An endocrine treatment device

CN117839072BActive Publication Date: 2026-09-22THE FIFTH MEDICAL CENT OF CHINESE PLA GENERAL HOSPITAL
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Patent Information

Application Number
CN202410053610.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-01-15
Publication Date
2026-09-22
Estimated Expiration
2044-01-15

AI Technical Summary

Technical Problem

低频治疗仪通常由治疗仪本体与导线以及电极片组成,使用时将电极片粘贴在身体体表,通过将物理因子作用在人体各部位的经络和穴位进行物理治疗,从而提高临床效果,而电极片在粘贴至人体后,由于其自身存在一定的粘性,导致体表的皮屑、油脂等脏污会附着于电极片表面,若不对其进行清理,则易导致电极片粘性下降,再次使用时,可能会无法与人体皮肤粘贴牢固,导致治疗效果下降,目前的电极片清理方式通常为人手工进行清洗,由于人手在清洗过程中无法准确控制力度,可能会导致电极片清洗不干净,或是清洗过度致使电极片粘性下降,两种情况均会对电极片的后续使用造成不良影响,为此,我们提出一种内分泌治疗器械

Benefits of technology

本发明利用双螺旋轴带动喷头沿导向槽一进行往复运动,喷头喷出的水流成抛物线轨迹落至电极片上,且电极片与喷头间距始终保持一致,不会出现水流冲击力过强或过小的情况,有效对电极片进行冲洗,清洗完成后,通过干燥装置对电极片进行烘干,便于及时取用,并在入料口处设置有清洁布,当电极片取出时可以对其进行擦拭,防止其上还存有水珠。

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Abstract

The present application relates to the technical fields of endocrine therapy, and discloses an endocrine therapy device, which comprises an operating table, a therapeutic instrument fixedly installed on the operating table, a cleaning bin fixedly installed on the operating table, a plurality of electrode pieces arranged in the cleaning bin, a double helix shaft rotatably installed in the cleaning bin, a limiting piece slidably installed on the double helix shaft and matched with the double helix shaft, a nozzle fixedly installed on the limiting piece, and water sprayed by the nozzle falls on the electrode pieces in a parabolic trajectory. The endocrine therapy device drives the nozzle to reciprocate along the guide groove I by the double helix shaft, the water sprayed by the nozzle falls on the electrode pieces in a parabolic trajectory, and the distance between the electrode pieces and the nozzle is always consistent, so that the water flow impact force is neither too strong nor too small, and the electrode pieces can be effectively washed. After cleaning, the electrode pieces are dried by a drying device, so that the electrode pieces can be taken out in time, and a cleaning cloth is arranged at the inlet, so that the electrode pieces can be wiped when taken out.
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Description

Technical Field

[0001] This invention relates to the field of endocrine therapy technology, specifically to an endocrine therapy device. Background Technology

[0002] Endocrine therapy, also known as hormone therapy, uses hormones, a class of chemical substances produced by endocrine cells in the body. These hormones circulate throughout the body via the bloodstream and exert specific effects on certain tissues or cells. Currently, the devices used to treat endocrine disorders are usually low-frequency therapeutic instruments. These instruments have automatically variable frequency pulse voltages that can penetrate deep into tissues to treat both superficial and deep lesions. Their main functions are to regulate the body's immunity, endocrine system, and nervous system. They also have the effects of clearing meridians, improving microcirculation, promoting blood circulation, relieving pain, relaxing muscles and tendons, regulating the five internal organs, and balancing yin and yang. They can regulate the excitability and inhibition of nerves, activate the cell activity of tissues surrounding lesions, enhance local blood circulation and metabolism, improve immunity, regulate endocrine function, and have a repairing and therapeutic effect on tissues surrounding lesions. Low-frequency therapeutic devices typically consist of the device body, wires, and electrode pads. During use, the electrode pads are attached to the body surface. Physical agents are applied to meridians and acupoints in various parts of the body to provide physical therapy, thereby improving clinical efficacy. However, after the electrode pads are attached, their inherent adhesiveness causes dirt, oil, and other contaminants from the skin to adhere to their surface. If not cleaned, the adhesiveness of the electrode pads can decrease, potentially preventing them from adhering firmly to the skin during subsequent use, thus reducing the therapeutic effect. Currently, electrode pads are usually cleaned manually. However, manual cleaning cannot accurately control the pressure applied, potentially resulting in incomplete cleaning or over-cleaning, both of which negatively impact subsequent use. Therefore, we propose an endocrine therapy device. Summary of the Invention

[0003] The purpose of this invention is to provide an endocrine therapy device to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, the present invention provides the following technical solution: an endocrine therapy device, comprising an operating table, a therapy instrument fixedly mounted on the operating table, a plurality of connection ports fixedly mounted on the therapy instrument, each connection port being connected to a wire, each wire being fixedly mounted with a connector and a mating head, each connector being fixedly connected to a corresponding connection port, a cleaning chamber fixedly mounted on the operating table, the cleaning chamber containing a plurality of electrode plates, each electrode plate being fixedly mounted with a connector for mating with a mating head. The cleaning chamber is equipped with a feed trough for inserting electrode plates into the chamber. The feed trough contains several arc-shaped grooves for limiting the connection of the wire ends. A double helical shaft is rotatably mounted inside the cleaning chamber. A limiting component is slidably mounted on the double helical shaft to cooperate with it. A nozzle is fixedly mounted on the limiting component. The water jet from the nozzle falls onto the electrode plates in a parabolic trajectory. A guide groove for limiting the nozzle is provided inside the cleaning chamber. A drain outlet is provided at the bottom of the cleaning chamber. A drying device is fixedly mounted on the cleaning chamber. The cleaning chamber is equipped with several sliding grooves, each corresponding to and connected to an arc-shaped groove. A wedge block is slidably installed in each groove, and two transmission rods are fixedly installed on each wedge block. One end of each transmission rod extends into the arc-shaped groove. Two sliding grooves are symmetrically arranged on the inner walls of both sides of the cleaning chamber. Two sliders are slidably installed in each sliding groove, and a spring is fixedly installed on one side of each slider. One end of each spring is fixedly connected to the inner wall of the corresponding sliding groove. A rotating shaft is rotatably installed between every two corresponding sliders. A collar is rotatably installed on each rotating shaft, and a wedge rod that cooperates with the wedge block is fixedly installed on each collar. A cleaning cloth is provided on each rotating shaft.

[0005] Preferably, one end of each cleaning cloth is fixedly connected to a corresponding rotating shaft, and electromagnetic blocks are fixedly installed on both sides of the other end of each cleaning cloth. Each slider is provided with a rotating groove, and a second torsion spring is provided in each rotating groove. One end of each second torsion spring is fixedly connected to the inner wall of the corresponding rotating groove, and the other end is fixedly connected to the corresponding rotating shaft. Two water baffles are fixedly installed in the cleaning chamber, and several electromagnetic plates that cooperate with the electromagnetic blocks are fixedly installed on each water baffle. The electromagnetic plates correspond one-to-one with the electromagnetic blocks.

[0006] Preferably, each slider is provided with a ball at both the upper and lower ends, and each sliding groove is provided with a guide groove II for limiting the ball on both the upper and lower inner walls, and each ball is located in the corresponding guide groove II.

[0007] Preferably, a limiting block is fixedly installed on each of the wedge rods, and a plurality of limiting grooves are provided on the top inner wall of the cleaning chamber. The limiting grooves correspond one-to-one with the limiting blocks, and each limiting block is slidably installed in the corresponding limiting groove.

[0008] Preferably, a plurality of device plates one and a plurality of device plates two are fixedly installed on the operating table. Each device plate one and device plate two corresponds to a wire. A winding spool is rotatably installed between each device plate one and its corresponding device plate two. Each winding spool is provided with a wire groove for limiting the position of the wire. Each wire is spirally wound onto the winding spool.

[0009] Preferably, each of the winding spools is fixedly mounted with a ratchet, each of the device plates rotatably mounts a pawl that engages with the ratchet, each pawl is fixedly mounted with a spring 2, one end of each spring 2 is fixedly connected to the inner wall of the corresponding device plate 2, each of the device plates slidably mounts a sliding post, each sliding post has a button fixedly mounted on its upper end, each button has a spring 1 fixedly mounted on it, and one end of each spring 1 is fixedly connected to the corresponding device plate 2.

[0010] Preferably, each of the device plates is provided with a first torsion spring, one end of each first torsion spring is fixedly connected to the corresponding winding shaft, and the other end is fixedly connected to the inner wall of the corresponding device plate.

[0011] Preferably, a cover plate is fixedly installed between each of the device plates and the corresponding device plate, and a cleaning component for cleaning the wires is fixedly installed on each of the cover plates, and each cleaning component is made of elastic material.

[0012] Preferably, a protrusion for supporting the electrode sheet is fixedly installed inside the cleaning chamber, and the upper end of the protrusion is configured in an arc shape to facilitate the downward sliding of the electrode sheet.

[0013] Preferably, the upper end of each of the water baffles is configured in an arc shape to facilitate the downward sliding of the electrode sheet.

[0014] Compared with the prior art, the beneficial effects of the present invention are: This invention utilizes a double helical shaft to drive a nozzle to reciprocate along a guide groove. The water jet from the nozzle falls onto the electrode plate in a parabolic trajectory, and the distance between the electrode plate and the nozzle remains consistent, preventing the water jet from being too strong or too weak. This effectively washes the electrode plate. After cleaning, the electrode plate is dried by a drying device for easy and timely use. A cleaning cloth is provided at the feed inlet so that the electrode plate can be wiped when it is removed to prevent water droplets from remaining on it.

[0015] This invention utilizes a first torsion spring to drive a winding spool to wind up the wire, preventing the wire from becoming too long and tangled. A ratchet and pawl limit the winding spool, fixing it after the guide is pulled out. The pawl then releases the ratchet's restriction on the ratchet by turning a knob. The elasticity of the first torsion spring facilitates the winding of the wire. At the same time, a cleaning component cleans both the pulled-out and retracted wires, reducing the possibility of bacteria spreading through the wires. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the first torsion spring structure of the present invention; Figure 3 This is a schematic diagram of the circuit groove structure of the present invention; Figure 4 This is a schematic diagram of the internal structure of the cleaning chamber of the present invention; Figure 5 This is a schematic diagram of the double helical shaft and nozzle structure of the present invention; Figure 6 This is a schematic diagram of the connector and transmission rod structure of the present invention; Figure 7 This is a schematic diagram of the wedge plate and wedge rod structure of the present invention; Figure 8 This is a schematic diagram of the slider and spring structure of the present invention; Figure 9 This is a schematic diagram of the second torsion spring structure of the present invention; Figure 10 This is a schematic diagram of the electromagnetic block and electromagnetic plate structure of the present invention.

[0017] In the diagram: 1-Operating table; 2-Therapeutic instrument; 3-Cleaning chamber; 4-Connecting port; 5-Matching interface; 6-Wire; 7-Matching connector; 8-Cover plate; 9-Device plate one; 10-Device plate two; 11-Roller; 12-Cleaning component; 13-First torsion spring; 14-Ratchet; 15-Pawl; 16-Button; 17-Sliding column; 18-Spring one; 19-Wire groove; 20-Spring two; 21-Drying device; 22-Connecting terminal; 23-Electrode plate; 24-Feeding trough; 25-Arc-shaped groove; 26 27-Water baffle; 28-Protrusion; 29-Double spiral shaft; 30-Limiting component; 31-Nose; 32-Guide groove one; 33-Transmission rod; 34-Wedge block; 35-Slide groove; 36-Wedge rod; 37-Ring; 38-Limiting block; 39-Limiting groove; 40-Rotating shaft; 41-Cleaning cloth; 42-Slider; 43-Ball; 44-Sliding groove; 45-Guide groove two; 46-Rotating groove; 47-Second torsion spring; 48-Electromagnetic block; 49-Electromagnetic plate; 50-Drain outlet. Detailed Implementation

[0018] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0019] Please see Figure 1-10This invention provides a technical solution: an endocrine therapy device, comprising an operating table 1, a therapy instrument 2 fixedly mounted on the operating table 1, a plurality of connection ports 4 fixedly mounted on the therapy instrument 2, each connection port 4 connected to a wire 6, each wire 6 fixedly mounted with a connector 5 and a connector 7, each connector 5 fixedly connected to a corresponding connection port 4, a plurality of device plates 9 and a plurality of device plates 10 fixedly mounted on the operating table 1, each device plate 9 and device plate 10 corresponding one-to-one with a wire 6, a winding spool 11 rotatably mounted between each device plate 9 and its corresponding device plate 10, each winding spool 11 having a mechanism for winding the wire 6. The limiting line groove 19 has each wire 6 spirally wound onto a winding spool 11. A ratchet 14 is fixedly mounted on each winding spool 11. A pawl 15, cooperating with the ratchet 14, is rotatably mounted inside each device plate 2 10. A spring 20 is fixedly mounted on each pawl 15, with one end of each spring 20 fixedly connected to the inner wall of the corresponding device plate 2 10. One end of the auxiliary pawl 15 faces downwards. A sliding post 17 is slidably mounted on each device plate 2 10. A button 16 is fixedly mounted on the upper end of each sliding post 17. A spring 18 is fixedly mounted on each button 16, with one end of each spring 18 fixedly connected to the corresponding device plate 2 10. Each device plate 9 is equipped with a first torsion spring 13. One end of each first torsion spring 13 is fixedly connected to the corresponding winding spool 11, and the other end is fixedly connected to the inner wall of the corresponding device plate 9. A cover plate 8 is fixedly installed between each device plate 9 and the corresponding device plate 10. A cleaning component 12 for cleaning the wire 6 is fixedly installed on each cover plate 8. Each cleaning component 12 is made of elastic material. When using the treatment device 2, the corresponding wire 6 needs to be stretched. Pulling one end of the wire 6 will drive the winding spool 11 to rotate and compress the first torsion spring 13. After stretching, the ratchet wheel 14 is limited by the pawl 15, preventing the winding spool 11 from reversing to retract the wire 6. Meanwhile, the first torsion spring 13 fixes the spool 11, preventing the remaining wire 6 from scattering or tangling while it is wound around the spool 11. When the wire 6 needs to be retrieved after use, the button 16 is pressed, which moves the slide column 17 downward, so that it contacts one end of the pawl 15, causing the other end of the pawl 15 to lift and release the ratchet 14. The first torsion spring 13 itself causes the spool 11 to reverse, rewinding the wire 6. This reduces the chance of the wire 6 scattering and tangling. When the wire 6 is stretched and wound up, it will pass through the cleaning element 12 on the cover plate 8, which cleans the wire 6 during the stretching and winding process, reducing the possibility of bacteria spreading through the wire 6. A cleaning chamber 3 is fixedly installed on the operating table 1. Several electrode plates 23 are installed inside the cleaning chamber 3. Each electrode plate 23 has a connector 22 fixedly installed on it for mating with the connector 7. The cleaning chamber 3 has a feed trough 24 for the electrode plates 23 to enter it. Several arc-shaped grooves 25 are provided in the feed trough 24 to limit the connectors 22. A double helical shaft 28 is rotatably installed inside the cleaning chamber 3. A limiting component 29 is slidably installed on the double helical shaft 28 to cooperate with it. A nozzle 30 is fixedly installed on the limiting component 29. The water sprayed from the nozzle 30 falls onto the electrode plate 23 in a parabolic trajectory. A guide groove 31 is provided inside the cleaning chamber 3 to limit the nozzle 30. When the electrode plates 23 are used up, usually... Cleaning is required. The double helical shaft 28 is driven by the drive device to rotate, so that the limiting member 29 drives the nozzle 30 to reciprocate along the guide groove 31. The water flow sprayed from the nozzle 30 continuously washes the electrode plate 23. The cleaning chamber 3 is fixedly installed with a protrusion 27 to provide support for the electrode plate 23. The upper end of the protrusion 27 is set in an arc shape to facilitate the downward movement of the electrode plate 23. The bottom of the cleaning chamber 3 is provided with a drain outlet 50 to drain the water after cleaning the electrode plate 23. The cleaning chamber 3 is fixedly installed with a drying device 21 for drying the electrode plate 23 after cleaning (the drying device 21 is a known existing structure, so it will not be described in detail in this invention). After the electrode plate 23 is rinsed, the drying device 21 is started to dry the electrode plate 23. The cleaning chamber 3 is equipped with several sliding grooves 34, which correspond one-to-one with the arc-shaped grooves 25 and are connected. A wedge-shaped block 33 is slidably installed in each sliding groove 34, and two transmission rods 32 are fixedly installed on each wedge-shaped block 33. One end of each transmission rod 32 extends into the arc-shaped groove 25. Two sliding grooves 44 are symmetrically arranged on the inner walls of both sides of the cleaning chamber 3. Two sliders 41 are slidably installed in each sliding groove 44, and ball bearings 43 are provided at both ends of each slider 41. The inner walls of both sides of each sliding groove 44 are provided with grooves for guiding the ball bearings 43. The guide groove 45 for limiting movement has each ball bearing 43 located within its corresponding guide groove 45. A spring 42 is fixedly installed on one side of each slider 41, and one end of each spring 42 is fixedly connected to the inner wall of the corresponding sliding groove 44. A rotating shaft 39 is rotatably installed between every two corresponding sliders 41. A collar 36 is rotatably installed on each rotating shaft 39, and a wedge rod 35 that cooperates with the wedge block 33 is fixedly installed on each collar 36. A limit block 37 is fixedly installed on each wedge rod 35. Several limit blocks 37 are provided on the top inner wall of the cleaning chamber 3. The limiting groove 38 corresponds one-to-one with the limiting block 37. Each limiting block 37 is slidably installed in the corresponding limiting groove 38. Each rotating shaft 39 is equipped with a cleaning cloth 40. After the electrode plate 23 is used, it needs to be inserted into the cleaning chamber 3 for cleaning. After the electrode plate 23 is inserted into the feeding groove 24, the connector 22 is inserted into the corresponding arc-shaped groove 25, which drives the corresponding transmission rod 32 and wedge block 33 to move downward along the slide groove 34. Through the cooperation of the wedge block 33 and the wedge rod 35, the two wedge rods 35 drive the two rotating shafts 39 to move in opposite directions. The gap between the two rotating shafts 39 increases, allowing the electrode plate 23 to be inserted into the cleaning chamber 3. When using the electrode plate 23, pull the connector 22 upward and move the electrode plate 23 upward. Through the elastic force of the spring 3 42, the two sliders 41 in the sliding groove 44 move towards each other, causing the two rotating shafts 39 to move the cleaning cloth 40 on them in the same direction. The gap between the two rotating shafts 39 decreases. When the electrode plate 23 is removed, the cleaning cloth 40 on the two rotating shafts 39 wipes the electrode plate 23 dry to prevent water from remaining on the electrode plate 23 and affecting its subsequent use. One end of each cleaning cloth 40 is fixedly connected to a corresponding rotating shaft 39, and electromagnetic blocks 48 are fixedly installed on both sides of the other end of each cleaning cloth 40. Each slider 41 is provided with a rotating groove 46, and each rotating groove 46 is provided with a second torsion spring 47. One end of each second torsion spring 47 is fixedly connected to the inner wall of the corresponding rotating groove 46, and the other end is fixedly connected to the corresponding rotating shaft 39. Two baffles 26 are fixedly installed in the cleaning chamber 3. The upper end of each baffle 26 is set in an arc shape to facilitate the downward movement of the electrode plate 23. Several electromagnetic plates 49 that cooperate with the electromagnetic blocks 48 are fixedly installed on each baffle 26. The electromagnetic plates 49 correspond one-to-one with the electromagnetic blocks 48. When the drying time of the electrode plate 23 is too short... It is possible that water may still remain on it. After being wiped dry by the cleaning cloth 40, the cleaning cloth 40 may become wet again. If the cleaning cloth 40 is repeatedly wiped in a short period of time, it may not be able to maintain the wiping effect. When the repeated wiping of the cleaning cloth 40 in a short period of time is detected, the electromagnetic plate 49 will be energized, and the corresponding electromagnetic block 48 will move downward along the electromagnetic plate 49, stretching the cleaning cloth 40 and compressing the second torsion spring 47. The more frequently the cleaning cloth 40 is wiped, the greater the current on the electromagnetic plate 49 and the longer the electromagnetic block 48 moves downward. Different positions of the cleaning cloth 40 can be used for wiping. When the cleaning cloth 40 is dried by the drying device 21, the electromagnetic plate 49 will be de-energized, and the corresponding electromagnetic block 48 will be reset by the elastic force of the second torsion spring 47.

[0020] Specifically, when using the treatment device 2, the corresponding lead wire 6 needs to be stretched. Pulling one end of the lead wire 6 will cause the winding spool 11 to rotate, compressing the first torsion spring 13. After stretching, the pawl 15 limits the ratchet 14, preventing the winding spool 11 from reversing to retract the lead wire 6. At the same time, the elasticity of the first torsion spring 13 fixes the winding spool 11, preventing the remaining lead wire 6 from unraveling or tangling on the winding spool 11. When the use is finished and the lead wire 6 needs to be retracted, press the button 16, causing the slide column 17 to move downwards and contact one end of the pawl 15, lifting the other end of the pawl 15 and releasing the limitation on the ratchet 14. The elasticity of the first torsion spring 13 itself causes the winding spool 11 to reverse, rewinding the lead wire 6 and reducing the risk of the lead wire 6 unraveling. To prevent knotting, the wire 6 is cleaned by the cleaning element 12 on the cover plate 8 during both stretching and winding, reducing the possibility of bacterial transmission through the wire 6. After use, the electrode plate 23 usually needs to be cleaned. After the electrode plate 23 is inserted into the feed trough 24, the connector 22 is inserted into the corresponding arc-shaped groove 25, which drives the corresponding transmission rod 32 and wedge block 33 to move downward along the slide 34. Through the cooperation of the wedge block 33 and the wedge rod 35, the two wedge rods 35 drive the two rotating shafts 39 to move in opposite directions, increasing the gap between the two rotating shafts 39, allowing the electrode plate 23 to be inserted into the cleaning chamber 3. Then, the drive device drives the double spiral shaft 28 to rotate, causing the limiting element 29 to drive the nozzle 30 along the... The guide groove 31 reciprocates, and the water jet from the nozzle 30 continuously rinses the electrode plate 23. After rinsing the electrode plate 23, the water is discharged through the drain outlet 50. After rinsing the electrode plate 23, the drying device 21 is activated to dry the electrode plate 23. When the electrode plate 23 is needed, the connector 22 is pulled upward, causing the electrode plate 23 to move upward. Through the elastic force of the spring 3 42, the two sliders 41 in the sliding groove 44 move towards each other, causing the two rotating shafts 39 to move towards each other synchronously, reducing the distance between the two rotating shafts 39. When the electrode plate 23 is removed, the cleaning cloths 40 on the two rotating shafts 39 wipe the electrode plate 23 dry to prevent water from remaining on the electrode plate 23 and affecting its subsequent use. If the drying time is too short, water may remain on the cloth. After being wiped dry by the cleaning cloth 40, the cleaning cloth 40 may become wet. If the cleaning cloth 40 is repeatedly wiped in a short period of time, it may not be able to maintain its drying effect. When the cleaning cloth 40 is repeatedly wiped in a short period of time, the electromagnetic plate 49 will be energized, and the corresponding electromagnetic block 48 will move downward along the electromagnetic plate 49, stretching the cleaning cloth 40 and compressing the second torsion spring 47. The more frequently the cleaning cloth 40 is wiped, the greater the current on the electromagnetic plate 49 and the longer the electromagnetic block 48 moves downward. Different positions of the cleaning cloth 40 can be used for wiping. When the cleaning cloth 40 is dried by the drying device 21, the electromagnetic plate 49 will be de-energized, and the corresponding electromagnetic block 48 will be reset by the elastic force of the second torsion spring 47.

[0021] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0022] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An endocrine therapy device, comprising an operating table (1) and a therapy instrument (2) fixedly mounted on the operating table (1), characterized in that: The therapeutic instrument (2) is fixedly equipped with several wiring ports (4), each wiring port (4) is connected to a wire (6), each wire (6) is fixedly equipped with a connector (5) and a connector (7), each connector (5) is fixedly connected to the corresponding wiring port (4), the operating table (1) is fixedly equipped with a cleaning chamber (3), the cleaning chamber (3) is provided with several electrode plates (23), each electrode plate (23) is fixedly equipped with a connector (22) for cooperating with the connector (7), the cleaning chamber (3) is provided with a feeding groove (24) for the electrode plates (23) to enter its interior, The feed trough (24) is provided with several arc-shaped grooves (25) for limiting the connection head (22). The cleaning chamber (3) is rotatably installed with a double helical shaft (28). A limiting member (29) that cooperates with the double helical shaft (28) is slidably installed on the double helical shaft (28). A nozzle (30) is fixedly installed on the limiting member (29). The water jet from the nozzle (30) falls onto the electrode plate (23) in a parabolic trajectory. The cleaning chamber (3) is provided with a guide groove (31) for limiting the nozzle (30). A drain outlet (50) is provided at the bottom of the cleaning chamber (3). A drying device (21) is fixedly installed on the cleaning chamber (3). The cleaning chamber (3) is provided with several sliding grooves (34), each of which corresponds to and is connected to an arc-shaped groove (25). A wedge block (33) is slidably installed in each sliding groove (34), and two transmission rods (32) are fixedly installed on each wedge block (33). One end of each transmission rod (32) extends into the arc-shaped groove (25). Two sliding grooves (44) are symmetrically arranged on the inner walls of both sides of the cleaning chamber (3), and two sliders are slidably installed in each sliding groove (44). 41) A spring three (42) is fixedly installed on one side of each slider (41), and one end of each spring three (42) is fixedly connected to the inner wall of the corresponding sliding groove (44). A rotating shaft (39) is rotatably installed between each pair of corresponding sliders (41). A collar (36) is rotatably installed on each rotating shaft (39). A wedge rod (35) that cooperates with the wedge block (33) is fixedly installed on each collar (36). A cleaning cloth (40) is provided on each rotating shaft (39).

2. The endocrine therapy device according to claim 1, characterized in that: One end of each cleaning cloth (40) is fixedly connected to the corresponding rotating shaft (39), and electromagnetic blocks (48) are fixedly installed on both sides of the other end of each cleaning cloth (40). Each slider (41) is provided with a rotating groove (46), and each rotating groove (46) is provided with a second torsion spring (47). One end of each second torsion spring (47) is fixedly connected to the inner wall of the corresponding rotating groove (46), and the other end is fixedly connected to the corresponding rotating shaft (39). Two baffles (26) are fixedly installed in the cleaning chamber (3). Each baffle (26) is fixedly installed with several electromagnetic plates (49) that cooperate with the electromagnetic blocks (48). The electromagnetic plates (49) correspond one-to-one with the electromagnetic blocks (48).

3. An endocrine therapy device according to claim 1, characterized in that: Each slider (41) is provided with a ball (43) at both the upper and lower ends, and each sliding groove (44) is provided with a guide groove (45) on both the upper and lower inner walls for limiting the ball (43). Each ball (43) is located in the corresponding guide groove (45).

4. An endocrine therapy device according to claim 1, characterized in that: Each of the wedge rods (35) is fixedly installed with a limiting block (37). The top inner wall of the cleaning chamber (3) is provided with several limiting grooves (38). The limiting grooves (38) correspond one-to-one with the limiting blocks (37). Each limiting block (37) is slidably installed in the corresponding limiting groove (38).

5. An endocrine therapy device according to claim 1, characterized in that: The operating table (1) is fixedly installed with several device plates one (9) and several device plates two (10). Each device plate one (9) and device plate two (10) corresponds to a wire (6). Each device plate one (9) and the corresponding device plate two (10) is rotatably mounted with a winding spool (11). Each winding spool (11) is provided with a line groove (19) for limiting the wire (6). Each wire (6) is spirally wound onto the winding spool (11).

6. An endocrine therapy device according to claim 5, characterized in that: Each of the winding spools (11) is fixedly equipped with a ratchet (14), and each of the device plates (10) is rotatably equipped with a pawl (15) that cooperates with the ratchet (14). Each of the pawls (15) is fixedly equipped with a spring (20), and one end of each spring (20) is fixedly connected to the inner wall of the corresponding device plate (10). Each of the device plates (10) is slidably equipped with a slide post (17), and a button (16) is fixedly installed at the upper end of each slide post (17). Each button (16) is fixedly equipped with a spring (18), and one end of each spring (18) is fixedly connected to the corresponding device plate (10).

7. An endocrine therapy device according to claim 6, characterized in that: Each of the device plates (9) is provided with a first torsion spring (13), one end of each first torsion spring (13) is fixedly connected to the corresponding winding shaft (11), and the other end is fixedly connected to the inner wall of the corresponding device plate (9).

8. An endocrine therapy device according to claim 5, characterized in that: Each of the device plates (9) is fixedly installed with a cover plate (8) between the corresponding device plate (10), and each of the cover plates (8) is fixedly installed with a cleaning component (12) for cleaning the wire (6), and each of the cleaning components (12) is made of elastic material.

9. An endocrine therapy device according to claim 1, characterized in that: The cleaning chamber (3) is fixedly installed with a protrusion (27) for providing support for the electrode sheet (23), and the upper end of the protrusion (27) is set in an arc shape to facilitate the downward movement of the electrode sheet (23).

10. An endocrine therapy device according to claim 2, characterized in that: The upper end of each of the baffles (26) is configured in an arc shape to facilitate the downward movement of the electrode sheet (23).

Citation Information

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