Open type vapor electrode structure based on ion polar molecules and use method
Through the open gas electrode structure based on ion polar molecules, the atomization spray device and control module are used to achieve accurate treatment of the affected part, solving the problem of solid-state electrode disrupting the coordination of multiple treatment methods, and achieving the synergistic effect of multiple treatment methods.
Patent Information
- Application Number
- CN202510614875.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-13
- Publication Date
- 2025-08-12
AI Technical Summary
In existing electrotherapy treatments, the use of solid tangible physical electrodes in the affected part destroys the conditions for the simultaneous progress of other treatment methods, making it impossible to achieve the synergistic effect of multiple treatment methods.
An open gas electrode structure based on ion polar molecules is adopted, and a cold/hot gas is sprayed to the surface of the affected part through an atomization spray device to form a conductive liquid layer, and a control module output current for treatment. The electrode is arranged in a non-treatment area of the human body.
Accurate treatment of the affected area is achieved, excessive treatment and waste of drugs are avoided, and the synergy of electrotherapy, ion introduction and other treatment methods such as drug fumigation, acupuncture, cold therapy, thermal therapy, etc. can be carried out simultaneously.
Smart Images

Figure CN120459520A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of electrotherapy, and in particular to an open gas electrode structure based on ionic polar molecules and a method of use. Background Art
[0002] Electrotherapy is a medical procedure that uses electric current, electromagnetic waves, or other electrical principles to treat diseases, alleviate symptoms, or promote recovery. Its core principle is to regulate the physiological functions of human nerves, muscles, cells, or tissues through electrical stimulation.
[0003] Electrotherapy has the following effects:
[0004] Electrical stimulation:
[0005] Electric currents of varying frequencies and intensities are used to stimulate nerves or muscles, causing muscle contraction, relieving pain, or promoting blood circulation.
[0006] Direct current: dilates blood vessels and promotes local blood circulation.
[0007] Low-frequency current (such as TENS therapy): used to relieve pain and relieve muscle spasms.
[0008] Medium and high frequency current: promotes deep tissue repair and reduces inflammation.
[0009] Iontophoresis: The introduction of drug ions into the body through electric current (such as iontophoresis therapy) to enhance the local efficacy of the drug.
[0010] In existing electrotherapy, solid-state tangible electrodes are placed on the affected part, which destroys the conditions for treating the affected part simultaneously with other treatment methods. In the present invention, since there are no solid-state tangible electrodes on the affected part, while achieving electrotherapy and ion introduction, the affected part can be subjected to the synergistic effects of multiple treatment methods such as drug fumigation, acupuncture, cold therapy, heat therapy, and alternating hot and cold therapy. This is used to solve the technical problem that solid-state tangible electrodes destroy the conditions for treating the affected part simultaneously with other treatment methods. Therefore, the use of this open gas electrode structure based on ionic polar molecules and the use method is needed. Summary of the Invention
[0011] In view of the deficiencies of the prior art, the present invention provides an open gas electrode structure based on ionic polar molecules and a method of use, which solves the technical problems raised in the above background technology.
[0012] To achieve the above objectives, the present invention is implemented through the following technical solutions: an open gas electrode structure based on ionic polar molecules and a method of use, comprising:
[0013] at least two detachable electrodes configured to be attached to a non-treatment area of the human body;
[0014] Atomizing spray device, used to spray cold / hot gas containing electrolytes or ionic polar molecules onto the surface of the affected area;
[0015] The gas forms a conductive liquid layer at the affected area, which is electrically connected to the electrode 1 to form an open gas electrode; the control module can switch the output of DC, AC or pulse current, and control the gas temperature and injection mode.
[0016] Preferably, the electrode comprises a graphene PU conductive film, and an affected area auxiliary laminating component is installed at the lower end, which is made of flexible conductive hydrogel material and is attached to the lower wall surface of the graphene PU conductive film;
[0017] Preferably, the cold / hot gas temperature is respectively a safe operating temperature lower than or higher than the normal temperature of the human body.
[0018] Preferably, the atomized gas contains drug ion polar molecular components, achieving ion polar molecule introduction treatment.
[0019] Preferably, the detachable electrodes are electrode 1 and electrode 2.
[0020] Preferably, the steps are as follows:
[0021] A1: Electrode 1 and electrode 2 are fixed to the skin surface of the patient's non-treatment area, where the non-treatment area includes human skin tissue other than the affected area, and electrode 1 is placed near the affected area.
[0022] A2: Convert electrolyte solution or liquid medicine containing ionic polar molecules into atomized gas through piezoelectric, ultrasonic, gas, and pressure;
[0023] A3: Directly spray the atomized gas onto the surface of the affected area to form a continuously distributed conductive liquid layer;
[0024] The conductive liquid layer and the electrode 1 form a closed current loop through the patient's skin tissue;
[0025] A4: Output DC, AC or pulse current through the control module.
[0026] The control module can select to spray cold steam, spray hot steam, or spray cold and hot steam alternately.
[0027] Beneficial effects
[0028] The present invention provides an open vapor electrode structure based on ionic polar molecules and its use method. This invention utilizes cold / hot vapor to achieve this. Due to the fluidity of liquids, using existing liquids (water) to achieve cold therapy, heat therapy, and alternating cold and heat therapy is inconvenient and inconvenient to use. Furthermore, it fails to precisely treat the affected area, resulting in unnecessary overtreatment. If the liquid is a medicinal liquid, this can lead to unnecessary waste, and therefore this treatment method is rarely used. Because the cold / hot vapor used in the present invention sprays the affected area with directionality, it can conveniently and accurately deliver cold therapy, heat therapy, and alternating cold and heat therapy to the affected area. This eliminates the risk of overtreatment and drug waste, and using medicinal vapors can also save on medication compared to using medicinal liquids for cold / heat therapy. Existing electrotherapy requires a solid, tangible electrode placed on the affected area, which compromises the ability to simultaneously treat the affected area with other treatments. However, since the present invention lacks a solid, tangible electrode, the present invention allows for the synergistic effects of multiple treatments, such as drug fumigation, acupuncture, cold therapy, heat therapy, and alternating cold and heat therapy, to be performed simultaneously with electrotherapy and iontophoresis. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 This is a structural schematic diagram of an open gas electrode structure based on ionic polar molecules and its use method described in the present invention.
[0030] In the figure: 1, electrode 1; 2, electrode 2; 3, affected area; 4, open gas electrode; 5, the opposite side of electrode 1 and electrode 2. DETAILED DESCRIPTION
[0031] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0032] See also Figure 1 The present invention provides a technical solution: an open gas electrode structure based on ionic polar molecules and a method of use, comprising:
[0033] at least two detachable electrodes configured to be attached to a non-treatment area of the human body;
[0034] Atomizing spray device, used to spray cold / hot gas containing electrolytes or ionic polar molecules onto the surface of the affected area;
[0035] The gas forms a conductive liquid layer at the affected area, which is electrically connected to the electrode 1 to form an open gas electrode; the control module can switch the output of DC, AC or pulse current, and control the gas temperature and injection mode.
[0036] This embodiment is further configured such that the electrode comprises a graphene PU conductive film, and an affected area auxiliary laminating component is installed at the lower end thereof, which is made of a flexible conductive hydrogel material and is adhered to the lower wall surface of the graphene PU conductive film;
[0037] This embodiment is further configured such that the cold / hot gas temperature is respectively a safe operating temperature lower than or higher than the normal temperature of the human body.
[0038] This embodiment is further configured such that the atomized gas contains drug ion polar molecular components, thereby achieving ion polar molecule introduction therapy.
[0039] This embodiment is further configured such that the detachable electrodes are electrode 1 and electrode 2 .
[0040] This embodiment is further configured to have the steps as follows:
[0041] A1: Electrode 1 and electrode 2 are fixed to the skin surface of the patient's non-treatment area, where the non-treatment area includes human skin tissue other than the affected area, and electrode 1 is placed near the affected area.
[0042] A2: Convert electrolyte solution or liquid medicine containing ionic polar molecules into atomized gas through piezoelectric, ultrasonic, gas, and pressure;
[0043] A3: Directly spray the atomized gas onto the surface of the affected area to form a continuously distributed conductive liquid layer;
[0044] The conductive liquid layer and the electrode 1 form a closed current loop through the patient's skin tissue;
[0045] A4: Output DC, AC or pulse current through the control module.
[0046] The control module can select to spray cold steam, spray hot steam, or spray cold and hot steam alternately.
[0047] The detailed connection means are well-known technologies in this field. The following mainly introduces the working principle and process. The specific operations are as follows.
[0048] Example: Electrodes 1 and 2 are respectively fixed to the skin surface of a patient's non-treatment area, wherein the non-treatment area includes human skin tissue other than the affected area, and electrode 1 is placed near the periphery of the affected area. An electrolyte solution or a liquid containing ionic polar molecules is converted into an atomized vapor through piezoelectric, ultrasonic, airflow, pressure, or steam atomization. The atomized vapor is directionally sprayed onto the surface of the affected area to form a continuously distributed conductive liquid layer.
[0049] The conductive liquid layer and electrode 1 form a closed current loop through the patient's body tissue, electrode 2, and power supply;
[0050] Output DC, AC or pulse current through the control module.
[0051] The control module can choose to spray cold steam, hot steam, or alternately spray cold and hot steam.
[0052] It should be noted that, in this document, relational terms such as first and second, etc. are merely used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations.
Claims
1. An open gas electrode structure based on ionic polar molecules and a method of use, characterized in that: include: at least two detachable electrodes configured to be attached to a non-treatment area of the human body; Atomizing spray device, used to spray cold / hot gas containing electrolytes or ionic polar molecules onto the surface of the affected area; The gas forms a conductive liquid layer at the affected area, which is electrically connected to the electrode 1 to form an open gas electrode; the control module can switch the output of DC, AC or pulse current, and control the gas temperature and injection mode.
2. The open gas electrode structure based on ionic polar molecules and the method of use according to claim 1, characterized in that: The electrode includes a graphene PU conductive film, and an affected area auxiliary fitting component is installed at the lower end. The component is made of flexible conductive hydrogel material and is fitted on the lower wall of the graphene PU conductive film.
3. The open gas electrode structure based on ionic polar molecules and the method of use according to claim 1, characterized in that: The cold / hot gas temperatures are respectively safe operating temperatures that are lower or higher than normal human body temperature.
4. The open gas electrode structure based on ionic polar molecules and the method of use according to claim 1, characterized in that: The atomized gas contains drug ion polar molecular components, realizing ion polar molecular introduction treatment.
5. The open gas electrode structure based on ionic polar molecules and the method of use according to claim 1, characterized in that: The separable electrodes are electrode 1 and electrode 2.
6. The open gas electrode structure based on ionic polar molecules and the method of use according to claim 1, characterized in that: The steps are as follows: A1: Electrode 1 and electrode 2 are fixed to the skin surface of the patient's non-treatment area, where the non-treatment area includes human skin tissue other than the affected area, and electrode 1 is placed near the affected area. A2: Convert electrolyte solution or liquid medicine containing ionic polar molecules into atomized gas through piezoelectric, ultrasonic, gas, and pressure; A3: Directly spray the atomized gas onto the surface of the affected area to form a continuously distributed conductive liquid layer; The conductive liquid layer and the electrode 1 form a closed current loop through the patient's skin tissue; A4: Output DC, AC or pulse current through the control module. The control module can select to spray cold steam, spray hot steam, or spray cold and hot steam alternately.
Citation Information
Patent Citations
Neck massager
CN213347458U
Medicine physicotherapeutic electrode
CN2597007Y
A device for the administration of medication by iontopheresis for local - regional treatment.
EP0378132A2
Shower device for physiotherapy
JP2000217882A
Transdermal drug delivery system and method
US20010023330A1