment.
4 cl, 3 dwg
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Authors
Dates
2005-09-20—Published
2003-06-11—Filed