CN210205607U - Radio frequency treatment device - Google Patents

Radio frequency treatment device Download PDF

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Publication number
CN210205607U
CN210205607U CN201821416246.7U CN201821416246U CN210205607U CN 210205607 U CN210205607 U CN 210205607U CN 201821416246 U CN201821416246 U CN 201821416246U CN 210205607 U CN210205607 U CN 210205607U
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China
Prior art keywords
controller
cavity
radio frequency
power supply
supply device
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CN201821416246.7U
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Chinese (zh)
Inventor
Bosong Dai
戴博松
Zhou Tong
童舟
Haiying Zhao
赵海英
Longlong Deng
邓隆隆
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Zhejiang Free Trade Zone Fermishan Technology Development Co Ltd
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Zhejiang Free Trade Zone Fermishan Technology Development Co Ltd
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Abstract

The utility model discloses a radio frequency treatment device, which comprises a handheld handle, a treatment component, a rotary rod and a controller, wherein the handheld handle is internally provided with a first cavity with an open end or a hollow cavity; the controller and the power supply device are both arranged in the first cavity or in the control box, and the controller is electrically connected with the power supply device. The device of the utility model has simple structure, small appearance, simple operation and is suitable for family use.

Description

Radio frequency treatment device
Technical Field
The utility model relates to a radio frequency treatment device, which belongs to the field of medical appliances.
Background
Hemorrhoids are common diseases located at the anus part, and can be developed at any age, and the incidence rate is gradually increased with the age. The hemorrhoids are classified into internal hemorrhoids, external hemorrhoids and mixed hemorrhoids according to the different parts.
At present, four methods of operation treatment, medicine coating, medicine fumigation and medicine taking are mainly adopted for treating the hemorrhoids. The medicine fumigation therapy has the advantages that the affected part is fumigated through equipment, the effect is limited, the medicine fumigation therapy mode is long in time consumption, the curative effect is slow, the medicine utilization rate is low, and the medicine fumigation therapy mode is commonly used for external hemorrhoids or slight hemorrhoids; the modes of medicine coating and medicine oral administration can only play temporary roles of analgesia and detumescence generally, and hemorrhoids are difficult to eradicate; although the operation treatment can eradicate hemorrhoids, the normal tissues are damaged, so that the anus is narrow, the defecation function is influenced, great pain is brought to a patient, and the recovery period is long.
The prior art has the defects to be overcome for the equipment and the method for treating the hemorrhoids, so the treatment equipment which is convenient, direct in treatment effect, non-invasive and painless and has a plurality of treatment functions is needed.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a do not have painless, the direct radio frequency treatment device of treatment effect of wound.
In order to solve the technical problem, the utility model discloses a following technical scheme: a radio frequency treatment device comprises a handheld handle, a treatment component, a rotary rod and a controller, wherein a first cavity with one open end or hollow is arranged inside the handheld handle, a power supply device is connected with a rotary seat, one end of the rotary rod is fixedly connected with the rotary seat, the other end of the rotary rod is connected with the treatment component, a second cavity with one open end is arranged inside the treatment component, a radio frequency module and/or an electrical stimulation module are arranged inside the second cavity, and the radio frequency module and/or the electrical stimulation module are electrically connected with the controller;
the controller and the power supply device are both arranged in the first cavity or in the control box, and the controller is electrically connected with the power supply device. The controller and the power supply device arranged in the control box are connected with the radio frequency module and the electrical stimulation module of the treatment component through long leads, and the long leads are led out through the tail part of the handheld handle without influencing the use of the treatment component.
The handle and the treatment component are replaceable consumables, and the treatment component can be replaced independently, so that the situation that multiple treated persons use the same treatment component can be avoided, and cross use can be prevented. The handle and the treatment component are connected in a plug-in manner, so that the treatment component is convenient to replace.
In the foregoing radio frequency therapy apparatus, the therapy component includes a probe housing and a fixed block disposed in the second cavity, and the rotating rod is connected to the fixed block.
In the radio frequency therapy device, the fixing block is provided with a limiting hole for locking the rotating rod.
In the foregoing radio frequency therapy device, the probe shell includes an outer shell and an inner shell, and a pressure sensor and/or a temperature sensor is disposed between the outer shell and the inner shell.
In the radio frequency therapy device, the probe shell includes an outer shell and an inner shell, a carbon nanotube pressure sensor is disposed between the outer shell and the inner shell, and the carbon nanotube pressure sensor is attached to an inner wall of the outer shell.
In the foregoing radio frequency therapy device, the probe shell includes an outer shell and an inner shell, a carbon nanotube pressure sensor is disposed between the outer shell and the inner shell, and the carbon nanotube pressure sensor is attached to an inner wall of the inner shell.
In the foregoing radio frequency therapy device, the cross sections of the rotating rod and the probe shell are both circular or elliptical. The cross-sectional shapes of the rotating shaft and the probe housing are not limited to circular or elliptical shapes, and both the rotating shaft and the probe housing may be designed and manufactured according to ergonomic structures using additive manufacturing techniques.
In the foregoing radio frequency therapy apparatus, a graphical user interface is provided on the controller. The measured pressure and temperature values, or other specific test data, can be viewed through the graphical user interface.
In the radio frequency therapy device, the hand-held handle is provided with the manual switch and the power adjusting key, and the manual switch and the power adjusting key are both electrically connected with the controller.
A manual switch is additionally arranged on the handheld handle, the manual switch is used for controlling the starting and stopping of the work of the radio frequency module, and a power adjusting key is additionally arranged for adjusting the radio frequency power of the radio frequency module and the electric power of the electric stimulation module. The operation of the operator with one hand and the individual operation of the toilet are convenient, simple and convenient.
The handle can be held by a single hand when the radio frequency treatment device is used; placing the treatment component into the body orifice, and selectively starting the radio frequency module or the electrical stimulation module through a controller connected with the power supply device; rotating the treatment member; the activation time, duration and/or deactivation time of the rotating treatment member is determined based on feedback from the pressure sensor and/or temperature sensor.
Compared with the prior art, the utility model discloses beneficial effect is: the radio frequency module or the electrical stimulation module arranged in the second cavity provides respective energy input for the probe shell of the treatment assembly, the energy acts on tissue cells through the probe shell, strong molecular motion is generated, endogenous heat effect is formed, tissue protein coagulation, hemorrhoidal thrombosis and vascular occlusion are realized, and the treatment purposes of hemorrhoidal atrophy, rehabilitation and disappearance are achieved through tissue absorption. The rotating seat and the rotating rod are arranged to drive the treatment component to rotate, so that the temperature of tissue cells can be adjusted in the treatment process, and the treatment efficiency is improved. The device of the utility model has simple structure, small appearance, simple operation and is suitable for family use.
Drawings
FIG. 1 is a schematic diagram of an embodiment of the apparatus of the present invention;
fig. 2 is a schematic structural view of another embodiment of the device of the present invention;
fig. 3 is a schematic diagram of a control connection of an embodiment of the apparatus of the present invention;
fig. 4 is a schematic structural diagram of another embodiment of the device of the present invention.
Reference numerals: 1-a hand-held handle, 2-a treatment part, 3-a first cavity, 4-a power supply device, 5-a rotating seat, 6-a rotating rod, 7-a second cavity, 8-a radio frequency module, 9-an electrical stimulation module, 10-a controller, 11-a probe shell, 12-a fixed block, 13-an outer shell, 14-an inner shell, 15-an inner wall of the inner shell, 16-an inner wall of the outer shell, 17-a temperature sensor, 18-a pressure sensor, 19-a carbon nanotube pressure sensor, 20-a graphical user interface, 21-a manual switch and 22-a power adjusting button.
The present invention will be further described with reference to the accompanying drawings and the detailed description.
Detailed Description
Example 1: a radio frequency treatment device comprises a handheld handle 1, a treatment component 2, a rotary rod 6, a controller 10 and a power supply device 4, wherein a first cavity 3 with an opening at one end is formed in the handheld handle 1, the power supply device 4 is arranged in the first cavity 3, the power supply device 4 is connected with a rotary base 5, one end of the rotary rod 6 is fixedly connected with the rotary base 5, the other end of the rotary rod 6 is connected with the treatment component 2, a second cavity 7 with an opening at one end is formed in the treatment component 2, a radio frequency module 8 is arranged in the second cavity 7, and the controller 10 is electrically connected with the radio frequency module 8; the controller 10 and the power supply device 4 are both disposed in the first cavity 3, and the controller 10 is electrically connected to the power supply device 4.
Example 2: a radio frequency treatment device comprises a handheld handle 1, a treatment component 2, a rotary rod 6, a controller 10 and a power supply device 4, wherein a hollow first cavity 3 is formed in the handheld handle 1, the power supply device 4 is arranged in the first cavity 3, the power supply device 4 is connected with a rotary base 5, one end of the rotary rod 6 is fixedly connected with the rotary base 5, the other end of the rotary rod 6 is connected with the treatment component 2, a second cavity 7 with an opening at one end is formed in the treatment component 2, a radio frequency module 8 and an electrical stimulation module 9 are arranged in the second cavity 7, and the radio frequency module 8 and the electrical stimulation module 9 are both electrically connected with the controller 10; the controller 10 and the power supply device 4 are both disposed in the first cavity 3, and the controller 10 is electrically connected to the power supply device 4. Wherein the treatment component 2 comprises a probe shell 11 and a fixed block 12 arranged in the second cavity 7, and the rotating rod 6 is connected with the fixed block 12. The fixing block 12 is provided with a limiting hole for locking the rotating rod 6.
Example 3: a radio frequency treatment device comprises a handheld handle 1, a treatment component 2, a rotary rod 6, a controller 10 and a power supply device 4, wherein a first cavity 3 with an opening at one end is formed in the handheld handle 1, the power supply device 4 is arranged in the first cavity 3, the power supply device 4 is connected with a rotary base 5, one end of the rotary rod 6 is fixedly connected with the rotary base 5, the other end of the rotary rod 6 is connected with the treatment component 2, a second cavity 7 with an opening at one end is formed in the treatment component 2, a radio frequency module 8 and an electrical stimulation module 9 are arranged in the second cavity 7, and the controller 10 is electrically connected with the radio frequency module 8 and the electrical stimulation module 9 respectively; the controller 10 and the power supply device 4 are both disposed in the first cavity 3, and the controller 10 is electrically connected to the power supply device 4. The treatment component 2 comprises a probe shell 11 and a fixed block 12 arranged in the second cavity 7, and the rotating rod 6 is connected with the fixed block 12. The fixing block 12 is provided with a limiting hole for locking the rotating rod 6. The probe shell 11 comprises an outer shell 13 and an inner shell 14, and a pressure sensor 18 and a temperature sensor 17 are arranged between the outer shell 13 and the inner shell 14. The cross-sections of the rotary rod 6 and the probe housing 11 are elliptical in shape. A graphical user interface 20 is provided on the controller 10. The hand-held handle 1 is provided with a manual switch 21 and a power adjusting key 22, and the manual switch 21 and the power adjusting key 22 are both electrically connected with the controller 10.
Example 4: a radio frequency treatment device comprises a handheld handle 1, a treatment component 2, a rotary rod 6, a controller 10 and a power supply device 4, wherein a hollow first cavity 3 is formed in the handheld handle 1, the power supply device 4 is arranged in the first cavity 3, the power supply device 4 is connected with a rotary base 5, one end of the rotary rod 6 is fixedly connected with the rotary base 5, the other end of the rotary rod 6 is connected with the treatment component 2, a second cavity 7 with an opening at one end is formed in the treatment component 2, an electrical stimulation module 9 is arranged in the second cavity 7, and the controller 10 is electrically connected with the electrical stimulation module 9; the controller 10 and the power supply device 4 are both disposed in the first cavity 3, and the controller 10 is electrically connected to the power supply device 4. The treatment component 2 comprises a probe shell 11 and a fixed block 12 arranged in the second cavity 7, and the rotating rod 6 is connected with the fixed block 12. The fixing block 12 is provided with a limiting hole for locking the rotating rod 6. The probe shell 11 comprises an outer shell 13 and an inner shell 14, a carbon nanotube pressure sensor is arranged between the outer shell 13 and the inner shell 14, and the carbon nanotube pressure sensor is attached to the inner wall 16 of the outer shell. The cross-sections of the rotary rod 6 and the probe housing 11 are circular. A graphical user interface 20 is provided on the controller 10. The hand-held handle 1 is provided with a manual switch 21 and a power adjusting key 22, and the manual switch 21 and the power adjusting key 22 are both electrically connected with the controller 10.
Example 5: a radio frequency treatment device comprises a handheld handle 1, a treatment component 2, a rotary rod 6, a controller 10 and a power supply device 4, wherein a first cavity 3 with an opening at one end is formed in the handheld handle 1, the power supply device 4 is arranged in the first cavity 3, the power supply device 4 is connected with a rotary base 5, one end of the rotary rod 6 is fixedly connected with the rotary base 5, the other end of the rotary rod 6 is connected with the treatment component 2, a second cavity 7 with an opening at one end is formed in the treatment component 2, a radio frequency module 8 and an electrical stimulation module 9 are arranged in the second cavity 7, and the controller 10 is electrically connected with the radio frequency module 8 and the electrical stimulation module 9 respectively; the controller 10 and the power supply device 4 are both disposed in the first cavity 3, and the controller 10 is electrically connected to the power supply device 4. The treatment component 2 comprises a probe shell 11 and a fixed block 12 arranged in the second cavity 7, and the rotating rod 6 is connected with the fixed block 12. The fixing block 12 is provided with a limiting hole for locking the rotating rod 6. The probe shell 11 comprises an outer shell 13 and an inner shell 14, a carbon nanotube pressure sensor 19 is arranged between the outer shell 13 and the inner shell 14, and the carbon nanotube pressure sensor is attached to the inner wall 15 of the inner shell. The cross-sections of the rotary rod 6 and the probe housing 11 are both circular or elliptical. A graphical user interface 20 is provided on the controller 10. Wherein, the hand-held handle 1 is provided with a manual switch 21 and a power adjusting key 22, and the manual switch 21 and the power adjusting key 22 are both electrically connected with the controller 10.
Example 6: a radio frequency treatment device comprises a handheld handle 1, a treatment component 2, a rotary rod 6, a controller 10 and a power supply device 4, wherein a first cavity 3 with an opening at one end is formed in the handheld handle 1, the power supply device 4 is arranged in the first cavity 3, the power supply device 4 is connected with a rotary base 5, one end of the rotary rod 6 is fixedly connected with the rotary base 5, the other end of the rotary rod 6 is connected with the treatment component 2, a second cavity 7 with an opening at one end is formed in the treatment component 2, a radio frequency module 8 and an electrical stimulation module 9 are arranged in the second cavity 7, and the controller 10 is electrically connected with the radio frequency module 8 and the electrical stimulation module 9 respectively; the controller 10 and the power supply device 4 are both disposed in the control box, and the controller 10 is electrically connected to the power supply device 4. The treatment component 2 comprises a probe shell 11 and a fixed block 12 arranged in the second cavity 7, and the rotating rod 6 is connected with the fixed block 12. The fixing block 12 is provided with a limiting hole for locking the rotating rod 6. The probe shell 11 comprises an outer shell 13 and an inner shell 14, a carbon nanotube pressure sensor 19 is arranged between the outer shell 13 and the inner shell 14, and the carbon nanotube pressure sensor is attached to the inner wall 15 of the inner shell. The cross-sections of the rotary rod 6 and the probe housing 11 are circular. A graphical user interface 20 is provided on the controller 10.
The utility model discloses a theory of operation: the low-frequency electromagnetic wave acts on the pathological tissue of a human body to enable water molecules with polarity in the tissue to move at a high speed to generate heat (namely endogenous heat effect), so that tissue protein is solidified, thrombus in the haemorrhoids is formed, blood vessels are occluded, and the treatment aims of haemorrhoids atrophy, recovery and disappearance are achieved through tissue absorption.
The utility model discloses a working process: when the therapeutic component is used, the therapeutic component 2 is inserted into a body orifice or is attached to a diseased tissue, the radio frequency module 8 or the electrical stimulation module 9 is started through the controller 10, the radio frequency module 8 or the electrical stimulation module 9 provides respective energy input for the probe shell 11 of the therapeutic component, and the energy is acted on tissue cells through the probe shell 11; the rotation speed of the treatment component is controlled according to data information (such as temperature value, pressure value or other special detection data, which can be observed from a graphical user interface 20 arranged on the controller 10) fed back by a pressure sensor 18 and/or a temperature sensor 17 arranged between the outer shell 13 and the inner shell 14, the treatment strength and the treatment time are further regulated, the temperature acting on cells of lesion tissues can be regulated by controlling the rotation of the treatment component 2, the haemorrhoid atrophy speed is accelerated, and the treatment efficiency is improved;
the controller 10 controls the rotary seat 5 to rotate, so as to drive the rotary rod 6 connected with the rotary seat 5, and further drive the treatment component 2 connected with the rotary rod 6 through the fixed block 12.

Claims (4)

1. A radio frequency treatment device is characterized by comprising a handheld handle (1), a treatment component (2), a rotary rod (6), a controller (10) and a power supply device (4), wherein a first cavity (3) with an opening or hollow one end is formed in the handheld handle (1), the power supply device (4) is connected with a rotary seat (5), one end of the rotary rod (6) is fixedly connected with the rotary seat (5), the other end of the rotary rod (6) is connected with the treatment component (2), a second cavity (7) with an opening one end is formed in the treatment component (2), a radio frequency module (8) and/or an electrical stimulation module (9) are arranged in the second cavity (7), and the radio frequency module (8) and/or the electrical stimulation module (9) are electrically connected with the controller (10); the controller (10) and the power supply device (4) are both arranged in the first cavity (3) or are both arranged in the control box, and the controller (10) is electrically connected with the power supply device (4); the treatment component (2) comprises a probe shell (11) and a fixed block (12) arranged in the second cavity (7), and the rotating rod (6) is connected with the fixed block (12); a limiting hole for locking the rotating rod (6) is formed in the fixing block (12); the probe shell (11) comprises an outer shell (13) and an inner shell (14), and a pressure sensor (18) and/or a temperature sensor (17) are/is arranged between the outer shell (13) and the inner shell (14); a carbon nanotube pressure sensor is arranged between the outer shell (13) and the inner shell (14), and is attached to the inner wall (16) of the outer shell; the carbon nanotube pressure sensor is attached to the inner wall (15) of the inner shell.
2. A radio-frequency treatment device according to claim 1, characterized in that the cross-sections of the rotary rod (6) and the probe housing (11) are circular or elliptical.
3. A radio frequency treatment device according to claim 2, wherein a graphical user interface (20) is provided on the controller (10).
4. A radiofrequency treatment device according to claim 3, wherein the hand-held handle (1) is provided with a manual switch (21) and a power adjustment button (22), and the manual switch (21) and the power adjustment button (22) are electrically connected to the controller (10).
CN201821416246.7U 2018-08-30 2018-08-30 Radio frequency treatment device Active CN210205607U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821416246.7U CN210205607U (en) 2018-08-30 2018-08-30 Radio frequency treatment device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821416246.7U CN210205607U (en) 2018-08-30 2018-08-30 Radio frequency treatment device

Publications (1)

Publication Number Publication Date
CN210205607U true CN210205607U (en) 2020-03-31

Family

ID=69914121

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821416246.7U Active CN210205607U (en) 2018-08-30 2018-08-30 Radio frequency treatment device

Country Status (1)

Country Link
CN (1) CN210205607U (en)

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