A puncture-free hemorrhoid electrolysis therapeutic instrument and a use method thereof

By using a non-puncture microcurrent electrolysis reaction to dissolve hemorrhoidal vascular cells and forming thrombi through the chemical reaction of hydrogen ions and hydroxide ions, this method solves the problems of slow effectiveness, inconvenience, and safety risks associated with existing hemorrhoid treatments, achieving rapid and safe hemorrhoid treatment.

CN120053051BActive Publication Date: 2025-12-23BEIJING ZHUANG ZHI MEDICAL EQUIP LTD CO

Patent Information

Application Number
CN202510272790.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2025-12-23
Estimated Expiration
2045-03-10

AI Technical Summary

Technical Problem

Existing treatments for hemorrhoids are slow to take effect, inconvenient to treat, have high safety risks, and postoperative recovery problems, especially the risk of bleeding and abnormal copper ion circulation caused by the insertion of copper electrode needles.

Method used

The treatment uses a non-puncture microcurrent to contact the mucosa at the base of the hemorrhoids to perform an electrolytic reaction. The microcurrent dissolves the water in the hemorrhoid blood vessel cells, forming hydrogen ions and hydroxide ions, which cause the hemorrhoid blood vessels to form thrombi and shrink naturally. The strong alkaline environment of the hydroxide ions denatures the proteins, achieving rapid treatment without puncture.

Benefits of technology

No puncture or anesthesia is required, reducing patient pain and bleeding risks, improving treatment safety, and providing convenient, rapid, and effective treatment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of electrolysis therapeutic instrument, and proposes a kind of free puncture hemorrhoid electrolysis therapeutic instrument, including power supply, for providing conversion electric energy to the therapeutic instrument;Control handle, electrically connected with power supply, and the end is equipped with control display system, for grasping and controlling the size of current output;Therapeutic soft pad: electrically connected with power supply, and its upper surface is covered with medical gauze, and is placed in the lower surface of the thigh of the load end of patient, and the thigh skin is fully contacted with the medical gauze added with physiological saline, to form current loop;Free puncture detection expansion probe mechanism, installed on control handle, for tissue examination of anal part and free puncture contact hemorrhoid part, output micro-current.The beneficial effects of the present application are: no need for acupuncture treatment, can reduce the pain and bleeding of patient during treatment, improve the safety of treatment, and use conveniently, treatment is fast.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electrolytic treatment equipment, in particular to a puncture-free hemorrhoid electrolytic treatment instrument and a use method thereof. BACKGROUND

[0002] In the prior art, the treatment of hemorrhoids is based on the theory of curing hemorrhoids, and a method combining physical and chemical therapy is adopted, that is, a copper electrode is punctured into the hemorrhoids and its supporting tissue to slow down the blood flow through the combined action of copper ions and electrochemistry, gradually coagulate, and cause microthrombosis in the blood vessels, edema of the epithelial cells on the blood vessel wall, resulting in aseptic inflammation, tissue organization, blood vessel occlusion, reduced blood supply, and promotion of the fibrosis of the surrounding tissue, so as to eliminate the submucosal blood vessel hemorrhagic lesions, atrophy and occlusion of the hemorrhoidal nucleus, and reduction in the number of varicose vessels. The combined action of physics, chemistry and biology quickly achieves the purpose of treating hemorrhoids.

[0003] However, the method of puncturing a copper electrode into the hemorrhoids and its supporting tissue in the prior art has the following problems:

[0004] (1) The effect is not quick, and postoperative dressing change is needed, so the degree of shrinkage of hemorrhoids cannot be immediately observed.

[0005] (2) The use and treatment are inconvenient, and the patient cannot work after treatment and needs postoperative rehabilitation.

[0006] (3) There are certain safety problems, such as the risk of puncturing the hemorrhoids and causing bleeding during and after the operation, and the problem of abnormal increase of blood copper caused by the entry of copper ions into the body circulation. SUMMARY

[0007] The first aspect of the present application proposes a puncture-free hemorrhoid electrolytic treatment instrument, which does not need to puncture the hemorrhoids and its supporting tissue when treating hemorrhoids, and adopts a micro-current to contact the mucosa at the bottom of the hemorrhoids for electrolytic reaction to form a thrombus in the hemorrhoid blood vessels, so that the hemorrhoids lose nutrients and naturally atrophy and are absorbed by the human body, and is suitable for people with internal hemorrhoids; The main feature is that the hemorrhoids do not need to be punctured during treatment, no anesthesia is needed, the pain and bleeding of the patient during treatment can be reduced, the safety of treatment is improved, and the use is convenient and the treatment is fast.

[0008] To this end, the first aspect of the present application provides a non-puncture hemorrhoid electrolysis therapeutic instrument, comprising a power supply for providing converted electric energy to the therapeutic instrument; a control handle electrically connected with the power supply, an end of which is provided with a control display system for grasping and controlling the current output size; a therapeutic soft pad electrically connected with the power supply, a medical gauze being covered on the therapeutic soft pad, the therapeutic soft pad being placed under the thigh of a patient at a load end, the thigh skin being in full contact with the medical gauze added with physiological saline to form a current loop; and a non-puncture detection expansion probe mechanism installed on the control handle for tissue examination of an anal part and non-puncture contact with a hemorrhoid part to output a micro-current.

[0009] By adopting the above technical solution, in the treatment process, the hemorrhoid and its supporting tissue do not need to be punctured, the micro-current is adopted to contact the mucosa at the bottom of the hemorrhoid, the water in the hemorrhoid vascular cells is dissolved into hydrogen ions (H + ) and hydroxyl ions (OH - ), the hydrogen ions are converted into hydrogen (H2) to be released in a foam manner, the hydroxyl ions form a strong alkaline environment inside the hemorrhoid, leading to protein denaturation, thus a thrombus is formed in the hemorrhoid vessels, chemical burning is caused to the vessels, the hemorrhoid loses nutrients and naturally shrinks, and is absorbed by the body.

[0010] After the operator adjusts the current output through the control handle, the input circuit transmits the signal to the control module, 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, so as to convert the digital signal into a voltage signal, and then transmit the voltage signal to the power amplification circuit, the current output circuit, the maximum current limiting circuit and the connector, and finally transmit the voltage signal to the therapeutic soft pad and the non-puncture detection expansion probe mechanism connected with the human body to form a loop, so as to perform electrolysis treatment.

[0011] The control handle in the present application comprises a holding part and a mounting part arranged at the front end of the holding part, the holding part being used for grasping in use, a joystick being arranged on the mounting part for adjusting the size of the output current, the control display system being arranged on the upper side of the mounting part, a through hole being arranged on the mounting part, a barrel being arranged on the lower part of the mounting part and being in communication with the through hole, and the non-puncture detection expansion probe mechanism being installed in the through hole and the barrel, the control handle and the non-puncture detection expansion probe mechanism being packaged in a split type in production, and of course, the control handle and the non-puncture detection expansion probe mechanism can be assembled in an integral type.

[0012] Optionally, the non-puncture detection expansion probe mechanism comprises a probe assembly, the probe assembly being connected with the through hole through a connecting assembly, and further comprising a detection assembly arranged at the end of the probe assembly.

[0013] The probe assembly is connected to the handle and conducts electricity, and the end thereof releases a micro-current at the bottom mucosa during use; the detection assembly is used to detect the shape of the hemorrhoids before treatment, so as to facilitate adjustment of the probe assembly to the bottom mucosa.

[0014] Optionally, the probe assembly comprises a probe tube, the probe tube is internally provided with a probe rod, the front end of the probe rod is provided with an elastic electrode piece or two platinum probes, and the top ends of the two platinum probes are not flush.

[0015] Through the above technical scheme, the probe tube is connected to the through hole, the probe rod has the conductivity, the elastic electrode piece is expanded by pushing the probe rod after the position of the bottom mucosa is determined, and the elastic electrode piece is in contact with the bottom mucosa in a wrap-around mode, so that the contact area is larger, the treatment time is shortened, and the treatment effect is improved.

[0016] Optionally, the connecting assembly comprises an electrically-conductive elastic piece arranged in the through hole, the outer portion of the probe tube is provided with an electrically-conductive pyramid, the electrically-conductive pyramid is in contact with the probe rod, the connecting portion between the through hole and the barrel is provided with a spring, and the probe tube is provided with an annular table for abutting against the spring.

[0017] Through the above technical scheme, when the probe tube is installed, the electrically-conductive pyramid on the probe tube is in contact with the electrically-conductive elastic piece after the probe tube is pushed into the through hole, the electrically-conductive elastic piece is compressed and the position thereof is passed through, the spring is compressed in the process, the electrically-conductive elastic piece is reset after the electrically-conductive pyramid passes through the electrically-conductive elastic piece, the probe tube is slightly reset under the reset force of the spring, the electrically-conductive pyramid is in contact with the electrically-conductive elastic piece, and the electrically-conductive pyramid can conduct electricity and fix the probe tube.

[0018] Optionally, the detection assembly comprises an anoscope rotatably connected to the lower end of the barrel.

[0019] Through the above technical scheme, the type and position of the hemorrhoids are detected, the position of the bottom mucosa is determined, the probe rod and the elastic electrode piece are close to or attached to the bottom mucosa for electrolysis treatment, and the hemorrhoids and the supporting tissue thereof need not be punctured.

[0020] Optionally, the barrel, the probe tube and the probe rod are all arranged in the opening groove of the anoscope, and the end of the probe rod is provided with a camera.

[0021] Through the above technical scheme, the hemorrhoid tissue is prevented from being damaged during detection, and the shape of the hemorrhoids and the whole non-punctured electrolysis treatment process can be seen through the camera.

[0022] Optionally, the control handle direct current output is maximum 20 mA; the error range of output current is: ±2 mA.

[0023] Optionally, the current output size is adjustable by 10% to 100% in ten grades.

[0024] By adopting the above technical scheme: the current size can be adjusted according to the hemorrhoid shape, so that electrolysis treatment is facilitated.

[0025] In a second aspect, the application provides a use method of the above-mentioned non-puncture hemorrhoid electrolysis treatment instrument, comprising the following steps:

[0026] S1, connecting the treatment soft pad with the connecting line, covering a medical gauze on the treatment soft pad, and then adding 0.9% physiological saline on the medical gauze until the medical gauze is saturated;

[0027] S2, installing the non-puncture detection expansion probe mechanism in the through hole and the inner part of the cylinder;

[0028] S3, holding the control handle, inserting the anoscope on the cylinder into the anus to check the hemorrhoid state and determine the treatment position;

[0029] S4, rotating the probe rod so that the end of the probe rod is at the bottom mucosa of the blood vessel supplying nutrients to the hemorrhoid, pushing the probe rod to make the elastic electrode sheet at the end of the probe rod expand out of the probe tube to cover the bottom mucosa without puncturing the hemorrhoid and related supporting tissues;

[0030] S5, adjusting the control lever to control the size of the output current to perform non-puncture electrolysis treatment on the bottom mucosa.

[0031] The above use method is simple and fast for treating hemorrhoids, eliminates the need for puncturing the hemorrhoid and its supporting tissues, and improves the safety of treatment.

[0032] The working principle and beneficial effects of the application are as follows:

[0033] 1. In the treatment process, the hemorrhoid and its supporting tissues do not need to be punctured, the bottom mucosa of the hemorrhoid is contacted by a micro-current to dissolve the water in the hemorrhoid blood vessel cells into hydrogen ions (H + ) and hydroxyl ions (OH - ), the hydrogen ions are converted into hydrogen (H2) and released in the form of foam, the hydroxyl ions form a strong alkaline environment inside the hemorrhoid, causing protein denaturation, thus forming a thrombus in the hemorrhoid blood vessel and causing chemical burning of the blood vessel, so that the hemorrhoid loses nutrients and naturally shrinks and is absorbed by the body. In the whole treatment process, the hemorrhoid does not need to be punctured and does not need to be anesthetized, which can reduce the pain and bleeding of the patient during the treatment process, improve the safety of treatment, and is convenient and fast to use.

[0034] 2、The probe tube is used for connection with the through hole, the probe rod has a conductive property, and through the elastic electrode sheet, after the position of the bottom mucosa is determined, the elastic electrode sheet is unfolded by pushing the probe rod, and is in contact with the bottom mucosa in a wrap-around mode, so that the contact area is larger, the treatment time is shortened, and the treatment effect is improved.

[0035] 3、When the probe tube is installed, the probe tube is pushed into the through hole, the conductive pyramid on the probe tube contacts the conductive elastic sheet, the probe tube is continuously pushed, the conductive pyramid presses the conductive elastic sheet and passes through the position of the conductive elastic sheet, the spring is pressed in the process of passing through the conductive elastic sheet, and when the conductive pyramid passes through the conductive elastic sheet, the conductive elastic sheet is reset, and then the probe tube is slightly reset under the reset force of the spring, so that the conductive pyramid is in contact with the conductive elastic sheet, which can conduct electricity and fix the probe tube.

[0036] 4、The detection assembly in the application is convenient for detecting the type and position of hemorrhoids, determining the position of the bottom mucosa, and then making the probe rod and the elastic electrode sheet close to or adhere to the bottom mucosa for electrolysis treatment, without puncturing the hemorrhoids and supporting tissues.

[0037] 5、The control handle in the application can adjust the current size according to the shape of the hemorrhoids, so as to facilitate electrolysis treatment. BRIEF DESCRIPTION OF DRAWINGS

[0038] The application will be further described in detail below in combination with the drawings and specific embodiments.

[0039] Figure 1 It is a schematic diagram of the overall composition of the embodiment of the application.

[0040] Figure 2 It is a schematic diagram of the control handle and the puncture-free detection expansion probe mechanism of the embodiment of the application.

[0041] Figure 3 It is a schematic diagram of the control handle and the puncture-free detection expansion probe mechanism of the embodiment of the application. Figure 1 It is an enlarged schematic diagram of position A in the control handle and the puncture-free detection expansion probe mechanism.

[0042] Figure 4 It is an enlarged schematic diagram of position B in the control handle and the puncture-free detection expansion probe mechanism. Figure 1 It is an enlarged schematic diagram of position B in the control handle and the puncture-free detection expansion probe mechanism.

[0043] Figure 5 It is a schematic diagram of the structure cooperating with the human body when the treatment cushion of the embodiment of the application is used.

[0044] Figure 6 It is a schematic diagram of the direction indicating structure of the affected part of the embodiment of the application.

[0045] Figure 7Figure 1 is a schematic diagram of a contact position structure of a probe rod of an embodiment of the present application and a hemorrhoid;

[0046] Figure 8 Figure 4 is a schematic diagram of a partial top view of a mounting portion of an embodiment of the present application;

[0047] Figure 9 Figure 5 is a schematic diagram of a circuit structure of an embodiment of the present application;

[0048] Figure 10 Figure 6 is a schematic diagram of an end portion structure of a probe rod of another embodiment of the present application.

[0049] Reference signs are as follows:

[0050] 100, power supply; 200, control handle; 210, grip portion; 220, mounting portion; 230, joystick; 240, through hole; 250, barrel; 300, control display system; 400, treatment soft pad; 500, puncture-free detection expansion probe mechanism; 510, probe tube; 520, probe rod; 521, platinum probe; 530, elastic electrode sheet; 540, conductive elastic sheet; 550, conductive pyramid; 560, spring; 570, annular platform; 580, anoscope; 590, camera. DETAILED DESCRIPTION

[0051] The technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work, are involved in the protection scope of the present application.

[0052] Embodiment 1

[0053] As shown in Figures 1-9 the first aspect of the present embodiment provides a puncture-free hemorrhoid electrolysis treatment instrument, which comprises a power supply 100 for providing converted electric energy to the treatment instrument; a control handle 200 electrically connected with the power supply 100, an end portion of which is provided with a control display system 300 for grasping and controlling the current output size; a treatment soft pad 400 electrically connected with the power supply 100, a medical gauze being covered on the treatment soft pad 400, the treatment soft pad 400 being placed under the thigh of a patient at a load end, the thigh skin being in full contact with the medical gauze added with physiological saline to form a current loop; and a puncture-free detection expansion probe mechanism 500 installed on the control handle 200 for tissue examination of an anal portion and puncture-free contact with a hemorrhoid portion to output a micro-current.

[0054] The basic principle of the embodiment is as follows: without puncturing hemorrhoids and their supporting tissues in use, the hemorrhoidal base mucosa is contacted by micro-current, the water in the hemorrhoidal vascular cells is dissolved into hydrogen ions (H+) and hydroxyl ions (OH-), the hydrogen ions are converted into hydrogen (H2) and released in the form of foam, the hydroxyl ions form a strong alkaline environment inside the hemorrhoids, leading to protein denaturation, thus forming thrombus in the hemorrhoidal vessels, causing chemical burning of the blood vessels, and making the hemorrhoids lose nutrients and naturally atrophy and be absorbed by the body.

[0055] As shown in Figure 9 The circuit principle of the embodiment is as follows: after the operator adjusts the current output through the control handle 200, the input circuit transmits the signal to the control module, 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, so as to convert the digital signal into a voltage signal, and then transmitted to the power amplification circuit, the current output circuit, the maximum current limiting circuit and the connector, and finally transmitted to the treatment soft pad 400 connected with the human body and the puncture-free detection expansion probe mechanism 500, forming a loop, so as to perform electrolytic treatment.

[0056] The control handle 200 in the application comprises a holding part 210 and a mounting part 220 arranged at the front end of the holding part 210, the holding part 210 is used for holding in use, and a joystick 230 for adjusting the size of the output current is arranged on the mounting part 220, the control display system 300 is arranged on the upper side of the mounting part 220, a through hole 240 is arranged on the mounting part 220, a barrel 250 in communication with the through hole 240 is arranged on the lower part of the mounting part 220, and the puncture-free detection expansion probe mechanism 500 is mounted in the through hole 240 and the barrel 250. In production, the control handle 200 and the puncture-free detection expansion probe mechanism 500 can be packaged in a split type, that is, packaged in a split type, and of course, they can also be assembled integrally.

[0057] The puncture-free detection expansion probe mechanism 500 comprises a probe assembly, the probe assembly is connected with the through hole 240 through a connecting assembly, and further comprises a detection assembly arranged at the end of the probe assembly. The probe assembly is connected with the control handle 200 and conducts electricity, and the end thereof releases micro-current at the base mucosa in use. The detection assembly is used for detecting the hemorrhoids before treatment to determine the shape thereof, so as to facilitate adjustment of the probe assembly to be at the base mucosa.

[0058] Specifically, the probe assembly in the embodiment includes a probe tube 510, a probe rod 520 is arranged in the probe tube 510, and an elastic electrode sheet 530 is arranged at the front end of the probe rod 520. The probe tube 510 is used for being connected with the through hole 240. The probe rod 520 has a conductive property. After the position of the bottom mucosa is determined, the elastic electrode sheet 530 is unfolded by pushing the probe rod 520, and the elastic electrode sheet 530 is in contact with the bottom mucosa in a wrap-around mode, so that the contact area is larger, the treatment time is shortened, and the treatment effect is improved.

[0059] The connecting assembly includes a conductive elastic sheet 540 arranged in the through hole 240, the probe tube 510 is externally provided with a conductive pyramid 550, the inside of the conductive pyramid 550 is in contact with the probe rod 520, the connecting position between the through hole 240 and the barrel 250 is provided with a spring 560, and the probe tube 510 is provided with an annular table 570 for abutting against the spring 560. When the probe tube 510 is installed, the probe tube 510 is pushed into the through hole 240, the conductive pyramid 550 on the probe tube 510 contacts the conductive elastic sheet 540, the probe tube 510 is continuously pushed, the conductive pyramid 550 presses the conductive elastic sheet 540 and passes through the position of the conductive elastic sheet 540, the spring 560 is pressed in the process, the conductive elastic sheet 540 is reset after the conductive pyramid 550 passes through the conductive elastic sheet 540, and then the probe tube 510 is slightly reset under the reset force of the spring 560, so that the conductive pyramid 550 is in contact with the conductive elastic sheet 540, which can conduct electricity and fix the probe tube 510.

[0060] The detecting assembly includes an anoscope 580 rotatably connected to the lower end of the barrel 250, which is convenient for detecting the type and position of the hemorrhoids and determining the position of the bottom mucosa, so that the probe rod 520 and the elastic electrode sheet 530 are close to or attached to the bottom mucosa for electrolytic treatment, and the hemorrhoids and supporting tissues do not need to be punctured.

[0061] Specifically, the barrel 250, the probe tube 510 and the probe rod 520 are all arranged in the opening groove of the anoscope 580. The end of the probe rod 520 is provided with a camera 590, which can prevent the hemorrhoid tissue from being damaged during detection, and the camera 590 can clearly show the shape of the hemorrhoids and the whole non-punctured electrolytic treatment process.

[0062] The control handle 200 in the embodiment has a direct current output of 20 mA at most. The error range of the output current is ±2 mA. The current output size is adjustable in ten grades from 10% to 100%. The current size can be adjusted according to the shape of the hemorrhoids, so that the electrolytic treatment is facilitated.

[0063] The second aspect of the present application provides a use method of the above-mentioned non-puncture hemorrhoid electrolysis therapeutic instrument, comprising the following steps:

[0064] S1, connect the treatment cushion 400 with the connecting line, cover a medical gauze on the treatment cushion 400, then add 0.9% physiological saline on the medical gauze until the medical gauze is saturated; then, ask the patient to lie comfortably on the bed, place the treatment cushion 400 under the patient's weight-bearing thigh, and ensure that the patient's thigh skin is in direct contact with the surface of the medical gauze soaked with physiological saline, as shown in Figure 5 .

[0065] S2, install the non-puncture detection expansion probe mechanism 500 inside the through hole 240 and the cylinder 250;

[0066] S3, hold the control handle 200, insert the anoscope 580 on the cylinder 250 into the anus for hemorrhoid state inspection and determine the treatment position, observe the hemorrhoid affected area from the anoscope 580, if the hemorrhoid is present at the (9 o'clock) and (3 o'clock) positions, refer to Figure 6 , at this time the control handle 200 is placed vertically: if the hemorrhoid is present at the (12 o'clock) and (6 o'clock) positions, at this time the control handle 200 is placed horizontally.

[0067] S4, rotate the probe rod 520 so that the end of the probe rod 520 is at the bottom mucosa of the associated blood vessels supplying nutrients to the hemorrhoid, and ensure that the probe end is placed on the hemorrhoid tissue above the anal tooth line, refer to Figure 7 , push the probe rod 520 to make the elastic electrode sheet 530 at the end of the probe rod 520 expand out of the probe tube 510 to achieve expansion, cover the bottom mucosa, without piercing the hemorrhoid and related supporting tissues;

[0068] S5, control the size of the output current by operating the joystick 230 to perform non-puncture electrolysis treatment on the bottom mucosa.

[0069] Specifically, press the joystick 230 button to start timing, the timer starts from 1 second to a maximum of 99 minutes and 59 seconds, with an error of ±5%, note that the instrument does not output any current at this time.

[0070] Refer to Figure 8 , if you want to output current, operate the joystick 230 right button, each time you operate, a LED grating will light up, representing an increase of 10% in output current, up to 100%.

[0071] If you want to reduce the output current, please operate the joystick 230 left button, each time you operate, a LED grating will be extinguished, representing a decrease of 10% in output current, down to 0.

[0072] The treatment time depends on the degree of hemorrhoids and the patient's tolerance. During the treatment, the affected area will change color and occasionally produce a slight "popping" sound, which indicates that hydrogen is being released. This is normal.

[0073] The following methods can determine the completion of the treatment:

[0074] a) When the affected area has changed color;

[0075] b) When the slight "popping" sound has stopped.

[0076] When the entire treatment is complete, the downward lever 230 should be actuated to stop the current output, and then the probe should be separated from the affected area.

[0077] Generally, a follow-up visit and examination of the affected area are required 10 to 14 days after treatment. If the hemorrhoids have improved but are not completely resolved after treatment, additional treatment can be performed.

[0078] The above use method is simple and quick for treating hemorrhoids, eliminates the need for puncturing hemorrhoids and their supporting tissues, and improves the safety of treatment.

[0079] Example 2

[0080] Reference Figure 10 The difference between this embodiment and Example 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 difference d, for example, a difference of 1.5 cm between the two platinum probes. This ensures the maximum contact area. Platinum is non-toxic to living organisms, has good biocompatibility, and good electrical conductivity.

[0081] The following will be described in detail with reference to a typical case:

[0082] The observation objects are patients who come to the hospital for treatment and are diagnosed with internal hemorrhoids or mixed hemorrhoids by anoscope 580.

[0083] 1. Patient Dong, female, 36 years old, number of hemorrhoids: 1, hemorrhoid classification: three levels; diagnosis: mixed hemorrhoids (including three levels of internal hemorrhoids), no previous medication; first treatment current selection: 4 mA, no change in current, post-treatment hemorrhoid condition: hemorrhoid size is reduced or partially atrophied to less than 40% of the pre-treatment size, no adverse events, no complications, no instrument defects, no concurrent medications.

[0084] 2、Patient Cui, male, 70 years old, number of hemorrhoids: 1, hemorrhoid classification: three levels; diagnosis: mixed hemorrhoids (including three-level internal hemorrhoids), previous medication: none; first treatment current selection: 8mA, no change in current, after treatment hemorrhoid situation: hemorrhoids become smaller or partially atrophy to less than 40% of the pre-treatment, no adverse events, no complications, no device defects, no combined medication, after treatment re-evaluation of hemorrhoid situation: hemorrhoids caused by bleeding, prolapse, pain and itching, etc. to achieve effective control, the incidence is very low.

[0085] 3、Patient Hao, female, 45 years old, diagnosis: mixed hemorrhoids (including three-level internal hemorrhoids), previous medication: (N) diltiaem tablets, 0.9g, oral, twice a day, compound anise fumigation agent 10g, sitz bath, twice a day; first treatment current selection: 20mA, no change in current, after treatment hemorrhoid situation: hemorrhoids become smaller or partially atrophy to less than 40% of the pre-treatment, no adverse events, no complications, no device defects, no combined medication.

[0086] The above is only a preferred embodiment of the present application, and is not intended to limit the present application, any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A non-piercing hemorrhoid electrolysis treatment device, characterized in that, It comprises: a power supply (100) for providing converted electrical energy to the therapeutic instrument; a control handle (200) electrically connected to the power supply (100), the end of which is provided with a control display system (300) for grasping and controlling the size of the current output; a therapeutic soft pad (400) electrically connected to the power supply (100), covered with medical gauze, placed under the patient's weight-bearing thigh, the thigh skin fully contacts the medical gauze added with physiological saline to form a current loop; a puncture-free detection expansion probe mechanism (500) installed on the control handle (200) for tissue examination of the anal part and puncture-free contact with the hemorrhoid part, outputting a micro-current; the puncture-free detection expansion probe mechanism (500) comprises a probe assembly, the probe assembly is connected with the through hole (240) through a connecting assembly, and further comprises a detection assembly arranged at the end of the probe assembly; the probe assembly comprises a probe tube (510), a probe rod (520) penetrating through the inside of the probe tube (510), and an elastic electrode sheet (530) arranged at the front end of the probe rod (520); or two platinum probes (521) are arranged at the front end of the probe rod (520), and the top ends of the two platinum probes (521) are uneven; the connecting assembly comprises a conductive elastic sheet (540) arranged in the through hole (240), a conductive pyramid (550) arranged outside the probe tube (510), and a spring (560) arranged at the connection between the through hole (240) and the cylinder (250), and a ring-shaped table (570) for abutting against the spring (560) is arranged on the probe tube (510); the detection assembly comprises an anoscope (580) rotatably connected to the lower end of the cylinder (250); the cylinder (250), the probe tube (510), and the probe rod (520) are all arranged inside the open slot of the anoscope (580), and a camera (590) is arranged at the end of the probe rod (520); the control handle (200) comprises a holding part (210) and a mounting part (220) arranged at the front end of the holding part (210), the mounting part (220) is provided with a through hole (240), the lower part of the mounting part (220) is provided with a cylinder (250) in communication with the through hole (240), and the puncture-free detection expansion probe mechanism (500) is installed inside the through hole (240) and the cylinder (250).

2. The non-piercing hemorrhoid electrolysis treatment device according to claim 1, characterized in that, a joystick (230) is arranged on the mounting part (220), and the control display system (300) is arranged on the upper side of the mounting part (220).

3. The non-piercing hemorrhoid electrolysis treatment device according to claim 1, characterized in that, The maximum direct current output of the control handle (200) is 20 mA, and the error range of the output current is ±2 mA.

4. The non-piercing hemorrhoid electrolysis treatment device according to claim 3, characterized in that, The size of the current output can be adjusted in ten grades from 10% to 100%.

Citation Information

Patent Citations

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    CN101563040A

  • Anorectal interventional treatment device

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  • Hemorrhoids hydrolysis technology therapeutic apparatus

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  • Hydrolysis treatment device for haemorrhoids

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