Interactive demonstration device for displaying and learning human body acupoints and meridians in museum

By combining the interactive display methods of solid copper man, rotating mechanism and multimedia display screen, the problems of insufficient attraction and monotonous information in the existing technology are solved, detailed display and interactive learning are achieved, and the educational effect of the museum is improved.

CN223230045UActive Publication Date: 2025-08-15CHINA SCI & TECH MUSEUM
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Patent Information

Application Number
CN202422021898.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-20
Publication Date
2025-08-15
Estimated Expiration
2034-08-20

AI Technical Summary

Technical Problem

In the prior art, when displaying acupuncture physical copper man exhibits, they are not attractive, have limited information, monotonous interaction methods, cannot provide detailed information, and have poor contact with physical copper man.

Method used

Design an interactive demonstration device, combining physical bronze man, rotating mechanism and multimedia display, through the combination of virtual bronze man and physical bronze man, 360° observation and detailed introduction are achieved, and the options on the display are used for interactive learning and exams to enhance interaction and fun.

Benefits of technology

It improves the interactiveness and fun of the exhibits, enriches the display content of acupuncture points and meridians, guides the audience to learn relevant knowledge independently, and enhances their understanding and attraction of traditional Chinese medicine culture.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an interactive demonstration device for displaying and learning human body acupoints and meridians in a museum, and relates to the technical field of exhibition appliances in science and technology museums. Comprising a display cabinet and a control system, a rotating mechanism for driving a solid copper person to rotate is arranged in the display cabinet, acupoint lamp beads are arranged on the solid copper person, and a front cabinet door of the display cabinet is a display screen; a virtual copper person, a physical copper person brief introduction option, a rotary watching option, an acupuncture learning option and an acupuncture examination option which are matched with the physical copper person are displayed on the display screen; the virtual copper person is provided with acupuncture points and acupuncture point name annotations, the acupuncture points on the virtual copper person are pressed down, acupuncture point positions, needle inserting modes and character information mainly used for treating diseases are displayed on the display screen beside the acupuncture points, and acupuncture point lamp beads at the acupuncture points, corresponding to the virtual copper person, on the physical copper person are turned on. The interactive display mode of electromechanical, physical copper man and multimedia virtual copper man is utilized, the interactivity, interestingness and attraction are high, and the acupoint and meridian content is effectively displayed.
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Description

Technical Field

[0001] The utility model relates to the technical field of exhibition equipment for science and technology museums, in particular to an interactive demonstration device for displaying and learning acupuncture points and meridians of the human body in museums. Background Art

[0002] Currently, acupuncture bronze figurine exhibits can be divided into three categories: the first is a static display of the physical object, using graphic panels to explain acupoints and meridians. This approach has limited appeal to viewers, especially young people, and the information provided is extremely limited, allowing only a brief overview, resulting in ineffective educational results. The second is the use of a small number of touch points on the physical figurine, which visitors can press according to the operating instructions to trigger lights, which then interact with the graphic panels to learn relevant information. While this display method offers some interactivity, the small number of touch points results in a monotonous lighting effect and inability to display more detailed information in real time. The graphic panels are also extremely limited in content, providing only a brief overview. The third is touchscreen multimedia displays, which offer a wealth of information, but the interactive nature of the touchscreen is relatively monotonous, and the connection to the physical bronze figurine is poor. Utility Model Content

[0003] The utility model provides an interactive demonstration device for displaying and learning human acupuncture points and meridians in museums. The existing technology has the following problems: the static display of physical objects has poor appeal to audiences, especially teenagers, and the amount of information is extremely limited, so only a simple and general introduction can be given, resulting in poor exhibition and teaching effects; the physical display of a physical bronze man has a small number of contacts, a monotonous light display effect, and is unable to display more detailed information in real time; the touch screen multimedia display has a relatively monotonous interactive method of touch screen clicking, and is also poorly connected to the real physical bronze man.

[0004] In order to solve the above-mentioned purpose of the utility model, the technical solution provided by the utility model is as follows:

[0005] An interactive demonstration device for displaying and studying human acupuncture points and meridians in museums comprises a display cabinet and a control system. A rotating mechanism capable of driving a physical bronze figure to rotate is disposed within the display cabinet. The physical bronze figure is mounted on the rotating mechanism, and acupuncture point lamps are provided at acupuncture points on the physical bronze figure. The front door of the display cabinet serves as a display screen, which displays a virtual bronze figure compatible with the physical bronze figure, an introduction to the physical bronze figure, a rotation viewing option, an acupuncture learning option, and an acupuncture examination option. The control system is controllably connected to the display screen, the rotating mechanism, and the acupuncture point lamps on the physical bronze figure.

[0006] The virtual bronze man is provided with acupoints and acupoint name annotations. When an acupoint on the virtual bronze man is pressed, the display screen displays the acupoint location, needle insertion method and text information of the main disease next to the acupoint, and the acupoint lamp at the acupoint on the physical bronze man corresponding to the virtual bronze man lights up.

[0007] Preferably, the rotating mechanism includes a base, a motor is mounted on the base by screw five, a gear is mounted on the output shaft of the motor by a flat key and a set screw, the inner ring of the slewing support is mounted on the base by screw two, the outer ring of the slewing support has an external gear meshing with the gear, a Hall sensor is mounted on the slewing support, an embedded part is mounted by screw one, and a conductive slip ring is mounted by screw three, the embedded part is connected to the bottom of the solid copper man, and a circular magnet is mounted on the embedded part by screw four.

[0008] Preferably, the display screen displays a bronze man introduction option. In the introduction option state, the control system controls the display screen to switch to a transparent mode state, and the display screen displays the physical bronze man introduction.

[0009] Preferably, the control system controls the display screen to be converted into a transparent mode. In the rotating viewing option state, the display screen displays three options including the front body option, the back body option, the right body option, and the left body option. In the above option state, the control system controls the rotation mechanism to start, and the rotation mechanism rotates the physical bronze man according to the above options.

[0010] Preferably, the control system controls the display screen to be converted into a transparent mode, and in the acupuncture learning option state, the acupoint learning option and the meridian learning option are displayed on the display screen.

[0011] Preferably, in the acupoint learning option state, the display screen displays a virtual bronze man, displays acupoints on the virtual bronze man, and displays the acupoint name, the back-body option and the front-body option next to the virtual bronze man; when the acupoint on the virtual bronze man is pressed, the control system controls the acupoint lamp beads corresponding to the acupoint on the physical bronze man to light up, and the position of the acupoint, the needle insertion method, and the main disease treatment text information are displayed on the display screen; when the back-body option or the front-body option is pressed, the control system controls the rotation mechanism to start, and the rotation mechanism rotates the physical bronze man according to the above options.

[0012] Preferably, when the meridian learning option is pressed, the display screen displays the option to select any meridian for learning; when the audience presses the option to select any meridian for learning, the control system controls the rotation mechanism to start, the rotation mechanism rotates the physical bronze man to an angle suitable for viewing the meridian, and controls the acupoint lamp beads belonging to the meridian on the physical bronze man to light up, and controls the acupoints belonging to the meridian on the virtual bronze man to be introduced one by one.

[0013] Preferably, when the acupuncture test option is pressed, the control system receives an acupuncture test signal, and the control system controls the display screen to switch to a black screen mode, the display screen blocks the physical bronze man, and the display screen displays the virtual bronze man and the location of the acupoints to be tested; the test questions and the virtual bronze man without acupoints are displayed on the display screen; when the acupoints of the virtual bronze man are clicked according to the test questions, it is judged whether the acupoints clicked on the virtual bronze man are correct; if the acupoints clicked on the virtual bronze man are correct, the display shows the acupoints, the acupoint names and the test is passed; if the acupoints clicked on the virtual bronze man are wrong, the display shows the test failed.

[0014] Preferably, when the acupuncture test is completed, the control system controls the display screen to switch to a transparent mode, the display screen displays the acupuncture test results and answers to questions, and the acupuncture point lamp beads corresponding to the questions on the physical bronze man light up.

[0015] Preferably, the control system includes a host and an active board of the display screen communicating with the host, the host controls the relay module, the relay module controls the acupoint lamp beads, the host controls the motor driver, and the motor driver controls the motor.

[0016] Compared with the prior art, the above technical solution has at least the following beneficial effects:

[0017] The above scheme is an interactive demonstration device for displaying and learning about human acupuncture points and meridians in museums. The physical bronze man, the rotating mechanism, and the virtual bronze man on the display screen are organically combined. The physical bronze man is rotated by the display screen, and a 360-degree detailed observation of the physical bronze man is carried out. At the same time, a detailed introduction to the history of the bronze man is given on the transparent screen. By clicking on different options on the display screen, the virtual bronze man on the display screen and the physical bronze man are superimposed to view the precise locations of the acupuncture points on the physical bronze man, and to learn detailed knowledge about acupuncture points and meridians on the virtual bronze man. After selecting the "Acupuncture Test" option, the display screen switches from transparent mode to black screen mode, and the display screen blocks the physical bronze man. The acupuncture test can be experienced on the virtual bronze man on the display screen to test the effect of the visit and learning. After the display screen switches to transparent mode again, the actual locations of the acupuncture points on the physical bronze man can be observed.

[0018] This device uses the interactive display method of "combining electromechanical + multimedia virtual and real" to effectively improve the interactivity and fun of the exhibits, greatly enhance the appeal to the audience, ensure the effective display of rich content on acupoints and meridians, and guide the audience to understand the relevant knowledge of acupuncture, acupoints, and meridians driven by interest. Driven by interest, the audience can independently learn and explore the knowledge of acupoints and meridians, and appreciate the long-standing and profound traditional culture of Chinese medicine. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0020] Figure 1 A three-dimensional diagram of the interactive demonstration device for displaying and studying acupuncture points and meridians of the human body in a museum according to the present invention;

[0021] Figure 2 This is a left view of the interactive demonstration device for displaying and studying human acupuncture points and meridians in a museum according to the present invention;

[0022] Figure 3 for Figure 1 An enlarged schematic diagram of position I in FIG.

[0023] Figure 4 This is a schematic structural diagram of an interactive demonstration device for displaying and studying acupuncture points and meridians of the human body in a museum according to the present invention;

[0024] Figure 5 This is a front view of the base of the interactive demonstration device for displaying and studying human acupuncture points and meridians in a museum according to the present invention;

[0025] Figure 6 This is a top view of the base of the interactive demonstration device for displaying and studying human acupuncture points and meridians in a museum according to the present invention;

[0026] Figure 7 This is a front view of a physical bronze figure of the interactive demonstration device for displaying and studying acupuncture points and meridians of the human body in a museum according to the present invention;

[0027] Figure 8 This is a left view of a physical bronze figure of the interactive demonstration device for displaying and studying acupuncture points and meridians of the human body in a museum according to the present invention;

[0028] Figure 9 A top view of a physical bronze figure of the interactive demonstration device for displaying and studying acupuncture points and meridians of the human body in a museum according to the present invention;

[0029] Figure 10 for Figure 7 An enlarged schematic diagram of the bottom of the physical bronze figure;

[0030] Figure 11 The display screen of the interactive demonstration device for displaying and learning human acupuncture points and meridians in a museum is shown in the utility model. Figure 1 ;

[0031] Figure 12 The display screen of the interactive demonstration device for displaying and learning human acupuncture points and meridians in a museum is shown in the utility model. Figure 2 ;

[0032] Figure 13 The display screen of the interactive demonstration device for displaying and learning human acupuncture points and meridians in a museum is shown in the utility model. Figure 3 ;

[0033] Figure 14 The display screen of the interactive demonstration device for displaying and learning human acupuncture points and meridians in a museum is shown in the utility model. Figure 4 ;

[0034] Figure 15 The display screen of the interactive demonstration device for displaying and learning human acupuncture points and meridians in a museum is shown in the utility model. Figure 5 ;

[0035] Figure 16 The display screen of the interactive demonstration device for displaying and learning human acupuncture points and meridians in a museum is shown in the utility model. Figure 6 ;

[0036] Figure 17 The display screen of the interactive demonstration device for displaying and learning human acupuncture points and meridians in a museum is shown in the utility model. Figure 7 ;

[0037] Figure 18 The utility model is a schematic diagram of a control system of an interactive demonstration device for displaying and studying acupuncture points and meridians of the human body in a museum.

[0038] The accompanying drawings are described as follows:

[0039] 1. Physical bronze figure; 2. Hole plug; 3. Decorative edge piece; 5. Base; 6. Gear; 7. Set screw; 8. Flat key; 9. Embedded part; 10. Screw 1; 11. Slewing support; 12. Screw 2; 13. Conductive slip ring; 14. Screw 3; 15. Screw 4; 16. Circular magnet; 17. Hall sensor; 18. Stepper motor; 19. Screw 5; 20. Decorative panel 1; 21. Decorative panel 2; 22. Display cabinet; 23. Display screen; 24. Virtual bronze figure; 25. Introduction option; 26. Rotation viewing option; 27. Acupuncture Learning options; 28. Acupuncture test options; 29. Back view option; 30. Right side view option; 31. Left side view option; 32. Forward view option; 33. Acupoint learning options; 34. Meridian learning options; 35. Acupoints and their names; 36. Text information; 37. Click on any acupoint to learn option; 38. Select any meridian to learn option; 39. Meridians; 40. Meridian options; 41. Meridian introduction; 42. Pass the test; 43. Fail the test; 44. Try again option; 45. Next question option; 46. Question. DETAILED DESCRIPTION

[0040] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0041] Unless otherwise defined, the technical or scientific terms used in this utility model shall have the usual meanings understood by persons of ordinary skill in the field to which this utility model belongs. The words "first", "second" and similar terms used in this utility model do not indicate any order, quantity or importance, but are only used to distinguish different components. Similarly, words like "one", "an" or "the" do not indicate a quantity limitation, but rather indicate the existence of at least one. Words like "include" or "comprise" mean that the elements or objects preceding the word include the elements or objects listed after the word and their equivalents, without excluding other elements or objects. Words like "connect" or "connected" are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect.

[0042] It should be noted that the terms "up", "down", "left", "right", "front" and "back" used in the present invention are only used to indicate relative position relationships. When the absolute position of the object being described changes, the relative position relationship may also change accordingly.

[0043] like Figures 1 to 17 As shown, this embodiment provides an interactive demonstration device for displaying and learning human acupuncture points and meridians 39 in a museum, including a display cabinet 22 and a control system. A rotating mechanism is arranged in the display cabinet 22 to drive the rotation of a physical bronze figure 1. The physical bronze figure 1 is mounted on the rotating mechanism. Acupuncture point lamp beads are set at the acupuncture points on the physical bronze figure 1. The front door of the display cabinet 22 is a display screen 23. The display screen 23 displays a virtual bronze figure 24 compatible with the physical bronze figure 1, an introduction option 25 of the physical bronze figure 1, a rotation viewing option 26, an acupuncture learning option 27 and an acupuncture examination option 28. The control system is connected to the display screen 23, the rotating mechanism, and the acupuncture point lamp beads on the physical bronze figure 1. The virtual bronze figure 24 is provided with acupuncture points and acupuncture point name 35 annotations. When the audience presses an acupuncture point on the virtual bronze figure 24, the display screen 23 displays a text information 36 of the acupuncture point location, needle insertion method and main disease treatment next to the acupuncture point, and the acupuncture point lamp beads at the acupuncture points on the physical bronze figure 1 corresponding to the virtual bronze figure 24 light up.

[0044] like Figures 2 to 9 As shown, the rotating mechanism includes a base 5, on which a motor is mounted via screw 5 19. A gear 6 is mounted on the motor's output shaft via a flat key 8 and a set screw 7. The inner ring of a slewing support 11 is mounted on the base 5 via screw 2 12. The outer ring of slewing support 11 has an external gear 6 that meshes with gear 6. A Hall sensor 17 is mounted on slewing support 11, an embedded component 9 is mounted via screw 10, and a conductive slip ring 13 is mounted via screw 3 14. The embedded component 9 is connected to the bottom of the physical bronze figure 1, and a circular magnet 16 is mounted on the embedded component 9 via screw 4 15. Specifically, decorative trim 3 is provided at the edge of the display case 22. The decorative trim includes decorative panels 1 20 and 21. Specifically, plugs 2 are provided at the soles of the feet of the physical bronze figure 1. Specifically, the slewing support 11 includes an inner ring and an outer ring. The inner ring supports the outer ring. Rolling bodies are arranged between the inner ring and the outer ring. The outer ring has an external gear. The external gear meshes with the gear 6 to realize transmission.

[0045] like Figure 18 As shown, the control system includes a host and an active board of a display screen communicating with it, the host controls the relay module, the relay module controls the acupoint lamp beads, the host controls the motor driver, the motor driver controls the motor, and the leakage protector, the socket strip and the host are connected in sequence.

[0046] like Figures 11 to 13As shown, the interactive demonstration device for displaying and learning about human acupuncture points and meridians 39 in a museum according to this embodiment implements rotational interaction. The control system controls the display screen 23 to switch to a transparent mode. When a viewer presses the rotation viewing option 26, the control system controls the display screen 23 to enter a "rotate viewing" interface. The display screen 23 displays three options: front view option 32, back view option 29, right view option 30, and left view option 31, as well as a return option. When the viewer presses these options, the control system controls the rotation mechanism to activate. The rotation mechanism rotates the physical bronze figurine 1 according to the above options, operating the physical bronze figurine 1 to rotate to different angles and allowing viewing through the transparent display screen 23. Specifically, when the physical bronze figurine 1 faces the viewer, the back view option 29, right view option 30, and left view option 31 appear; when the physical bronze figurine 1 faces away from the viewer, the front view option 32, right view option 30, and left view option 31 appear. During the rotational interaction, the display screen 23 is in a transparent mode, and the virtual bronze figurine 24 is not displayed on the display screen 23. The physical bronze figurine 1 can be directly viewed through the transparent display screen 23.

[0047] like Figure 14 As shown, the interactive demonstration device for displaying and learning human acupuncture points and meridians 39 in the museum of this embodiment realizes acupuncture point learning. The control system controls the display screen 23 to switch to a transparent mode. The audience presses the acupuncture learning option 27. After receiving the acupuncture learning signal, the control system controls the display screen 23 to display the acupuncture point learning option 33 and the meridian learning option 34. The audience presses the acupuncture point learning option 33, and the control system controls the display screen 23 to display the virtual bronze man 24, the acupuncture points and acupuncture point names 35, the back-body option 29, the front-body option 32, and the option 37 of clicking on any acupuncture point to learn on the virtual bronze man 24. The audience presses the acupuncture point on the virtual bronze man 24, and the control system controls the acupuncture point lamp bead at the acupuncture point corresponding to the acupuncture point on the physical bronze man 1 to light up, and the display screen 23 displays the position of the acupuncture point, the needle insertion method, and the main disease treatment text information 36. The audience presses the back-body option 29 or the front-body option 32, and the control system controls the rotation mechanism to start, and the rotation mechanism rotates the physical bronze man 1 according to the above options.

[0048] like Figure 15As shown, in this embodiment, an interactive demonstration device for displaying and learning about human acupuncture points and meridians 39 in a museum is used to implement learning about meridians 39. The control system controls the display screen 23 to switch to a transparent mode. When a viewer presses the acupuncture learning option 27, the control system, upon receiving the acupuncture learning signal, controls the display screen 23 to display an acupoint learning option 33 and a meridian learning option 34. When the viewer presses the meridian learning option 34, the control system controls the display screen 23 to display a "Select any meridian 39 to learn" option 38 and a meridian option 40. When the viewer presses the "Select any meridian 39 to learn" option 38, the display screen 23 displays a virtual bronze figure 24, a meridian 39, and a meridian introduction 41. The control system controls the rotation mechanism to activate, rotating the physical bronze figure 1 to an angle suitable for viewing the meridian 39, and controls the acupoint lamps on the physical bronze figure 1 that belong to the meridian 39 to light up, thereby controlling the acupoints on the virtual bronze figure 24 that belong to the meridian 39 to be introduced one by one.

[0049] like Figure 16 and Figure 17As shown, in the embodiment of the interactive demonstration device for displaying and learning human acupuncture points and meridians 39 in a museum, the audience presses the acupuncture test option 28, the control system receives the acupuncture test signal, and the control system controls the display screen 23 to switch to a black screen mode. The display screen 23 blocks the physical bronze man 1, and the display screen 23 displays the virtual bronze man 24 and the location of the acupuncture points to be tested; the display screen 23 displays the test questions 46 and the virtual bronze man 24 without acupuncture points. The audience clicks the acupuncture points of the virtual bronze man 24 according to the test questions 46, and the control system determines whether the audience clicks the acupuncture points of the virtual bronze man 24 correctly. If the viewer clicks the correct acupoint on the virtual bronze man 24, the display shows the acupoint, its name, and "Pass" 42, and the display 23 automatically displays the next question. If the viewer clicks the incorrect acupoint on the virtual bronze man 24, the display shows "Failed" 43, and the display 23 displays "Try Again" 44 and "Next Question" 45. If the viewer does not press the acupoint within 60 seconds, the next question automatically displays. After the acupuncture test is completed, the control system controls the display 23 to switch to transparent mode, displaying the acupuncture test score and the answer to question 46. The acupoint light beads corresponding to question 46 on the physical bronze man 1 light up. Specifically, the display 23 shows the virtual bronze man 24 and the location of the acupoint to be tested. After a 5-second countdown, the display 23 displays the test question 46 and the virtual bronze man 24 without the acupoint. Specifically, each acupuncture test has 3-5 questions, and each question has 4660 seconds to answer. Specifically, in the acupuncture test results (taking two questions as an example), if the viewer fails to correctly press an acupoint, the display screen 23 will display "Sorry, you didn't needle the correct acupoint. Learn more about acupuncture!"; if the viewer presses one acupoint correctly, the display screen 23 will display "Congratulations! You have correctly needled one acupoint and earned the title of 'Acupuncture Novice'!"; if the viewer presses two acupoints correctly, the display screen 23 will display "Congratulations! You have correctly needled two acupoints and earned the title of 'Acupuncture Novice'!"; if the viewer presses three acupoints correctly, the display screen 23 will display "Congratulations! You have correctly needled three acupoints and earned the title of 'Acupuncture Novice'!". A 0-60% accuracy rate in the acupuncture test results in the title of "Acupuncture Novice"; a 60-90% accuracy rate in the acupuncture test results in the title of "Acupuncture Experienced"; and a 90-100% accuracy rate in the acupuncture test results in the title of "Acupuncture Master."

[0050] Specifically, in the interactive demonstration device for displaying and studying human acupuncture points and meridians 39 in a museum, the control system controls the display screen 23 to switch to a transparent mode or a black screen mode, where the black screen mode is a frosted screen mode. The technology for controlling the display screen 23 to switch to a transparent mode or a black screen mode is prior art and will not be further described in detail in this utility model.

[0051] The present invention is an interactive demonstration device for displaying and learning acupuncture points and meridians 39 in a museum. The physical bronze man 1, the rotating mechanism, and the virtual bronze man 24 on the display screen 23 are organically combined. The physical bronze man 1 is rotated by the display screen 23, and a 360-degree detailed observation of the physical bronze man 1 is carried out. At the same time, a detailed introduction to the history of the bronze man is given on the transparent screen. By clicking on different options on the display screen 23, the virtual bronze man 24 on the display screen 23 and the physical bronze man are superimposed, and the precise location of the acupuncture points on the physical bronze man is viewed, and detailed knowledge of the acupuncture points and meridians is learned on the virtual bronze man 24. After selecting the "Acupuncture Test" option, the display screen 23 is transformed from a transparent The mode is switched to black screen mode, and the display screen 23 blocks the physical bronze man 1. The acupuncture test can be experienced on the virtual bronze man 24 on the display screen 23 to test the effect of the visit and study. After the display screen 23 is switched to transparent mode again, the actual position of the acupoints of the physical bronze man 1 can be observed. This device uses the interactive display method of "mechatronics + multimedia virtual and real" to effectively enhance the interactivity and fun of the exhibits, greatly enhance the attraction to the audience, ensure the effective display of the rich content of acupoints and meridians, and guide the audience to understand the relevant knowledge of acupuncture, acupoints, and meridians driven by interest, and appreciate the long-standing and profound traditional culture of Chinese medicine.

[0052] The above are only specific implementation methods of the present invention, but the protection scope of the present invention is not limited thereto. The protection scope of the present invention shall be based on the protection scope of the claims.

Claims

1. An interactive demonstration device for displaying and learning human acupuncture points and meridians in a museum, characterized by: The invention comprises a display cabinet and a control system. A rotating mechanism capable of driving a physical bronze figure to rotate is arranged in the display cabinet. The physical bronze figure is mounted on the rotating mechanism. Acupuncture point lamp beads are provided at the acupuncture points on the physical bronze figure. The front door of the display cabinet is a display screen. The display screen displays a virtual bronze figure adapted for the physical bronze figure, an introduction option for the physical bronze figure, a rotation viewing option, an acupuncture learning option, and an acupuncture examination option. The control system is controllably connected to the display screen, the rotating mechanism, and the acupuncture point lamp beads on the physical bronze figure. The virtual bronze man is provided with acupoints and acupoint name annotations. When an acupoint on the virtual bronze man is pressed, the display screen displays the acupoint location, needle insertion method and text information of the main disease next to the acupoint, and the acupoint lamp at the acupoint on the physical bronze man corresponding to the virtual bronze man lights up.

2. The interactive demonstration device for displaying and learning human acupuncture points and meridians in a museum according to claim 1, characterized in that: The rotating mechanism includes a base, a motor is mounted on the base by screw five, a gear is mounted on the output shaft of the motor by a flat key and a set screw, the inner ring of the slewing support is mounted on the base by screw two, the outer ring of the slewing support has an external gear meshing with the gear, a Hall sensor is mounted on the slewing support, an embedded part is mounted by screw one, and a conductive slip ring is mounted by screw three, the embedded part is connected to the bottom of the solid copper man, and a circular magnet is mounted on the embedded part by screw four.

3. The interactive demonstration device for displaying and learning human acupuncture points and meridians in a museum according to claim 1, characterized in that: The display screen displays a bronze man introduction option. In the introduction option state, the control system controls the display screen to be converted into a transparent mode state, and the display screen displays the physical bronze man introduction.

4. The interactive demonstration device for displaying and learning human acupuncture points and meridians in a museum according to claim 1, characterized in that: The control system controls the display screen to be converted into a transparent mode. In the rotating viewing option state, the display screen displays three options including the front body option, the back body option, the right body option, and the left body option. In the above option state, the control system controls the rotation mechanism to start, and the rotation mechanism rotates the physical bronze man according to the above options.

5. The interactive demonstration device for displaying and learning human acupuncture points and meridians in a museum according to claim 1, characterized in that: The control system controls the display screen to be converted into a transparent mode. In the acupuncture learning option state, the display screen displays acupoint learning options and meridian learning options.

6. The interactive demonstration device for displaying and learning human acupuncture points and meridians in a museum according to claim 5, characterized in that: In the acupoint learning option state, the display screen displays a virtual bronze man, displays acupoints on the virtual bronze man, displays the acupoint name, the back-body option and the front-body option next to the virtual bronze man; when an acupoint on the virtual bronze man is pressed, the control system controls the acupoint light beads corresponding to the acupoint on the physical bronze man to light up, and the position of the acupoint, the needle insertion method, and the main disease treatment text information are displayed on the display screen; when the back-body option or the front-body option is pressed, the control system controls the rotation mechanism to start, and the rotation mechanism rotates the physical bronze man according to the above options.

7. The interactive demonstration device for displaying and learning human acupuncture points and meridians in a museum according to claim 5, characterized in that: When the meridian learning option is pressed, the display screen displays the option to select any meridian for learning; when the audience presses the option to select any meridian for learning, the control system controls the rotation mechanism to start, the rotation mechanism rotates the physical bronze man to an angle suitable for viewing the meridian, and controls the acupoint lamp beads belonging to the meridian on the physical bronze man to light up, and controls the acupoints belonging to the meridian on the virtual bronze man to be introduced one by one.

8. The interactive demonstration device for displaying and learning human acupuncture points and meridians in a museum according to claim 1, characterized in that: When the acupuncture test option is pressed, the control system receives an acupuncture test signal, and the control system controls the display screen to switch to a black screen mode. The display screen blocks the physical bronze man, and the display screen displays the virtual bronze man and the positions of the acupoints to be tested; the test questions and the virtual bronze man without acupoints are displayed on the display screen; when the acupoints of the virtual bronze man are clicked according to the test questions, it is judged whether the acupoints clicked on the virtual bronze man are correct. If the acupoints clicked on the virtual bronze man are correct, the display screen displays the acupoints, the acupoint names and the test is passed; if the acupoints clicked on the virtual bronze man are incorrect, the display screen displays the test failure.

9. The interactive demonstration device for displaying and learning human acupuncture points and meridians in a museum according to claim 1, characterized in that: When the acupuncture test is completed, the control system controls the display screen to switch to a transparent mode, the display screen displays the acupuncture test results and answers to the questions, and the acupuncture point lamp beads corresponding to the questions on the physical bronze man light up.

10. The interactive demonstration device for displaying and studying human acupuncture points and meridians in a museum according to claim 2, characterized in that: The control system includes a host and an active board of the display screen communicating with the host, the host controls the relay module, the relay module controls the acupoint lamp beads, the host controls the motor driver, and the motor driver controls the motor.