Puncture-free hemorrhoid electrolysis therapeutic apparatus and use method thereof
Through the use of microcurrent contact with the bottom mucosa of the hemorrhoids without puncture, the existing hemorrhoid treatment methods are solved by using a puncture-free hemorrhoid electrolytic therapy device, which is not effective, inconvenient and safe, and achieves painless, fast and safe hemorrhoid treatment effects.
Patent Information
- Application Number
- CN202510272790.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2045-03-10
AI Technical Summary
The existing hemorrhoid treatment methods have problems such as bleeding and abnormal elevation of blood copper.
The puncture-free hemorrhoid electrolysis treatment device is used to contact the bottom mucosa of the hemorrhoid through microcurrents, dissolve the water in the hemorrhoid blood vessel cells, form a thrombus, causing the hemorrhoids to naturally shrink and be absorbed by the body.
No need to puncture hemorrhoids and their supporting tissues, reduce pain and bleeding, improve treatment safety, facilitate use, and fast treatment.
Smart Images

Figure CN120053051A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of electrolytic treatment devices, and specifically, to a non-puncture hemorrhoid electrolytic treatment instrument and its usage method. Background Art
[0002] In the prior art, the treatment of hemorrhoids is based on the theory of the withered hemorrhoid therapy theory, and a method combining physical and chemical therapies is adopted. A copper electrode is punctured into the hemorrhoids and their supporting tissues. Through the combined action of copper ions and electrochemistry, the blood flow is slowed down and gradually coagulated, and microthrombi formed by foreign bodies and electric current in the blood vessels, and the epithelial cells of the blood vessel wall are edematous, resulting in aseptic inflammation, tissue organization, blood vessel occlusion to reduce blood supply, and promoting fibrosis of the surrounding tissues, so as to achieve the elimination of hemorrhagic lesions in the submucosal blood vessels, atrophy and occlusion of the hemorrhoid nucleus, and reduction in the number of varicose blood vessels. Relying on the combined action of physics, chemistry, and biology, the purpose of treating hemorrhoids is quickly achieved.
[0003] However, the method of puncturing a copper electrode into the hemorrhoids and their supporting tissues in the above prior art has the following problems: (1) The effect is not fast, and dressing change is required after the operation, and the degree of shrinkage of the hemorrhoids cannot be immediately checked.
[0004] (2) It is inconvenient to use and treat. After the treatment is completed, the patient cannot go to work and needs postoperative rehabilitation.
[0005] (3) There are certain safety problems, such as the risk of hemorrhoids bleeding during and after the operation, and problems such as abnormal increase in blood copper caused by copper ions entering the systemic circulation. Summary of the Invention
[0006] In the first aspect of the present application, a non-puncture hemorrhoid electrolytic treatment instrument is proposed. When treating hemorrhoids, it is not necessary to puncture the hemorrhoids and their supporting tissues. A microcurrent is used to contact the bottom mucosa of the hemorrhoids for electrolytic reaction, forming thrombi in the hemorrhoid blood vessels, causing them to atrophy naturally due to lack of nutrients and be absorbed by the human body. It is applicable to people suffering from internal hemorrhoids. The main feature is that no puncture of the hemorrhoids is required during the treatment process, no anesthesia is required, which can reduce the pain and bleeding of the patient during the treatment process, improve the safety of the treatment, and is convenient to use and the treatment is fast.
[0007] Therefore, in the first aspect of the present application, a non-puncture hemorrhoid electrolytic treatment instrument is provided, including a power supply for providing converted electrical energy to the present treatment instrument; a control handle electrically connected to the power supply, with a control display system provided at its end for grasping and controlling the magnitude of the current output; a treatment soft pad electrically connected to the power supply, covered with a medical gauze on it, placed under the thigh at the load-bearing end of the patient, and the thigh skin is in full contact with the medical gauze added with physiological saline to form an electric current loop; a non-puncture detection and expansion probe mechanism installed on the control handle for tissue examination of the anal area and non-puncture contact with the hemorrhoid area to output a microcurrent.
[0008] By adopting the above technical solution: during the treatment process, there is no need to puncture the hemorrhoids and their supporting tissues. Microcurrent is used to contact the mucosa at the bottom of the hemorrhoids, dissolving the water in the hemorrhoidal vascular cells and turning them into hydrogen ions (H + ) and hydroxide (OH - ), hydrogen ions are converted into hydrogen (H 2 ) is released in the form of foam. Hydroxide creates a strong alkaline environment inside the hemorrhoids, causing protein denaturation. As a result, blood clots form in the hemorrhoidal blood vessels. It also causes chemical burns to the blood vessels, causing the hemorrhoids to lose nutrients and naturally shrink before being absorbed by the body.
[0009] After the operator adjusts the current output through the control handle, the input circuit transmits the signal to the control module, and the control module transmits the signal to the digital tube display and indicator light display circuit; at the same time, the digital signal is transmitted to the D / A conversion circuit, which converts the digital signal into a voltage signal, and then transmits it to the power amplifier circuit, the current output circuit, the maximum current limiting circuit and the connector, and finally transmits it to the treatment pad connected to the human body and the puncture-free detection expansion probe mechanism to form a loop, thereby performing electrolysis treatment.
[0010] The control handle in the present application includes a gripping portion and a mounting portion arranged at the front end of the gripping portion, the gripping portion is used for grasping during use, the mounting portion is provided with a joystick for adjusting the output current, the control display system is arranged on the upper side of the mounting portion, the mounting portion is provided with a through hole, the lower portion of the mounting portion is provided with a cylinder connected to the through hole, the puncture-free detection expansion probe mechanism is installed inside the through hole and the cylinder, and can be packaged separately during production, that is, the control handle and the puncture-free detection expansion probe mechanism are packaged separately, and of course, they can also be assembled as a whole. Optionally, the puncture-free detection expansion probe mechanism includes a probe assembly, the probe assembly is connected to the through hole via a connecting assembly, and also includes a detection assembly arranged at the end of the probe assembly. By adopting the above technical solution: the probe assembly is used to control the handle to connect and conduct electricity, and its end is located at the bottom mucosa to release microcurrent when in use; the detection assembly is used to detect the hemorrhoids and determine their shape before treatment, so as to facilitate the adjustment of the probe assembly to make it located at the bottom mucosa.
[0011] Optionally, the probe assembly includes a probe tube, a probe rod is passed through the interior of the probe tube, an elastic electrode sheet is provided at the front end of the probe rod, or two platinum probes are provided at the front end of the probe rod, and the top ends of the two platinum probes are not flush.
[0012] By adopting the above technical solution: The probe tube is used to connect with the through hole. The probe rod has electrical conductivity. By setting the elastic electrode sheet, after determining the position of the bottom mucosa, pushing the probe rod can cause the elastic electrode sheet to unfold and make contact with the bottom in a wrapping manner, with a larger contact area, which can shorten the treatment time and improve the treatment effect.
[0013] Optionally, the connection component includes a conductive elastic sheet arranged in the through hole, a conductive frustum is arranged outside the probe tube, the conductive frustum is in contact connection with the probe rod, a spring is arranged at the connection between the through hole and the cylinder body, and an annular platform for abutting against the spring is arranged on the probe tube.
[0014] By adopting the above technical solution: When installing the probe tube, push the probe tube into the through hole. After the conductive frustum on it contacts the conductive elastic sheet, continue to push the probe tube. The conductive frustum compresses the conductive elastic sheet and passes through its position. The spring will be compressed during the process of passing through the conductive elastic sheet. When the conductive frustum passes through the conductive elastic sheet, the conductive elastic sheet resets. Then, under the reset force of the spring, the probe tube slightly returns to position, so that the conductive frustum makes contact with the conductive elastic sheet. One is to conduct electricity, and the other is to fix the probe tube.
[0015] Optionally, the detection component includes an anoscope rotatably connected to the lower end of the cylinder body.
[0016] By adopting the above technical solution: It is convenient to detect the type and position of hemorrhoids, determine the position of the bottom mucosa, and then it is convenient to make the probe rod and the elastic electrode sheet close to or attached to the bottom mucosa for electrolytic treatment without puncturing the hemorrhoids and their supporting tissues.
[0017] Optionally, the cylinder body, the probe tube and the probe rod are all inside the opening groove of the anoscope, and a camera is arranged at the end of the probe rod.
[0018] By adopting the above technical solution: It can prevent damage to hemorrhoid tissues during detection, and the morphology of the hemorrhoids and the entire non-puncturing electrolytic treatment process can be clearly seen through the camera.
[0019] Optionally, the maximum DC current output of the control handle is 20 mA; the error range of the output current: ±2 mA.
[0020] Optionally, the magnitude of the current output is adjustable in ten grades from 10% to 100%.
[0021] By adopting the above technical solution: The magnitude of the current can be adjusted according to the morphology of the hemorrhoids, which is convenient for electrolytic treatment.
[0022] In the second aspect of the present application, a use method of the above non-puncturing hemorrhoid electrolytic treatment instrument is provided, including the following steps: S1. Connect the treatment cushion to the connecting wire. Cover a medical gauze on the treatment cushion, and then add 0.9% normal saline to the medical gauze until the medical gauze is in a saturated state. S2. Install the non-puncture detection and expansion probe mechanism inside the through hole and the cylinder body. S3. Hold the control handle, insert the anoscope on the cylinder body into the anus to check the status of hemorrhoids, and determine the treatment position. S4. Rotate the probe rod so that the end of the probe rod is at the bottom mucosa of the connected blood vessel supplying nutrients to the hemorrhoids. Push the probe rod to make the elastic electrode piece at its end break away from the probe tube to achieve expansion, and cover it on the bottom mucosa without piercing the hemorrhoids and related supporting tissues. S5. Toggle the joystick to control the magnitude of the output current and perform non-puncture electrolytic treatment on the bottom mucosa.
[0023] The above usage method is simple and fast for treating hemorrhoids, eliminates piercing of the hemorrhoids and their supporting tissues, and improves the safety of treatment.
[0024] The working principle and beneficial effects of this application are as follows: 1. During the treatment process, there is no need to pierce the hemorrhoids and their supporting tissues. A microcurrent is used to contact the bottom mucosa of the hemorrhoids, dissolve the water in the hemorrhoid blood vessel cells, and turn them into hydrogen ions (H + ), and hydroxide ions (OH - ). The hydrogen ions are converted into hydrogen (H 2 ), which is released in the form of foam. The hydroxide ions make the inside of the hemorrhoids form a strongly alkaline environment, resulting in protein denaturation. Therefore, thrombus is formed in the hemorrhoid blood vessels, and chemical cauterization is also caused to the blood vessels, causing the hemorrhoids to atrophy naturally due to lack of nutrients and be absorbed by the body. There is no need to pierce the hemorrhoids during the whole treatment process, and no anesthesia is required, which can reduce the pain and bleeding of the patient during the treatment process, improve the safety of treatment, and is convenient to use and fast in treatment.
[0025] 2. In this application, the probe tube is used to connect to the through hole. The probe rod has electrical conductivity. By setting the elastic electrode piece, after determining the position of the bottom mucosa, the elastic electrode piece can be unfolded by pushing the probe rod, and it contacts the bottom in a wrapping manner, with a larger contact area, which can shorten the treatment time and improve the treatment effect.
[0026] 3. When installing the probe tube in this application, the probe tube is pushed into the through hole. After the conductive conical platform on it touches the conductive elastic sheet, the probe tube is continuously pushed. The conductive conical platform compresses the conductive elastic sheet and passes through its position. During the process of passing through the conductive elastic sheet, the spring is compressed. When the conductive conical platform passes through the conductive elastic sheet, the conductive elastic sheet resets. Then, under the reset force of the spring, the probe tube returns slightly, making the conductive conical platform contact the conductive elastic sheet. One is to conduct electricity, and the other is to fix the probe tube.
[0027] 4. The detection component in this application facilitates the detection of the type and location of hemorrhoids, determines the position of the bottom mucosa, and then facilitates bringing the probe rod and the elastic electrode sheet close to or attaching to the bottom mucosa for electrolytic treatment without puncturing the hemorrhoids and their supporting tissues.
[0028] 5. The control handle in this application can adjust the magnitude of the current according to the shape of the hemorrhoids, facilitating electrolytic treatment. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] The following further elaborates on this application in detail in conjunction with the drawings and specific embodiments.
[0030] Figure 1 It is a schematic diagram of the overall composition of an embodiment of this application; Figure 2 It is a schematic diagram of the structure of the control handle and the non-puncturing detection and expansion probe mechanism of an embodiment of this application; Figure 3 For an embodiment of this application Figure 1 The enlarged structure schematic diagram at A in it; Figure 4 For an embodiment of this application Figure 1 The enlarged structure schematic diagram at B in it; Figure 5 It is a schematic diagram of the structure of the therapeutic cushion cooperating with the human body during use in an embodiment of this application; Figure 6 It is a schematic diagram of the structure of the affected area direction indication in an embodiment of this application; Figure 7 It is a schematic diagram of the contact orientation structure between the probe rod and the hemorrhoid in an embodiment of this application; Figure 8 It is a partial top view structure schematic diagram of the installation part in an embodiment of this application; Figure 9 It is a schematic diagram of the circuit structure in an embodiment of this application; Figure 10 It is a schematic diagram of the end structure of the probe rod in another embodiment of this application.
[0031] The reference numerals are as follows: 100. Power supply; 200. Control handle; 210. Holding part; 220. Mounting part; 230. Joystick; 240. Through hole; 250. Cylinder; 300. Control and display system; 400. Treatment cushion; 500. Non-puncture detection and expansion probe mechanism; 510. Probe tube; 520. Probe rod; 521. Platinum probe; 530. Elastic electrode sheet; 540. Conductive elastic sheet; 550. Conductive cone; 560. Spring; 570. Ring platform; 580. Anoscope; 590. Camera. Detailed implementation mode
[0032] The following will describe clearly and completely the technical solutions in the embodiments of the present invention in conjunction with the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts fall within the scope of protection of the present invention.
[0033] Embodiment 1 As Figures 1-9 shown, in the first aspect of this embodiment, a non-puncture hemorrhoid electrolysis treatment instrument is provided, including a power supply 100 for providing converted electrical energy to this treatment instrument; a control handle 200 electrically connected to the power supply 100, and a control and display system 300 is provided at its end for grasping and controlling the magnitude of current output; a treatment cushion 400: electrically connected to the power supply 100, with a medical gauze covering it, placed under the thigh at the load-bearing end of the patient, and the thigh skin is in full contact with the medical gauze added with physiological saline to form an electric current loop; a non-puncture detection and expansion probe mechanism 500 installed on the control handle 200 for tissue examination of the anal part and non-puncture contact with the hemorrhoid part to output a microcurrent.
[0034] The basic principle of this embodiment is as follows: During use, there is no need to puncture the hemorrhoids and their supporting tissues. A microcurrent is used to contact the bottom mucosa of the hemorrhoids, dissolve the water in the hemorrhoid vascular cells into hydrogen ions (H+) and hydroxide ions (OH-), and the hydrogen ions are converted into hydrogen (H2) and released in the form of foam. The hydroxide ions make the inside of the hemorrhoids form a strongly alkaline environment, resulting in protein denaturation. Therefore, thrombus is formed in the hemorrhoid blood vessels, and chemical burning is also caused to the blood vessels, causing the hemorrhoids to lose nutrients and atrophy naturally and be absorbed by the body.
[0035] As Figure 9As shown, the circuit principle of this embodiment is as follows: after the operator adjusts the current output by controlling the handle 200, the input circuit transmits the signal to the control module, and the control module transmits the signal to the digital tube display and indicator light display circuit; at the same time, the digital signal is transmitted to the D / A conversion circuit, thereby converting the digital signal into a voltage signal, and then transmitted to the power amplifier circuit, the current output circuit, the maximum current limiting circuit and the connector, and finally transmitted to the treatment cushion 400 connected to the human body and the puncture-free detection expansion probe mechanism 500, so as to form a loop, thereby performing electrolysis treatment.
[0036] The control handle 200 in the present application includes a gripping portion 210 and a mounting portion 220 arranged at the front end of the gripping portion 210, the gripping portion 210 is used for grasping during use, and the mounting portion 220 is provided with a joystick 230 for adjusting the output current, the control display system 300 is arranged on the upper side of the mounting portion 220, the mounting portion 220 is provided with a through hole 240, and the lower part of the mounting portion 220 is provided with a cylinder 250 connected to the through hole 240, and the puncture-free detection expansion probe mechanism 500 is installed inside the through hole 240 and the cylinder 250, and can be packaged separately during production, that is, the control handle 200 and the puncture-free detection expansion probe mechanism 500 are packaged separately, and of course, they can also be assembled as a whole. The puncture-free detection expansion probe mechanism 500 includes a probe assembly, which is connected to the through hole 240 via a connecting assembly, and also includes a detection assembly arranged at the end of the probe assembly. The probe assembly is used to control the handle 200 to connect and conduct electricity, and its end is located at the bottom mucosa to release microcurrent when in use. The detection assembly is used to detect hemorrhoids and determine their shape before treatment, so as to facilitate adjustment of the probe assembly to make it located at the bottom mucosa.
[0037] Specifically, the probe assembly in this embodiment includes a probe tube 510, a probe rod 520 is passed through the inside of the probe tube 510, and an elastic electrode sheet 530 is provided at the front end of the probe rod 520. The probe tube 510 is used to connect with the through hole 240. The probe rod 520 has conductive properties. By setting the elastic electrode sheet 530, after determining the position of the bottom mucosa, the elastic electrode sheet 530 can be unfolded by pushing the probe rod 520, and contact with the bottom in a wrapping manner, so that the contact area is larger, which can shorten the treatment time and improve the treatment effect.
[0038] The connecting component therein includes a conductive elastic sheet 540 disposed within the through hole 240. A conductive frustum 550 is provided on the exterior of the probe tube 510. The inner side of the conductive frustum 550 is in contact connection with the probe rod 520. A spring 560 is provided at the connection between the through hole 240 and the cylinder body 250. An annular platform 570 for abutting against the spring 560 is provided on the probe tube 510. When installing the probe tube 510, the probe tube 510 is pushed into the interior of the through hole 240. After the conductive frustum 550 thereon comes into contact with the conductive elastic sheet 540, the probe tube 510 is continuously pushed. The conductive frustum 550 compresses the conductive elastic sheet 540 and passes through its position. During the process of passing through the conductive elastic sheet 540, the spring 560 will be compressed. When the conductive frustum 550 passes through the conductive elastic sheet 540, the conductive elastic sheet 540 resets. Then, under the reset acting force of the spring 560, the probe tube 510 slightly returns, causing the conductive frustum 550 to come into contact with the conductive elastic sheet 540. One is for conducting electricity, and the other is for fixing the probe tube 510.
[0039] The detection component therein includes an anoscope 580 rotatably connected to the lower end of the cylinder body 250, which is convenient for detecting the type and position of hemorrhoids and determining the position of the bottom mucosa. Then, it is convenient to bring the probe rod 520 and the elastic electrode sheet 530 close to or attach to the bottom mucosa for electrolytic treatment without puncturing the hemorrhoids and their supporting tissues.
[0040] Specifically, in this embodiment, the cylinder body 250, the probe tube 510, and the probe rod 520 are all within the opening groove of the anoscope 580. A camera 590 is provided at the end of the probe rod 520 to prevent damage to the hemorrhoid tissue during detection. Through the camera 590, the morphology of the hemorrhoids and the entire non-puncturing electrolytic treatment process can be clearly seen.
[0041] In this embodiment, the maximum DC current output of the control handle 200 is 20 mA; the error range of the output current is ±2 mA. The output current size ranges from 10% to 100% and is adjustable in ten grades, and the current size can be adjusted according to the morphology of the hemorrhoids to facilitate electrolytic treatment.
[0042] In the second aspect of the present application, a method for using the above non-puncturing hemorrhoid electrolytic treatment instrument is provided, including the following steps: S1. Connect the treatment cushion 400 to the connecting wire. Cover a medical gauze on the treatment cushion 400, and then add 0.9% normal saline to the medical gauze until the medical gauze is in a saturated state; then, ask the patient to lie on the bed comfortably on their side, place the treatment cushion 400 under the thigh of the patient's load-bearing end, and ensure that the patient's thigh skin is in direct contact with the surface of the medical gauze soaked with normal saline, as Figure 5 shown.
[0043] S2. Install the non-puncture detection expansion probe mechanism 500 inside the through hole 240 and the cylinder body 250; S3. Hold the control handle 200 and insert the anoscope 580 on the cylinder body 250 into the anus to check the hemorrhoid condition and determine the treatment position. Observe the hemorrhoid affected area from the anoscope 580. If the hemorrhoids are presented at the (9 o'clock) and (3 o'clock) positions, refer to Figure 6 , and at this time, place the control handle 200 vertically: If the hemorrhoids are presented at the (12 o'clock) and (6 o'clock) positions, then place the control handle 200 horizontally.
[0044] S4. Rotate the probe rod 520 so that the end of the probe rod 520 is at the bottom mucosa of the blood vessel supplying nutrients to the hemorrhoids, and ensure that the probe end is placed on the hemorrhoid tissue above the anal dentate line. Refer to Figure 7 , push the probe rod 520 to make the elastic electrode sheet 530 at its end disengage from the probe tube 510 to achieve expansion, and cover it on the bottom mucosa without piercing the hemorrhoids and related supporting tissues; S5. Toggle the joystick 230 to control the magnitude of the output current and perform non-puncture electrolytic treatment on the bottom mucosa.
[0045] Specifically, press the button of the joystick 230 to start timing. The timer starts from 1 second and goes up to a maximum of 99 minutes and 59 seconds, with an error of ±5%. Note that at this time, the instrument will not output any current.
[0046] Refer to Figure 8 , if you want to output current, toggle the right button of the joystick 230. Each time you toggle it, one LED grating will light up, and at the same time, it represents that the output current increases by 10%, up to 100% at most.
[0047] If you want to decrease the output current, toggle the left button of the joystick 230. Each time you toggle it, one LED grating will go out, and at the same time, it represents that the output current decreases by 10%, down to 0 at least.
[0048] The treatment time depends on the hemorrhoid grade and the patient's tolerance. During the treatment process, the affected area will change color, and there will occasionally be a slight popping sound, which indicates that hydrogen is being released, and this is a normal situation.
[0049] The following several methods can determine the end of the treatment course: a) When the color of the affected area has darkened; b) When the slight popping sound has stopped.
[0050] When the entire treatment course is completed, toggle the downward joystick 230 to stop the current output, and then separate the probe from the affected area.
[0051] Generally, a follow-up visit and examination of the affected area is required 10 to 14 days after the treatment. If the hemorrhoidal area improves after treatment but is still not completely resolved, additional treatment may be performed.
[0052] The above method of use is simple and quick for treating hemorrhoids, avoids puncturing hemorrhoids and their supporting tissues, and improves the safety of treatment.
[0053] Example 2 Reference Figure 10 The difference between this embodiment and embodiment 1 is that two platinum probes 521 are provided at the front end of the probe rod 520. The top ends of the two platinum probes 521 are not flush and have a height distance difference d. For example, the height difference between the two platinum probes is 1.5 cm. This can ensure the maximum contact area. Platinum has no biological toxicity, good biocompatibility and good conductivity.
[0054] The following is a detailed description of typical cases: The subjects were all patients with internal hemorrhoid bleeding or mixed hemorrhoid bleeding who came to the hospital and were diagnosed by anoscopy 580.
[0055] 1. Patient Dong, female, 36 years old, number of hemorrhoids: 1, hemorrhoid grade: grade III; diagnosis: mixed hemorrhoids (including grade III internal hemorrhoids), previous medication: none; first treatment current selection: 4mA, the current was not changed, hemorrhoid condition after treatment: hemorrhoids became smaller or partially atrophied to less than 40% of the pre-treatment, no adverse events, no complications, no device defects, no concomitant medication. 2. Patient Cui, male, 70 years old, number of hemorrhoids: 1, hemorrhoid grade: grade III; diagnosis: mixed hemorrhoids (including grade III internal hemorrhoids), previous medication: none; first treatment current selection: 8mA, the current was not changed, hemorrhoid condition after treatment: the hemorrhoids became smaller or partially atrophied to less than 40% of the pre-treatment size, no adverse events, no complications, no device defects, no concomitant medication, follow-up visit after treatment to re-evaluate the hemorrhoid condition: bleeding, prolapse, pain and itching caused by hemorrhoids were effectively controlled, and the incidence rate was extremely low.
[0056] 3. Patient Hao, female, 45 years old, diagnosis: mixed hemorrhoids (including third-grade internal hemorrhoids), previous medications: (South) Diosmin Tablets, 0.9 g, oral, twice a day, Compound Schizonepeta fumigation wash 10 g, sitz bath, twice a day; first treatment current selection: 20 mA, no current change, hemorrhoid condition after treatment: hemorrhoids became smaller or partially atrophied to less than 40% of the pre-treatment size, no adverse events, no complications, no device defects, no concomitant medications. The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. A puncture-free hemorrhoid electrolysis treatment device, characterized in that: include: A power supply (100) for providing converted electrical energy to the therapeutic apparatus; A control handle (200) is electrically connected to the power source (100), and a control display system (300) is provided at an end thereof for grasping and controlling the magnitude of current output; The therapeutic cushion (400) is electrically connected to the power source (100), is covered with medical gauze, and is placed under the thigh of the patient at the weight-bearing end, so that the thigh skin is in full contact with the medical gauze with physiological saline added, forming a current loop; The puncture-free detection expansion probe mechanism (500) is mounted on the control handle (200) and is used for tissue inspection of the anus and contacting the hemorrhoid area without puncture to output microcurrent.
2. The puncture-free hemorrhoid electrolysis treatment device according to claim 1, characterized in that: The control handle (200) comprises a gripping portion (210) and a mounting portion (220) arranged at the front end of the gripping portion (210); a joystick (230) is arranged on the mounting portion (220); the control display system (300) is arranged on the upper side of the mounting portion (220); a through hole (240) is arranged on the mounting portion (220); a barrel (250) communicating with the through hole (240) is arranged at the lower portion of the mounting portion (220); and the puncture-free detection expansion probe mechanism (500) is installed inside the through hole (240) and the barrel (250).
3. The puncture-free hemorrhoid electrolysis treatment device according to claim 2, characterized in that: The puncture-free detection expansion probe mechanism (500) comprises a probe assembly, the probe assembly being connected to the through hole (240) via a connecting assembly, and also comprises a detection assembly arranged at the end of the probe assembly.
4. The puncture-free hemorrhoid electrolysis treatment device according to claim 3, characterized in that: The probe assembly comprises a probe tube (510), a probe rod (520) is inserted into the probe tube (510), and a resilient electrode sheet (530) is provided at the front end of the probe rod (520); Or two platinum probes (521) are provided at the front end of the probe rod (520), and the top ends of the two platinum probes (521) are not flush.
5. The puncture-free hemorrhoid electrolysis treatment device according to claim 4, characterized in that: The connection assembly comprises a conductive elastic sheet (540) arranged in a through hole (240); a conductive truncated platform (550) is arranged outside the probe tube (510); the conductive truncated platform (550) is in contact with the probe rod (520); a spring (560) is arranged at the connection between the through hole (240) and the cylinder (250); and an annular platform (570) for supporting the spring (560) is arranged on the probe tube (510).
6. The puncture-free hemorrhoid electrolysis treatment device according to claim 5, characterized in that: The detection assembly comprises an anoscope (580) rotatably connected to the lower end of the barrel (250).
7. The puncture-free hemorrhoid electrolysis treatment device according to claim 6, characterized in that: The cylinder (250), the probe tube (510) and the probe rod (520) are all located inside the opening slot of the anoscope (580), and a camera (590) is provided at the end of the probe rod (520).
8. The puncture-free hemorrhoid electrolysis treatment device according to claim 2, characterized in that: The control handle (200) has a maximum DC current output of 20 mA; the error range of the output current is ±2 mA.
9. The puncture-free hemorrhoid electrolysis treatment device according to claim 8, characterized in that: The current output is adjustable from 10% to 100% in ten levels.
10. A method for using the puncture-free hemorrhoid electrolysis therapeutic device according to claim 6, characterized in that: The following steps are involved: S1. Connect the treatment cushion (400) to the connection line of the power supply (100), cover the treatment cushion (400) with a medical gauze, and then add 0.9% saline to the medical gauze until the medical gauze is saturated; S2, installing the puncture-free detection expansion probe mechanism (500) inside the through hole (240) and the cylinder (250); S3, holding the control handle (200), inserting the anoscope (580) on the cylinder (250) into the anus to check the state of the hemorrhoids and determine the treatment position; S4, rotating the probe rod (520) so that the end of the probe rod (520) is located at the bottom mucosa of the blood vessels that supply nutrients to the hemorrhoids, pushing the probe rod (520) so that the elastic electrode sheet (530) at the end thereof is separated from the probe tube (510) to achieve expansion, and the cover is set at the bottom mucosa, without piercing the hemorrhoids and related supporting tissues; S5, turning on the power supply (100), and moving the joystick (230) to control the magnitude of the output current, and performing puncture-free electrolysis treatment on the bottom mucosa.
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