Stimulator

 

(57) Abstract:

The invention relates to medicine and can be used in the treatment of gynecological and proctological diseases in the case of inflammation, edema, poor circulation, effects of hypertrophy, as well as ophthalmic, dental and ENT diseases. The technical result that is achievable with the use of the invention is to improve blood circulation, reduce swelling, restore the conduction of the nerve tracts and treatment of inflammatory processes. The technical result is achieved by the fact that the stimulator, comprising a housing, a power source, the pulse generator, the electrodes located on the outer surface of the housing, and protecting the casing is mounted with conductive elements according to the invention, in case a permanent magnet is fixed for rotation, the drive and the unit of its power, with the plane of the poles of a magnet are oriented parallel to the axis of rotation. The power supply of the actuator may further comprise a synchronizer pulse power actuator systole pulse wave of the blood flow and sensor synchronization pulses. Generator the Fe generator with frequencies from 20 to 50 Hz and controls the amplitude and duration of each pulse, and in the secondary circuit in series with one of the electrodes placed the unit of measurement of charge. On the cover and the housing can be made tabs to enable measurement of the polarity of the electric pulse to the conductive elements of the conductive casing. 1 C. p. F.-ly, 2 Il.

The invention relates to medicine and can be used in the treatment of gynecological and proctological diseases in the case of inflammation, edema, hemodynamic phenomena hypertrophy, etc. as well as in the treatment of ophthalmic, dental and ENT diseases.

It is known device Vaginal stimulator for the management of urinary incontinence" (U.S. patent N 4785828). The stimulator contains the power supply, pulse generator, the electrodes located on the outer surface of the housing of the stimulator electrically connected to the generator output and protects the casing with integrated electroforesis elements for electrical connection of the electrodes with muscle tissues.

However, this device has the following disadvantages: it does not provide an effective improvement of metabolic processes, improves tissue oxygenation, and, shootski charge and to encourage the appropriate nerve tract frequencies relevant to its lability.

The objective of the invention is to develop devices that provide functional relationship with the patient and controlled by the magnitude of the electric effect.

The technical result that is achievable with the use of the invention is to improve blood circulation, reduce swelling, restore the conduction of the nerve tracts and treatment of inflammatory processes.

The technical result is achieved by the fact that the stimulator, comprising a housing, a power source, the pulse generator, the electrodes located on the outer surface of the housing, and safety cover with mounted conductive elements according to the invention, the housing is located a permanent magnet for rotation, the drive is connected to the power source, with the plane of the poles of a magnet are oriented parallel to the axis of rotation, and the stimulator further comprises a synchronizer pulse power actuator systole pulse wave of the blood flow and sensor synchronization pulses.

The pulse generator may be in the form of a pulse transformer, the primary circuit of which is placed Sepi in series with one of the electrodes placed the unit of measurement of the charge.

On the cover and the housing can be made of the latches to allow the polarity of the electrical pulses to the conductive elements of the protecting casing.

When implementing the invention at the time of stimulation, as shown by biophysical studies and clinical trials, a rotating magnetic field orientation of the poles perpendicular to the axis of rotation of the magnet improves oxygenation field stimulation due to the conformation of hemoglobin, increases the speed of the microcirculation by increasing the lumen of the trunk and especially the venous vessels. This is most effectively carried out in the presence of synchronism between the rotation of the magnetic field with the systolic pulse wave in the blood vessels in the area of stimulation. The actual rotation of the magnet allows a rotating magnetic field to interact with multidirectional vessels and, accordingly, differently oriented magnetic moments of the molecules of hemoglobin, i.e., increases the efficiency of interaction in comparison with the fields of the electromagnets or stationary permanent magnets.

This improves the redox processes more intensively carried out metabolic processes, reduce the s protective casing lower in the membranes of axons and vessels, the concentration of membrane-bound calcium, that is very important for violations conductivity of the nerve channels. At this time increases the viscosity of the lipid and membrane-bound calcium in the walls of blood vessels and the myelin sheaths of axons replaced on lipids and collagen, which provides in the nerve channels in the recovery of their conductivity and lability, and in the blood vessels increases the elasticity of the walls. The fact that increasing the concentration of negative charges in the area of stimulation (near the negative electrode) leads to decrease in pH, which contributes to the inhibition of inflammatory processes and faster tissue regeneration, and in areas with a high pH to decrease pain syndromes. In General, the change in pH when an electric impact changes the values of membrane potentials and significant changes in the metabolic processes at the cellular level. Synchronization of the electric and magnetic effects with the systolic pulse wave, as for any rhythmic effects (in this case with the pulsation of blood flow), these effects increases. The ability to set and define the input in patient charges allows you to personalize these impacts and to identify clinical effect, regardless of their size.

The invention is illustrated features of the P CLASS="ptx2">

The device includes a housing 1, are located on its outer surface electrodes 2 and 3, the permanent magnet 4 with the possibility of rotation, the actuator 5 for rotation of the magnet 4, the measurement unit charge 6 in the circuit electrodes 2 and 3, the pulse transformer 7, the SWEEP generator 8 with integrated regulator of the duration and amplitude of the pulse, the power source 9 of the actuator 5, the synchronizer 10 sensor 11 synchronization pulses, safety cover 12 with the latch 13 provisions of the fuse casing 12 and conductive elements 14.

The device operates as follows. Before you begin sterilized protective casing. At a known diagnosis determines the polarity of the conductive elements 14 with the clamp 13. The amplitude of the electrical pulse should be minimal, as well as its duration. In the area of stimulation, place the sensor 11, connect it to the synchronization unit 10, connect the power source 9 of the actuator 5 to the synchronizer 10 and the circuits located in the housing 1, and includes a power system device.

However, in accordance with signals received from the sensor 11,

synchronously rotates the magnet 4, and I is the mask amplitude SWEEP pulses control the SWEEP generator amplitude 8 comfortable, but is felt by the patient, and then increases the duration of pulses in a packet control duration, the built-in SWEEP generator 8 also while maintaining comfort, but if you are sensitive. The signals are in the form of a current packs through the measurement unit charge 6. As a result, after the electrodes 2 and 3 on the housing 1 and electrically conductive elements 14 from the fuse casing 12 are unipolar current pulses in the form of a SWEEP-pulse packet. Thus the amount of charge introduced into the region of stimulation, fixed or specified unit of measurement of charge 6. When implementing a given value of the charging device is turned off.

1. STIMULATOR, comprising a housing, a power source connected to the input of the pulse generator, the outputs of which are connected with electrodes placed on the outer surface of the housing, and electrically conductive elements mounted in a protective casing, wherein the casing is located a permanent magnet to rotate and the drive is connected to the power source, with the plane of the poles of a magnet are oriented parallel to the axis of rotation, and further comprises sequentially connected to the source PI="ptx2">

2. The stimulator under item 1, characterized in that the pulse generator is made in the form of a pulse transformer, the primary circuit which included a SWEEP generator with frequencies from 20 to 50 Hz, and embedded controllers amplitude and pulse width, and in the secondary circuit is enabled, the unit of measurement of charge, with the input of the pulse generator is the input of the SWEEP generator, and output the output measurement unit charge.

 

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2 ex

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