Privacy protection structure for electromyography examination quantitative pressure measurement
Through the combination of anti-tug-type shading mechanism and light-transmitting disinfection mechanism, the problems of incomplete privacy protection and disinfection of shading curtains in electromyography examination are solved, and the efficient use and sterilization effect of shading curtains are achieved.
Patent Information
- Application Number
- CN202510601507.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-12
- Publication Date
- 2025-07-22
AI Technical Summary
The existing privacy protection structure cannot fully protect patient privacy during electromyography examination, and does not have the ability to disinfect the shading curtains after use, resulting in privacy leakage and waste of resources.
The anti-tug-type shading mechanism and the light-transmitting disinfection mechanism are adopted, combined with the loose winding structure and the magnetic field repelling structure, and the coiling and sterilization of the semi-transparent fiber-blend fabric curtain is achieved through the cooperation of the retracting and release mechanism, the guide mechanism, the hidden protection mechanism, the gap expansion mechanism and the light-emitting mechanism.
The efficient use of shielding curtains is achieved under low-intensity stretching, improving privacy protection efficiency, and reducing resource waste through ultraviolet light sterilization.
Smart Images

Figure CN120346005A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of privacy protection, and specifically refers to a privacy protection structure for quantitative pressure measurement in electromyogram examination. Background Art
[0002] Electromyogram (EMG) refers to the bioelectrical pattern of muscles recorded by an electromyograph. This examination uses electronic instruments to record the bioelectrical signals of muscles at rest or during contraction, and can be used to examine the excitatory and conductive functions of nerves and muscles, etc., so as to determine the functional status of peripheral nerves, neurons, neuromuscular junctions, and muscles themselves. Privacy protection is crucial during the process of quantitative pressure measurement in electromyogram examination.
[0003] The existing privacy protection structures currently have the following problems: When the existing privacy protection structures protect the privacy of patients, after the patients take off their clothes and lie flat on the examination bed, then a medical cloth is used to cover the patients. Using this method, the privacy protection of patients is not comprehensive enough, resulting in the problem that the patients are prone to privacy leakage during the process of taking off clothes and lying flat on the examination bed. Moreover, the traditional privacy protection structures do not have the ability to disinfect the used shielding curtains, and when using disposable shielding curtains, it will cause great waste. Therefore, they cannot meet the current usage requirements for privacy protection structures. Summary of the Invention
[0004] In view of the above situation, to overcome the defects of the prior art, this solution provides a privacy protection structure for quantitative pressure measurement in electromyogram examination, which can unwind and wind up the shielding curtain under the condition of reducing the tensile strength of the shielding curtain, improve the usage efficiency of the shielding curtain, and can perform light-transmitting sterilization on the used shielding curtain.
[0005] The technical solution adopted by this solution is as follows: A privacy protection structure for quantitative pressure measurement in electromyogram examination proposed by this solution includes a protection frame, fixing bolts, mounting plates, a tensile-resistant shielding mechanism, and a light-transmitting disinfection mechanism. The fixing bolts are disposed through the inner wall at one end of the protection frame, and the fixing bolts are threadedly connected to the protection frame. The mounting plates are symmetrically disposed on the bottom wall of the protection frame. The tensile-resistant shielding mechanism is disposed on the protection frame, and the light-transmitting disinfection mechanism is disposed on the tensile-resistant shielding mechanism. The tensile-resistant shielding mechanism includes a winding and unwinding mechanism, a guiding mechanism, and a privacy protection mechanism. The winding and unwinding mechanism is disposed on the upper wall at one end of the protection frame. The guiding mechanism is disposed on the side of the winding and unwinding mechanism close to the protection frame. The privacy protection mechanism is disposed at the end of the protection frame away from the winding and unwinding mechanism. The light-transmitting disinfection mechanism includes a gap-expanding mechanism and a light-emitting mechanism. The gap-expanding mechanism is disposed on the side of the winding and unwinding mechanism close to the guiding mechanism. The light-emitting mechanism is disposed on the side of the winding and unwinding mechanism away from the gap-expanding mechanism.
[0006] As a further optimization of the solution in this case, the retracting and releasing mechanism includes a retracting and releasing frame, a retracting and releasing motor, and a retracting and releasing cylinder. The retracting and releasing frame is arranged on the upper wall of one end of the protective frame close to the fixing bolt. The retracting and releasing motor is arranged on the side wall of the end of the retracting and releasing frame away from the protective frame. The retracting and releasing cylinder is rotatably arranged on the inner wall of the end of the retracting and releasing frame close to the retracting and releasing motor. The power end of the retracting and releasing motor penetrates through the retracting and releasing frame and is connected to the retracting and releasing cylinder. The guiding mechanism includes a guiding frame and a guiding cylinder. The guiding frame is symmetrically arranged on the upper wall of one end of the protective frame close to the retracting and releasing mechanism. The guiding cylinder is rotatably arranged between the guiding frames. The hidden protection mechanism includes a sliding groove, a pulling groove, a sliding block, a sliding shaft, a retracting spring, a pull rod, a fixed curtain plate, a semi-transparent fiber blended fabric curtain, and a positioning port. The sliding grooves are symmetrically arranged on the inner walls of both ends of the protective frame and are through settings. The pulling grooves are symmetrically arranged on the upper walls of both ends of the protective frame and are through settings. The sliding grooves communicate with the pulling grooves. The sliding shafts are arranged on the inner walls of the sliding grooves. The sliding blocks are slidably arranged on the inner walls of the sliding grooves outside the sliding shafts. The retracting springs are arranged between the sliding blocks outside the sliding shafts and the inner walls of the sliding grooves. Multiple groups of positioning ports are arranged on the bottom walls of the sliding grooves and the inner walls of the sliding shafts. The pull rod penetrates through the pulling groove, the sliding block, and the sliding shaft and is arranged inside the positioning port. The fixed curtain plate is arranged at one end of the sliding block close to the retracting spring. The semi-transparent fiber blended fabric curtain is arranged between the retracting and releasing cylinder and the fixed curtain plate. The semi-transparent fiber blended fabric curtain is wound around the outside of the retracting and releasing cylinder, and the semi-transparent fiber blended fabric curtain is attached to the side of the guiding cylinder close to the inner wall of the protective frame.
[0007] During use, the retracting spring is in a compressed state. The semi-transparent fiber blended fabric curtain is wound around the outside of the retracting and releasing cylinder. The retracting and releasing motor drives the retracting and releasing cylinder to rotate forward through the power end. The retracting and releasing cylinder performs a unwinding operation on the semi-transparent fiber blended fabric curtain wound on its surface. The semi-transparent fiber blended fabric curtain falls off from the outside of the retracting and releasing cylinder. The patient manually lifts the pull rod, and the pull rod is pulled out from inside the positioning port. By pulling the pull rod, the pull rod drives the sliding block to slide along the outside of the sliding shaft by using the deformation of the retracting spring. The sliding block pulls the semi-transparent fiber blended fabric curtain through the fixed curtain plate. The semi-transparent fiber blended fabric curtain covers the patient's body. When the patient releases the pull rod, the pull rod falls into the inside of the positioning port by gravity, and the sliding block changes from a movable state to a fixed state, thereby protecting the patient's privacy.
[0008] Preferably, the gap-expanding mechanism includes a soft iron bar, a magnetic rack, and an electromagnet. A plurality of groups of the soft iron bars are arranged on the side of the semi-transparent fiber blended cloth curtain facing the protective rack. The distance between the soft iron bars is one-fourth of the circumferential length of the winding and unwinding cylinder. The magnetic rack is arranged on the side of the winding and unwinding rack close to the guiding rack. The electromagnet penetrates through the inner wall of the magnetic rack and is arranged opposite to the winding and unwinding cylinder. The light-emitting mechanism includes a light-emitting rack, a light-emitting cover, a light-emitting port, an ultraviolet lamp, and a convex lens. The light-emitting rack is arranged on the side of the winding and unwinding cylinder away from the magnetic rack. The light-emitting cover is arranged between one end of the light-emitting rack away from the winding and unwinding rack. The light-emitting cover is provided with an opening at one end. A plurality of groups of the light-emitting ports are arranged on the side of the light-emitting cover away from the light-emitting rack. The ultraviolet lamp is arranged on the inner wall of one end of the light-emitting port away from the light-emitting rack. The convex lens is arranged on the inner wall of one end of the light-emitting port away from the ultraviolet lamp.
[0009] During use, after the patient uses the semi-transparent fiber blended cloth curtain, the pull rod is lifted, and the pull rod is pulled out from the inside of the positioning port. The sliding block changes from a fixed state to a movable state. The retraction spring rebounds and drives the sliding block to slide along the sliding shaft and approach the winding and unwinding rack. At this time, the semi-transparent fiber blended cloth curtain is in a relaxed state. The power end of the winding and unwinding motor reversely drives the winding and unwinding cylinder, and the winding and unwinding cylinder rotates to wind the semi-transparent fiber blended cloth curtain. During the process of winding the semi-transparent fiber blended cloth curtain around the winding and unwinding cylinder, the semi-transparent fiber blended cloth curtain drives the soft iron bars to be circumferentially arranged on the upper, lower, left, and right sides of the winding and unwinding cylinder. The electromagnet is energized to generate magnetism, and the electromagnet magnetizes the soft iron bars entering the outside of the winding and unwinding cylinder. After being magnetized, the soft iron bars have magnetism. The soft iron bars on the outside of the winding and unwinding cylinder are arranged with the same poles. The semi-transparent fiber blended cloth curtain on the innermost layer of the winding and unwinding cylinder fits with its side wall. The winding and unwinding cylinder is made of non-magnetic material and does not generate magnetic field adsorption with the soft iron bars. Under the action of the magnetic field between the soft iron bars, gaps are reserved between adjacent semi-transparent fiber blended cloth curtains. When the semi-transparent fiber blended cloth curtains are loosely attached, light is more likely to pass through. The ultraviolet light emitted by the ultraviolet lamp is focused by the convex lens and then irradiated onto the semi-transparent fiber blended cloth curtain. On the one hand, it can reduce the probability of ultraviolet light leakage. On the other hand, it can enhance the penetration power of ultraviolet light, facilitating the sterilization of the used semi-transparent fiber blended cloth curtain.
[0010] Specifically, a controller is provided on the upper wall of one end of the protective rack away from the fixing bolt.
[0011] Among them, the controller is electrically connected to the winding and unwinding motor, the electromagnet, and the ultraviolet lamp respectively.
[0012] The beneficial effects obtained by adopting the above structure are as follows: Compared with the prior art, the present solution combines a loose winding structure and a magnetic field repulsion structure. Through the provided anti-tensile shielding mechanism and light-transmitting disinfection mechanism, and with the coordinated use of the winding and unwinding mechanism, guiding mechanism, hidden protection mechanism, gap-expanding mechanism, and light-emitting mechanism, it is possible to wind and unwind the semi-transparent fiber blended cloth curtain under low-intensity tension, thereby completing the shielding of the patient's private parts while protecting the semi-transparent fiber blended cloth curtain. Moreover, by utilizing the magnetic conductivity of the soft iron bars, the soft iron bars repel each other, stretching the semi-transparent fiber blended cloth curtain outside the winding and unwinding cylinder, facilitating an increase in the area of the ultraviolet light generated by the ultraviolet lamp irradiating the surface of the semi-transparent fiber blended cloth curtain, strengthening the sterilization effect of the semi-transparent fiber blended cloth curtain, and thus improving the usage efficiency of the semi-transparent fiber blended cloth curtain in the privacy shielding operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 is a schematic diagram of the overall structure of the present solution; Figure 2 is a front perspective view of the present solution; Figure 3 is a bottom perspective view of the present solution; Figure 4 is a front view of the present solution; Figure 5 is a left view of the present solution; Figure 6 is a right view of the present solution; Figure 7 is a top view of the present solution; Figure 8 is Figure 7 a partial cross-sectional view along A-A of Figure 9 is Figure 2 an enlarged structural view of part I of Figure 10 is Figure 3 an enlarged structural view of part II of Figure 11 is Figure 8 an enlarged structural view of part III of Figure 12 is Figure 1 an enlarged structural view of part Ⅳ of
[0014] Among them, 1. Protective frame, 2. Fixed bolt, 3. Mounting plate, 4. Anti-pulling shielding mechanism, 5. Retracting and extending mechanism, 6. Retracting and extending frame, 7. Retracting and extending motor, 8. Retracting and extending cylinder, 9. Guiding mechanism, 10. Guiding frame, 11. Guiding cylinder, 12. Hidden protection mechanism, 13. Sliding groove, 14. Pulling groove, 15. Sliding block, 16. Sliding shaft, 17. Retracting spring, 18. Pulling rod, 19. Fixed curtain plate, 20. Translucent disinfection mechanism, 21. Gap expanding mechanism, 22. Soft iron bar, 23. Magnetic force frame, 24. Electromagnet, 25. Light emitting mechanism, 26. Light emitting frame, 27. Light emitting cover, 28. Light emitting port, 29. Ultraviolet lamp, 30. Convex lens, 31. Controller, 32. Semi-transparent fiber blended cloth curtain, 33. Positioning port.
[0015] The accompanying drawings are used to provide a further understanding of the solution and form a part of the description. They are used together with the embodiments of the solution to explain the solution and do not constitute a limitation to the solution. Specific embodiments
[0016] The following will clearly and completely describe the technical solutions in the embodiments of the solution with reference to the accompanying drawings in the embodiments of the solution. Obviously, the described embodiments are only a part of the embodiments of the solution, rather than all the embodiments; based on the embodiments in the solution, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the solution.
[0017] In the description of the solution, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. indicating the orientation or position relationship are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the solution and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be understood as a limitation to the solution.
[0018] Such as Figures 1-12As shown in the figure, a privacy protection structure for quantitative pressure measurement in electromyogram examination proposed by this solution includes a protection frame 1, fixing bolts 2, a mounting plate 3, a tensile-resistant shielding mechanism 4, and a light-transmitting disinfection mechanism 20. The fixing bolts 2 are arranged through the inner wall of one end of the protection frame 1, and the fixing bolts 2 are threadedly connected to the protection frame 1. The mounting plates 3 are symmetrically arranged on the bottom wall of the protection frame 1. The tensile-resistant shielding mechanism 4 is arranged on the protection frame 1, and the light-transmitting disinfection mechanism 20 is arranged on the tensile-resistant shielding mechanism 4. The tensile-resistant shielding mechanism 4 includes a retracting and releasing mechanism 5, a guiding mechanism 9, and a privacy protection mechanism 12. The retracting and releasing mechanism 5 is arranged on the upper wall of one end of the protection frame 1. The guiding mechanism 9 is arranged on the side of the retracting and releasing mechanism 5 close to the protection frame 1. The privacy protection mechanism 12 is arranged at the end of the protection frame 1 far from the retracting and releasing mechanism 5. The light-transmitting disinfection mechanism 20 includes a gap-expanding mechanism 21 and a light-emitting mechanism 25. The gap-expanding mechanism 21 is arranged on the side of the retracting and releasing mechanism 5 close to the guiding mechanism 9. The light-emitting mechanism 25 is arranged on the side of the retracting and releasing mechanism 5 far from the gap-expanding mechanism 21.
[0019] The retracting and releasing mechanism 5 includes a retracting and releasing frame 6, a retracting and releasing motor 7, and a retracting and releasing cylinder 8. The retracting and releasing frame 6 is arranged on the upper wall of one end of the protection frame 1 close to the fixing bolts 2. The retracting and releasing motor 7 is arranged on the side wall of the retracting and releasing frame 6 far from the protection frame 1. The retracting and releasing cylinder 8 is rotatably arranged on the inner wall of one end of the retracting and releasing frame 6 close to the retracting and releasing motor 7. The power end of the retracting and releasing motor 7 penetrates through the retracting and releasing frame 6 and is connected to the retracting and releasing cylinder 8. The guiding mechanism 9 includes a guiding frame 10 and a guiding cylinder 11. The guiding frames 10 are symmetrically arranged on the upper wall of one end of the protection frame 1 close to the retracting and releasing mechanism 5. The guiding cylinder 11 is rotatably arranged between the guiding frames 10. The privacy protection mechanism 12 includes a sliding groove 13, a pulling groove 14, a sliding block 15, a sliding shaft 16, a retracting spring 17, a pull rod 18, a fixed curtain plate 19, a semi-transparent fiber blended cloth curtain 32, and a positioning port 33. The sliding grooves 13 are symmetrically arranged on the inner walls of both ends of the protection frame 1, and the sliding grooves 13 are through settings. The pulling grooves 14 are symmetrically arranged on the upper walls of both ends of the protection frame 1, and the pulling grooves 14 are through settings. The sliding grooves 13 are communicated with the pulling grooves 14. The sliding shafts 16 are arranged on the inner walls of the sliding grooves 13. The sliding blocks 15 are slidably arranged on the inner walls of the sliding grooves 13 on the outer sides of the sliding shafts 16. The retracting springs 17 are arranged between the sliding blocks 15 on the outer sides of the sliding shafts 16 and the inner walls of the sliding grooves 13. Multiple groups of positioning ports 33 are arranged on the bottom walls of the sliding grooves 13 and the inner walls of the sliding shafts 16. The pull rod 18 penetrates through the pulling groove 14, the sliding block 15, and the sliding shaft 16 and is arranged inside the positioning port 33. The fixed curtain plate 19 is arranged at one end of the sliding block 15 close to the retracting spring 17. The semi-transparent fiber blended cloth curtain 32 is arranged between the retracting and releasing cylinder 8 and the fixed curtain plate 19. The semi-transparent fiber blended cloth curtain 32 is wound around the outer side of the retracting and releasing cylinder 8. The semi-transparent fiber blended cloth curtain 32 is attached to the side of the guiding cylinder 11 close to the inner wall of the protection frame 1.
[0020] The gap-expanding mechanism 21 includes soft iron bars 22, a magnetic force frame 23, and an electromagnet 24. Multiple groups of the soft iron bars 22 are arranged on the side of the semi-transparent fiber blended cloth curtain 32 facing the protection frame 1. The distance between the soft iron bars 22 is one-fourth of the circumferential length of the winding and unwinding cylinder 8. The magnetic force frame 23 is arranged on the side of the winding and unwinding frame 6 close to the guiding frame 10. The electromagnet 24 is arranged through the inner wall of the magnetic force frame 23, and the electromagnet 24 is arranged opposite to the winding and unwinding cylinder 8. The light-emitting mechanism 25 includes a light-emitting frame 26, a light-emitting cover 27, a light-emitting port 28, an ultraviolet lamp 29, and a convex lens 30. The light-emitting frame 26 is arranged on the side of the winding and unwinding cylinder 8 away from the magnetic force frame 23. The light-emitting cover 27 is arranged between one end of the light-emitting frame 26 away from the winding and unwinding frame 6. The light-emitting cover 27 is provided with an opening at one end. Multiple groups of the light-emitting ports 28 are arranged on the side of the light-emitting cover 27 away from the light-emitting frame 26. The ultraviolet lamp 29 is arranged on the inner wall of one end of the light-emitting port 28 away from the light-emitting frame 26. The convex lens 30 is arranged on the inner wall of one end of the light-emitting port 28 away from the ultraviolet lamp 29.
[0021] On the upper wall of one end of the protection frame 1 away from the fixing bolt 2, a controller 31 is provided.
[0022] The controller 31 is electrically connected to the winding and unwinding motor 7, the electromagnet 24, and the ultraviolet lamp 29 respectively.
[0023] During specific use, in the initial state, the retraction spring 17 is in a compressed state. The semi-transparent fiber blended cloth curtain 32 is wound around the outside of the winding and unwinding cylinder 8. The winding and unwinding motor 7 is installed at one end of the examination bed through the fixing bolt 2. The mounting plate 3 is attached to the upper wall of the examination bed. Rotate the fixing bolt 2, and the fixing bolt 2 is screwed into the inside of the examination bed, and the protection frame 1 is fixed on the examination bed. The patient lies on the examination bed inside the protection frame 1. The controller 31 controls the electromagnet 24 to start. The electromagnet 24 is energized to generate magnetism. The area inside the electromagnet 24 close to the winding and unwinding cylinder 8 contains a magnetic field. The soft iron bars 22 are magnetized by the magnetic field, and the same poles of the soft iron bars 22 are arranged. At this time, the controller 31 controls the winding and unwinding motor 7 to start. The winding and unwinding motor 7 drives the winding and unwinding cylinder 8 to rotate forward through the power end. The winding and unwinding cylinder 8 performs a unwinding operation on the semi-transparent fiber blended cloth curtain 32 wound on its surface. The semi-transparent fiber blended cloth curtain 32 falls off from the outside of the winding and unwinding cylinder 8. Since there is a magnetic field with the same poles between the soft iron bars 22, the semi-transparent fiber blended cloth curtain 32 falling off from the outside of the winding and unwinding cylinder 8 will not be randomly piled up, avoiding the phenomenon of knotting when pulling the semi-transparent fiber blended cloth curtain 32. The patient manually lifts the pull rod 18, and the pull rod 18 is withdrawn from the inside of the positioning port 33. By pulling the pull rod 18, the deformation of the retraction spring 17 drives the sliding block 15 to slide along the outside of the sliding shaft 16. The sliding block 15 pulls the semi-transparent fiber blended cloth curtain 32 through the fixed curtain plate 19, which can reduce the pulling strength on the semi-transparent fiber blended cloth curtain 32. The semi-transparent fiber blended cloth curtain 32 separated from the winding and unwinding cylinder 8 covers the patient's body. When the patient releases the pull rod 18, the pull rod 18 falls into the inside of the positioning port 33 due to gravity, and the sliding block 15 changes from the active state to the fixed state. The semi-transparent fiber blended cloth curtain 32 is flat above the patient's body, facilitating the patient to take off the lower body clothes on the examination bed, and thus protecting the patient's privacy; After the examination, the patient needs to sterilize the semi-transparent fiber blended cloth curtain 32 for repeated use. After the patient puts on the lower body clothes, the pull rod 18 is lifted, and the pull rod 18 is withdrawn from the inside of the positioning port 33. The sliding block 15 changes from the fixed state to the active state, and the retraction spring 17 rebounds and resets to drive the sliding block 15 to slide along the sliding shaft 16 and approach the winding and unwinding frame 6. At this time, the semi-transparent fiber blended cloth curtain 32 is in a relaxed state; The controller 31 controls the winding and unwinding motor 7 to start. The power end of the winding and unwinding motor 7 rotates in reverse to drive the winding and unwinding cylinder 8. The winding and unwinding cylinder 8 rotates to wind the semi-transparent fiber blended cloth curtain 32. During the process of winding the semi-transparent fiber blended cloth curtain 32 around the winding and unwinding cylinder 8, the semi-transparent fiber blended cloth curtain 32 drives the soft iron strips 22 to be circumferentially arranged on the upper, lower, left, and right sides of the winding and unwinding cylinder 8. The semi-transparent fiber blended cloth curtain 32 is wound in multiple layers on the outside of the winding and unwinding cylinder 8. The controller 31 controls the electromagnet 24 to start. The electromagnet 24 is energized to generate magnetism. The electromagnet 24 magnetizes the soft iron strips 22 entering the outside of the winding and unwinding cylinder 8. After being magnetized, the soft iron strips 22 have magnetism. The soft iron strips 22 on the outside of the winding and unwinding cylinder 8 are arranged with the same poles. The semi-transparent fiber blended cloth curtain 32 on the innermost layer of the winding and unwinding cylinder 8 is attached to its side wall. The winding and unwinding cylinder 8 is made of non-magnetic material and does not generate magnetic field adsorption with the soft iron strips 22. Under the action of the magnetic field between the soft iron strips 22, gaps are reserved between adjacent semi-transparent fiber blended cloth curtains 32, and light is more likely to pass through when the semi-transparent fiber blended cloth curtains 32 are loosely attached to each other; The controller 31 controls the ultraviolet lamp 29 to start. The ultraviolet light emitted by the ultraviolet lamp 29 is focused by the convex lens 30 and then irradiates the semi-transparent fiber blended cloth curtain 32. On the one hand, it can reduce the probability of ultraviolet light leakage, and on the other hand, it can enhance the penetration power of ultraviolet light, facilitating the sterilization of the wound semi-transparent fiber blended cloth curtain 32 after use. Just repeat the above operations for the next use.
[0024] It should be noted that in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device.
[0025] The above describes the present solution and its implementation manners. Such description is not restrictive. What is shown in the drawings is only one of the implementation manners of the present solution, and the actual structure is not limited thereto. All in all, if those of ordinary skill in the art are inspired by it and design, without creative efforts, structural manners and embodiments similar to the technical solution without departing from the creative purpose of the present solution, they shall fall within the protection scope of the present solution.
Claims
1. A privacy protection structure for quantitative pressure measurement in electromyogram examination, comprising a protection frame, fixing bolts and a mounting plate, characterized in that: It also includes a pull-resistant shielding mechanism and a light-transmitting disinfection mechanism. The fixing bolt is disposed through the inner wall of one end of the protection frame, and the fixing bolt is threadedly connected to the protection frame. The mounting plates are symmetrically disposed on the bottom wall of the protection frame; The pull-resistant shielding mechanism includes a retracting and releasing mechanism, a guiding mechanism, and a hidden protection mechanism; The retracting and releasing mechanism is disposed on the upper wall of one end of the protection frame. The guiding mechanism is disposed on the side of the retracting and releasing mechanism close to the protection frame. The hidden protection mechanism is disposed at one end of the protection frame away from the retracting and releasing mechanism; The retracting and releasing mechanism includes a retracting and releasing frame, a retracting and releasing motor, and a retracting and releasing cylinder; The retracting and releasing frame is disposed on the upper wall of one end of the protection frame close to the fixing bolt. The retracting and releasing motor is disposed on the side wall of the retracting and releasing frame away from the protection frame. The retracting and releasing cylinder is rotatably disposed on the inner wall of one end of the retracting and releasing frame close to the retracting and releasing motor; The hidden protection mechanism includes a sliding groove, a pulling groove, a sliding block, a sliding shaft, a retracting spring, a pull rod, a fixed curtain plate, a semi-transparent fiber blended cloth curtain, and a positioning port; The sliding grooves are symmetrically disposed on the inner walls of both ends of the protection frame. The pulling grooves are symmetrically disposed on the upper walls of both ends of the protection frame. The sliding shaft is disposed on the inner wall of the sliding groove. The sliding block is slidably disposed on the inner wall of the sliding groove outside the sliding shaft. The retracting spring is disposed between the sliding block outside the sliding shaft and the inner wall of the sliding groove. Multiple groups of positioning ports are disposed on the bottom wall of the sliding groove and the inner wall of the sliding shaft. The pull rod passes through the pulling groove, the sliding block, and the sliding shaft and is disposed inside the positioning port. The fixed curtain plate is disposed at one end of the sliding block close to the retracting spring. The semi-transparent fiber blended cloth curtain is disposed between the retracting and releasing cylinder and the fixed curtain plate.
2. The privacy protection structure for quantitative pressure measurement in electromyogram examination according to claim 1, characterized in that: The light-transmitting disinfection mechanism includes a gap-expanding mechanism and a light-emitting mechanism. The gap-expanding mechanism is disposed on the side of the retracting and releasing mechanism close to the guiding mechanism. The light-emitting mechanism is disposed on the side of the retracting and releasing mechanism away from the gap-expanding mechanism.
3. A privacy protection structure for quantitative pressure measurement in electromyogram examination according to claim 1, characterized in that: The semi-transparent fiber blended cloth curtain is wound around the outside of the retracting and releasing cylinder. The power end of the retracting and releasing motor passes through the retracting and releasing frame and is connected to the retracting and releasing cylinder. The sliding groove is a through setting. The pulling groove is a through setting. The sliding groove communicates with the pulling groove.
4. A privacy protection structure for quantitative pressure measurement in electromyogram examination according to claim 1, characterized in that: The guiding mechanism includes a guiding frame and a guiding cylinder. The guiding frames are symmetrically disposed on the upper wall of one end of the protection frame close to the retracting and releasing mechanism. The guiding cylinder is rotatably disposed between the guiding frames. The semi-transparent fiber blended cloth curtain is attached to the side of the guiding cylinder close to the inner wall of the protection frame.
5. A privacy protection structure for quantitative pressure measurement in electromyogram examination according to claim 2, characterized in that: The gap-expanding mechanism includes soft iron bars, a magnetic force frame, and an electromagnet. Multiple groups of soft iron bars are disposed on the side of the semi-transparent fiber blended cloth curtain facing the protection frame. The distance between the soft iron bars is one-fourth of the circumferential length of the retracting and releasing cylinder. The magnetic force frame is disposed on the side of the retracting and releasing frame close to the guiding frame. The electromagnet is disposed through the inner wall of the magnetic force frame. The electromagnet is disposed opposite to the retracting and releasing cylinder.
6. The privacy protection structure for quantitative pressure measurement in electromyogram examination according to claim 5, characterized in that: The light-emitting mechanism includes a light-emitting frame, a light-emitting cover, a light-emitting port, an ultraviolet lamp, and a convex lens. The light-emitting frame is disposed on the side of the retracting and releasing cylinder away from the magnetic force frame. The light-emitting cover is disposed between the ends of the light-emitting frame away from the retracting and releasing frame. The light-emitting cover is provided with an opening at one end. Multiple groups of light-emitting ports are disposed on the side of the light-emitting cover away from the light-emitting frame. The ultraviolet lamp is disposed on the inner wall of the light-emitting port away from the light-emitting frame. The convex lens is disposed on the inner wall of the light-emitting port away from the ultraviolet lamp.
7. A privacy protection structure for quantitative pressure measurement in electromyogram examination according to claim 1, characterized in that: A controller is disposed on the upper wall of one end of the protection frame away from the fixing bolt.
8. A privacy protection structure for quantitative pressure measurement in electromyogram examination according to claim 7, characterized in that: The controller is electrically connected to the retracting and releasing motor, the electromagnet, and the ultraviolet lamp respectively.