CLINICAL AND PERSONAL ELECTROMAGNETIC STIMULATOR AND IONTOPHORESIS DEVICE FOR TREATING RETINA AND OPTICAL NERVE DISEASES
20230001223 · 2023-01-05
Assignee
Inventors
Cpc classification
A61N1/325
HUMAN NECESSITIES
International classification
Abstract
An electromagnetic stimulator and iontophoresis device used in treating retina and optical nerve diseases is provided. The electromagnetic stimulator and iontophoresis device enables to reach required threshold values for treating the retina and optical nerve diseases with magnetic fields to eliminate a thermal damage risk formed at a cellular level by cooling cages closed over electromagnetic coils, and allows usage by a patient alone at home, who has low vision, without receiving any professional help by an audio command guidance system including a speaker.
Claims
1. A stimulator and iontophoresis device used for treating retina and optical nerve diseases, comprising a cap comprising a front cap and a rear cap, wherein the front cap comprises an electromagnetic coil assembly comprising electromagnetic coils, wherein the electromagnetic coils create four electromagnetic fields at a vertex distance to eyeballs, and each of the electromagnetic coils is covered with a cooling cage, and the rear cap comprises the electromagnetic coil assembly comprising the electromagnetic coils, wherein the electromagnetic coils create the four electromagnetic fields stimulating an occipital cortex region and one electromagnetic field stimulating an inter-hemispheric region, and each of the electromagnetic coils is covered with the cooling cage, wherein the stimulator and iontophoresis device further comprises a cooling compressor connected with cooling pipes passing through a connection pipe connected with cooling cages inside the front cap and the rear cap and a gas perfluorocarbon tank, an electronic card and a processor having a counter, wherein the counter is provided on the processor, and the processor adjusts an intensity, a frequency and a time of each of the four electromagnetic fields created by the electromagnetic coils, an electronic control box having a speaker connected to the electronic card and processor.
2. The stimulator and iontophoresis device according to claim 1, comprising a connection rail located at sides of the front cap and the rear cap, wherein the connection rail is configured to connect the front cap and rear cap to each other and to extend or shorten a distance between the front cap and the rear cap.
3. The stimulator and iontophoresis device according to claim 1, wherein the front cap and the rear cap are made of non-inflammable, antibacterial, antistatic medical plastic, carbon fibre or any other kind of medical material.
4. The stimulator and iontophoresis device according to claim 1, wherein sections besides the electromagnetic coil assembly at inner surfaces of the front cap and the rear cap are covered with a smart sponge rubber.
5. The stimulator and iontophoresis device according to claim 4, wherein the smart sponge rubber is made of a medical, inflammable, biocompatible, antiallergic and antibacterial material.
6. The stimulator and iontophoresis device according to claim 1, wherein each of the electromagnetic coils is polygonal and located inside the electromagnetic coil assembly within the front cap and the rear cap, wherein the electromagnetic coils create 2000 milligauss electromagnetic field for 30 minutes at 42 hertz frequency.
7. The stimulator and iontophoresis device according to claim 1, wherein the cooling cage is located on each of electromagnetic coils and the cooling cage prevents a risk of a thermal damage occurring at cellular levels on the eyeballs.
8. The stimulator and iontophoresis device according to claim 1, wherein the cooling cage is a double layered impermeable hollow box made of fibreglass, carbon fibre or any other medical material.
9. The stimulator and iontophoresis device according to claim 1, the cooling cage comprises a cooling tank allowing a gas circulation in the cooling cage, and further comprises a gas outlet hole and a gas inlet hole allowing entrance and discharging of a cooling gas.
10. The stimulator and iontophoresis device according to claim 1, wherein the cooling pipes are connected to the cooling compressor and the gas perfluorocarbon tank is located in the electronic control box, and the cooling pipes are further connected to the cooling cage in the front cap and the rear cap to enable a recirculation between a cooling tank and the cooling compressor comprised in the cooling cage.
11. The stimulator and iontophoresis device according to claim 1, comprising a control panel located in the electronic control box, wherein the control panel enables to adjust the intensity, the frequency and the time and an active-passive state of the electromagnetic coils via USB or wireless connections and at a same time, and the control panel enables to adjust a cooling degree of a cooling gas in the cooling cages.
12. The stimulator and iontophoresis device according to claim 1, wherein the counter is located in the electronic control box, and the counter enables a doctor following up a patient to monitor a treatment compatibility of the patient and a frequency of usage of the stimulator and iontophoresis device by the patient.
13. The stimulator and iontophoresis device according to claim 1, comprising a speaker connected to the electronic card and the processor, wherein the speaker enables to guide a patient with audio commands in different languages.
14. The stimulator and iontophoresis device according to claim 6, comprising a LED indicator located on the electromagnetic coils, wherein the LED indicator allows to track active and passive electromagnetic coils.
15. The stimulator and iontophoresis device according to claim 6, comprising magnetic sensors located on the electromagnetic coils, wherein the magnetic sensors reflect a magnetic field created when the electromagnetic coils are active onto a screen comprised in the electronic control box and at a same time to determine if the electromagnetic coil assembly is at a correct symmetrical contact distance to a patient.
16. The stimulator and iontophoresis device according to claim 1, comprising a screen located on the electronic control box, wherein the screen reflects, via the counter, collected information, wherein the collected information is a magnetic field intensity of the electromagnetic coils, the frequency, the time and activation of the electromagnetic coils, number of usages, and activation information.
17. The stimulator and iontophoresis device according to claim 1, wherein the connection pipe is positioned between the cap and the electronic control box, and the connection pipe houses as a group, the stimulator and iontophoresis device further comprises electric cables leading to the electromagnetic coils and exiting out of the electronic control box and the cooling pipes between the cooling compressor and the cooling cage to be insulated and isolated.
18. The stimulator and iontophoresis device according to claim 1, comprising a power supply located inside the electronic control box, wherein the power supply is a battery-accumulator and/or adapter operating directly with an electricity network, wherein the power supply is connected to the electromagnetic coils via electric cables.
19. The stimulator and iontophoresis device according to claim 6, wherein the cooling cage is located on the electromagnetic coils, and the cooling cage prevents a risk of a thermal damage occurring at cellular levels on the eyeballs.
20. The stimulator and iontophoresis device according to claim 7, wherein the cooling cage is a double layered impermeable hollow box made of fibreglass, carbon fibre or any other medical material.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0025]
[0026]
[0027]
[0028]
[0029]
DESCRIPTION OF THE PART REFERENCE NUMBERS
[0030] 10. Cap [0031] 10a. Front Cap [0032] 10b. Rear Cap [0033] 11. Connection rail [0034] 12. Electromagnetic coil assembly [0035] 121. Electromagnetic coil [0036] 1211. LED indicator [0037] 1212. Magnetic field sensor [0038] 122. Cooling cage [0039] 1221. Cooling tank [0040] 1222. Gas inlet hole [0041] 1223. Gas outlet hole [0042] 123. Electric cable [0043] 124. Cooling pipe [0044] 13. Sponge rubber [0045] 20. Electronic control box [0046] 21. Electronic card and processor [0047] 211. Counter [0048] 22. Cooling compressor [0049] 23. Gas perfluorocarbon tank [0050] 24. Screen [0051] 25. Speaker [0052] 26. Control panel [0053] 27. Power Supply [0054] 28. On/off button [0055] 30. Connection pipe [0056] A. Stimulator and iontophoresis device
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0057] In this detailed description the preferred embodiments of the stimulator and iontophoresis device (A) subject to the invention has been described only in order to better explain the subject matter and such that it does not create any kind of limiting effect.
[0058] The general view of the stimulator and iontophoresis device (A) subject to the invention has been provided in
[0059] As it can be seen from
[0060] The cap (10) comprises a total of 9 electromagnetic coil assemblies (12) that are fixedly embedded in order to reach the required threshold values with very low magnetic fields to treat retina and optical nerve diseases.
[0061] The front cap (10a) comprises 4 electromagnetic coil assemblies (12) that create electromagnetic fields at the vertex distance to the eyeballs and the rear cap (10b) comprises a total of 5 electromagnetic coil assemblies (12) that are in contact with the scalp wherein 4 electromagnetic fields stimulate the occipital cortex region and 1 electromagnetic field stimulates the inter-hemispheric region.
[0062] The sections besides the electromagnetic coil assembly (12) at the inner surfaces of the front cap (10a) and the rear cap (10b) are covered with a smart medical sponge rubber (13) that is non-inflammable, biocompatible, antiallergic and antibacterial. Said smart sponge rubber (13) enables the electromagnetic coil assemblies (12) to remain in the correct position during usage.
[0063] The electromagnetic coil assembly (12) illustrated in
[0064] LED indicators (1211) and magnetic field sensors (1222) are provided on each of the electromagnetic coils (121). Therefore the tracking of active and passive electromagnetic coils (121) have been enabled. The magnetic field sensors (1222) enable the transmission of the magnetic field formed, when the electromagnetic coil (121) is active onto the screen (24) of the electronic control box (20). As a result when the stimulator device (A) is active, by which electromagnetic coil (121) the amount of magnetic field is created and if this field is correct or not can be tracked during the duration of the treatment process.
[0065] The electromagnetic coils (121) receive their power from the power supply (27) in the electronic control box (20) to which it is connected via electrical cables (123). Said power supply (27) can be an adapter and/or battery-accumulator that operates directly with the electric network. If the stimulator and iontophoresis device (A) is operated with electricity, the battery-accumulator steps in order not to delay the treatment time and the battery-accumulator percentage can be seen on the screen (27).
[0066] In order to prevent thermal damage risk at the cellular level that may be encountered due to electromagnetic coils (121), a cooling cage (122) has been covered over each electromagnetic coil (121). The cooling cages (122) are made of fibreglass, fibre carbon or any kind of other medical material, formed as two layered hollow impermeable boxes. Each cooling cage (122) has a cooling tank (1221) which allows gas circulation therein, and a gas outlet hole (1222) and a gas inlet hole (1223) allowing the entrance and discharging of the cooling gas. The cooling compressor (22) in the electronic control box (20) and the elastic cooling pipes (124) extending from the gas perfluorocarbon tank (23) pass through each cooling cage (122) and allow the gas to be pumped into the cooling tank (1221) via the gas inlet hole (1222). The cooling gas exiting out of the cooling tank (1221) via the gas outlet hole (1223) cools the next cooling tank (1221) and then returns to the cooling compressor (22) and the cooling tank (1221) by recirculation.
[0067] The electric cables (123) connected to the electromagnetic coils (121) have been isolated below the cooling cage (122) and the cooling pipes (124) used in the cooling process is isolated under sponge rubber (13). Although said electric cables (123) and cooling pipes (124) pass through the connection rails (11), they are formed as an accordion such that they can be extended or shortened. This ensures adjustment ease for each head diameter.
[0068] As it can be seen in
[0069] In the case that the doctor following up the patient desires to conduct changes in the parameters with an aim besides performing electromagnetic iontophoresis, the technical staff can adjust the magnetic field intensity, frequency and time and which electromagnetic coil (121) needs to be passive-active. This adjustment is carried out by USB or WIRELESS connections or a password entered via the control panel (26) located inside the electronic control box (20).
[0070] By means of the counter (211) located on the electronic card and processor (21), the usage frequency of the stimulator device (A) by the patient and compatibility with treatment can be monitored by the doctor that is following up the patient.
[0071] The cooling compressor (20) and the gas perfluorocarbon tank (23) in the electronic control box (20) step in as soon as the stimulator device (A) creates an electromagnetic field and the electromagnetic coils (121) are cooled during the operation of the stimulator device (A) via the cooling cages (122) with +4° C. gas perfluorocarbon circulation. This cooling degree can be changed via the control panel (26) by the technical staff following the request of the doctor. The patient cannot control the cooling system and its temperature.
[0072] The electronic control box (20) is configured with a speaker (25) connected to an electronic card and processor (21), wherein said speaker (25) enables to guide the patient with audio commands in order for the patient who has visual impairment to be able to use the stimulator and iontophoresis device (A) alone, safely, correctly and efficiently. Thereby the audio guidance of the patient is provided with the speaker (25) following the detection by the magnetic field sensors (1212) connected to the electronic card and processor (21) that determine if the front cap (10a) is at a vertex distance to the eyeball or not, and if the electromagnetic coil assemblies (12) at the rear cap (10b) are at the correct contact distance symmetrically to the occipital cortex and inter-hemispheric regions. At the same time the starting of the treatment, ending of the treatment and remaining time are vocally notified to the patient via the speaker (25). Additionally by means of the electronic card and processor (21) the patient with low vision can be guided with commands in different languages.
[0073] The required parameters of the stimulator and iontophoresis device (A) for therapy, is efficient with various setting adjustments and is suitable for safe usage in order to prevent incorrect usage.
[0074] The magnetic field intensity at the electromagnetic coils (121), frequency, time and the electromagnetic coil (121) that is active, number of usages, and activation information of the stimulator and iontophoresis device (A) are collected via the counter (211) and such information can be seen on the screen (24) that is included in the electronic control box (20).
[0075] The electric cables (123) leading to the electromagnetic coil (121) and exiting out of the electronic control box (20) and the cooling pipes (124) between the cooling compressor (22) and the cooling cage (122) are housed as a group inside the connection pipe (30) that is positioned between the cap (10) and the electronic control box (20) such that they are insulated and isolated.