Auricular point puzzle model

By setting radio frequency tags and indicators on the ear model, the problem of inaccurate placement of ear acupoint puzzle pieces was solved, and accurate positioning of the ear acupoint puzzle model was achieved, thus improving teaching efficiency and quality.

CN223770739UActive Publication Date: 2026-01-06BEIJING UNIV OF CHINESE MEDICINE THIRD AFFILIATED HOSPITAL
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Patent Information

Application Number
CN202423278501.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-01-06
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

In existing technologies, it is not possible to visually determine whether the ear acupoint puzzle pieces are placed correctly on the ear model, which increases the difficulty of teaching and reduces teaching efficiency and quality.

Method used

The device uses an ear model with multiple corresponding acupoints, equipped with RFID tags, a reader, a controller, and an indicator. By acquiring information from the RFID tags and outputting indicator signals, the device can accurately locate the acupoints.

Benefits of technology

This enables a clear and efficient way to determine whether auricular acupoints are accurately placed in medical teaching, reducing the difficulty of teaching and improving teaching efficiency and quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model discloses an auricular point jigsaw model, which comprises an ear model provided with a plurality of point positions corresponding to auricular point jigsaw blocks; the plurality of auricular point splicing blocks are mutually spliced on the ear model; a plurality of radio frequency tags, wherein each radio frequency tag is arranged on one auricular point block; each reader is arranged on the corresponding point position, is connected with the controller, and is used for acquiring the information of the radio frequency tag and outputting the information to the controller; the controller is arranged on the ear model, is connected with the indicating device and is used for receiving the information and outputting a first control signal or a second control signal to the indicating device; and the indicating device is arranged on the ear model and is used for receiving the first control signal or the second control signal and performing indication. Therefore, in the medical teaching process, whether the auricular point splicing blocks are accurately placed on the point positions of the ear model or not can be clearly and efficiently judged, the teaching difficulty is reduced, and the teaching efficiency and the teaching quality are improved.
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Description

Technical Field

[0001] This utility model relates to the field of medical teaching technology, and in particular to an ear acupoint puzzle model. Background Technology

[0002] Ear acupoints are acupoints distributed on the auricle. They are also called reaction points or stimulation points. When the internal organs or body are diseased, local reactions often appear in certain areas of the auricle, such as tenderness, nodules, discoloration, and changes in electrical conductivity. This phenomenon can be used as a reference for diagnosing diseases, or these reaction points (ear acupoints) can be stimulated to prevent and treat diseases. In current technology, models made to resemble human acupoints often make it difficult to visually determine whether ear acupoint pieces are correctly placed when placed on the ear model in medical teaching. This increases the difficulty of teaching and reduces teaching efficiency and quality. Utility Model Content

[0003] Based on this, it is necessary to propose an ear acupoint puzzle model to address the above problems.

[0004] An ear acupuncture point puzzle model, comprising:

[0005] The ear model has multiple corresponding acupoints.

[0006] Multiple ear acupoint pieces are spliced ​​together on the ear model;

[0007] Multiple radio frequency tags, each radio frequency tag being disposed on one of the ear acupoint blocks;

[0008] Multiple readers are provided, each reader is set at a corresponding location and connected to a controller, for acquiring information of the RFID tag and outputting the information to the controller;

[0009] The controller is mounted on the ear model and connected to the indicator device, and is used to receive the information and output a first control signal or a second control signal to the indicator device.

[0010] The indicating device is disposed on the ear model and is used to receive the first control signal or the second control signal and to provide indication.

[0011] In one embodiment, the indicating device includes:

[0012] The first indicator light is connected to the controller and is used to receive the first control signal and illuminate it.

[0013] The second indicator light is connected to the controller and is used to receive the second control signal and illuminate it.

[0014] The first indicator light is a different color from the second indicator light.

[0015] In one embodiment, the indicating device includes:

[0016] A speaker, connected to the controller, is used to receive the first control signal or the second control signal and to broadcast the first voice information or the second voice information.

[0017] In one embodiment,

[0018] Each point on the ear model is equipped with a metal component;

[0019] Each of the aforementioned ear acupuncture points is equipped with a magnet;

[0020] Each of the ear acupoint pieces attaches to each point on the ear model.

[0021] In one embodiment, the ear acupuncture pattern model further includes:

[0022] Multiple LEDs are placed in each area of ​​the ear model; each LED is a different color.

[0023] In one embodiment, the ear acupuncture pattern model further includes:

[0024] A power supply module, connected to multiple readers, controllers, and indicator devices, is used to supply power to the readers, controllers, and indicator devices.

[0025] Implementing the embodiments of this utility model will have the following beneficial effects:

[0026] The system utilizes multiple acupoints corresponding to specific points on an ear model; these acupoints are interconnected on the ear model; multiple radio frequency tags (RFID tags) are attached to each acupoint; multiple readers are positioned at corresponding points and connected to a controller to acquire information from the RFID tags and output this information to the controller; the controller is positioned on the ear model and connected to an indicator device to receive the information and output a first or second control signal to the indicator device; the indicator device is positioned on the ear model to receive the first or second control signal and provide guidance. This system enables clear and efficient determination of whether the acupoints are accurately positioned on the ear model during medical teaching, reducing teaching difficulty and improving teaching efficiency and quality. Attached Figure Description

[0027] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0028] in:

[0029] Figure 1 This is a diagram of the control section of an ear acupuncture point mosaic model in one embodiment;

[0030] Figure 2 This is a diagram of the control section of the ear acupuncture point mosaic model in another embodiment;

[0031] Figure 3 This is a structural diagram of an ear acupuncture point mosaic model in one embodiment;

[0032] Figure 4 This is a structural diagram of the ear acupuncture point puzzle model in another embodiment. Detailed Implementation

[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0034] Ear acupoints are acupoints distributed on the auricle. They are also called reaction points or stimulation points. When the internal organs or body are diseased, local reactions often appear in certain areas of the auricle, such as tenderness, nodules, discoloration, and electrical conductivity. This phenomenon can be used as a reference for disease diagnosis, or these reaction points (ear acupoints) can be stimulated to prevent and treat diseases. In existing technologies, models made by comparing ear acupoints to human acupoints are often difficult to use in medical teaching. When ear acupoint puzzle pieces are placed on the ear model, it is often difficult to visually determine whether they are placed correctly, which increases the difficulty of teaching and reduces teaching efficiency and quality. To solve the above technical problems, this application provides an ear acupoint puzzle model, such as... Figures 1-4 As shown, it includes: an ear model 10, multiple ear acupoint puzzle pieces 10, multiple RFID tags 30, multiple readers 40, and an indicator device 50; wherein,

[0035] The ear model 10 is provided with multiple points 101 corresponding to ear acupoints 102;

[0036] Multiple ear acupoint pieces 102 are spliced ​​together on the ear model 10;

[0037] Multiple radio frequency tags 30, each radio frequency tag 30 is disposed on one of the ear acupoint blocks 102;

[0038] Multiple readers 40 are provided, each reader 40 is set on a corresponding point 101 and connected to the controller 20, for acquiring information of the radio frequency tag 30 and outputting the information to the controller 20;

[0039] The controller 20 is disposed on the ear model 10 and connected to the indicator device 50, for receiving the information and outputting a first control signal or a second control signal to the indicator device 50;

[0040] The indicator device 50 is disposed on the ear model 10 and is used to receive the first control signal or the second control signal and to provide an indication.

[0041] The system utilizes multiple acupoints corresponding to specific points on an ear model; these acupoints are interconnected on the ear model; multiple radio frequency tags (RFID tags) are attached to each acupoint; multiple readers are positioned at corresponding points and connected to a controller to acquire information from the RFID tags and output this information to the controller; the controller is positioned on the ear model and connected to an indicator device to receive the information and output a first or second control signal to the indicator device; the indicator device is positioned on the ear model to receive the first or second control signal and provide guidance. This system enables clear and efficient determination of whether the acupoints are accurately positioned on the ear model during medical teaching, reducing teaching difficulty and improving teaching efficiency and quality.

[0042] In one embodiment, such as Figure 2 As shown, the indicating device 50 includes: a first indicator light 501 and a second indicator light 502; wherein,

[0043] The first indicator light 501 is connected to the controller 20 and is used to receive the first control signal and illuminate it.

[0044] The second indicator light 502 is connected to the controller 20 and is used to receive the second control signal and illuminate it.

[0045] The first indicator light 501 and the second indicator light 502 have different colors.

[0046] In one embodiment, such as Figure 2As shown, the indicating device 50 includes a speaker 503; wherein the speaker 503 is connected to the controller 20 and is used to receive the first control signal or the second control signal and to broadcast the first voice information or the second voice information.

[0047] In one embodiment,

[0048] Each point 101 of the ear model 10 is provided with a metal component;

[0049] Each of the ear acupuncture points 102 is equipped with a magnet;

[0050] Each of the ear acupuncture points 102 is attracted to each point 101 of the ear model 10.

[0051] In one embodiment, such as Figure 2 As shown, the ear acupuncture puzzle model further includes: multiple LED beads 60, wherein the multiple LED beads 60 are respectively set at each point 101 of the ear model; each LED bead 60 has a different color, which can effectively distinguish different points 101.

[0052] In one embodiment, such as Figure 2 As shown, the ear acupuncture puzzle model further includes a power supply module 70, wherein the power supply module 70 is connected to multiple readers 40, the controller 20, the indicator device 50 and multiple LED beads 60, and is used to supply power to the readers 40, the controller 20, the indicator device 50 and the multiple LED beads 60.

[0053] The workflow for this application is as follows:

[0054] The radio frequency tag 30 and the reader 40 utilize RFID technology. Each radio frequency tag 30 is correspondingly mounted on one of the ear acupuncture point tiles 102, and each radio frequency tag 30 stores the ID information of the corresponding ear acupuncture point tile 102. Figure 3 and Figure 4 As shown, the ear model 10 has multiple corresponding ear acupoint blocks 102 ( Figure 4 The puzzle piece containing text is an ear acupoint puzzle. Point 101 ( Figure 3The portion of the ear acupuncture patch 102 not yet integrated into the acupuncture point patch 101 is designated as a point, and each point 101 is equipped with a reader 40. When the RFID tag 30 approaches the reader 40, the reader 40 reads the ID information of the RFID tag 30 and outputs the ID information to the controller 20. The controller 20 compares the ID information with the pre-stored ID information corresponding to the point 101. If the two match, the controller 20 outputs a first control signal to the first indicator light 501, which illuminates the first indicator light 501 to indicate that the ear acupuncture patch 102 matches the point 101. If the two do not match, the controller 20 outputs a second control signal to the second indicator light 501. The indicator light 502 outputs a second control signal, and the second indicator light 502 lights up to indicate that the ear acupoint patch 102 does not match the point 101. Here, the first indicator light 501 can be green, and the second indicator light 502 can be red. Alternatively, when the two are the same, the controller 20 outputs a first control signal to the speaker, and the speaker announces "Match successful" to indicate that the ear acupoint patch 102 matches the point 101. When the two are not the same, the controller 20 outputs a second control signal to the speaker, and the speaker announces "Match unsuccessful" to indicate that the ear acupoint patch 102 does not match the point 101.

[0055] The system utilizes multiple acupoints corresponding to specific points on an ear model; these acupoints are interconnected on the ear model; multiple radio frequency tags (RFID tags) are attached to each acupoint; multiple readers are positioned at corresponding points and connected to a controller to acquire information from the RFID tags and output this information to the controller; the controller is positioned on the ear model and connected to an indicator device to receive the information and output a first or second control signal to the indicator device; the indicator device is positioned on the ear model to receive the first or second control signal and provide guidance. This system enables clear and efficient determination of whether the acupoints are accurately positioned on the ear model during medical teaching, reducing teaching difficulty and improving teaching efficiency and quality.

[0056] The above-disclosed embodiments are merely preferred embodiments of the present utility model and should not be construed as limiting the scope of the present utility model. Therefore, any equivalent variations made in accordance with the claims of the present utility model shall still fall within the scope of the present utility model.

Claims

1. An ear point puzzle model, characterized by, The ear model is provided with a plurality of point positions corresponding to ear acupoint blocks. A plurality of the ear acupoint blocks are spliced on the ear model. A plurality of radio frequency tags are provided on the ear acupoint blocks. A plurality of readers are provided on the corresponding point positions and connected with the controller, used for acquiring information of the radio frequency tags and outputting the information to the controller. The controller is provided on the ear model and connected with the indicating device, used for receiving the information and outputting first control signals or second control signals to the indicating device. The indicating device is provided on the ear model, used for receiving the first control signals or the second control signals and indicating. The indicating device comprises:

2. The ear point puzzle model according to claim 1, wherein, A first indicating lamp connected with the controller, used for receiving the first control signals and lighting. A second indicating lamp connected with the controller, used for receiving the second control signals and lighting. The first indicating lamp and the second indicating lamp are different in color. The indicating device comprises:

3. The ear montage puzzle model of claim 1, wherein, A speaker connected with the controller, used for receiving the first control signals or the second control signals and playing first voice information or second voice information.

4. The ear acupoint puzzle model according to claim 1, wherein: Each point position of the ear model is provided with a metal part. Each ear acupoint block is provided with a magnet. Each ear acupoint block is attracted to each point position of the ear model. Further comprising:

5. The ear montage puzzle model of claim 1, wherein, A plurality of lamp beads are provided on each region of the ear model, and each lamp bead is different in color. Further comprising:

6. The ear montage puzzle model of claim 1, wherein, A power supply module connected with the plurality of readers, the controller and the indicating device, used for supplying power to the readers, the controller and the indicating device. ​