Novel human body model display device

By introducing a fill-light structure consisting of a protective frame and a light board into the human model display device, the problem of the model being difficult to see clearly in insufficient light is solved, the model is clearly displayed and protected, the teaching and treatment effects are improved, and it is energy-saving and environmentally friendly.

CN223390213UActive Publication Date: 2025-09-26BEIFANG UNIV OF NATITIES
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Patent Information

Application Number
CN202422789206.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-09-26
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

When the existing human body model display device is in insufficient light or is blocked, the lighting effect inside the crystal container is greatly reduced, making it difficult to see the details of the model, affecting the teaching and treatment effects.

Method used

A fill light structure including a protective frame, a light board, a battery and a switch is designed. The light board provides uniform and soft light supplement to ensure that the model is clearly visible in insufficient light. The structure is simple and easy to use, energy-saving and environmentally friendly.

Benefits of technology

It improves the efficiency and quality of medical teaching and clinical diagnosis and treatment, protects the model from external damage, and reduces energy consumption and environmental pollution.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a novel human body model display device, and belongs to the field of medical equipment, the display device comprises a base, a crystal arranged on the base, a human body model body arranged in the crystal, and a light supplementing structure used for illuminating the crystal; the protection frame plate is arranged on the crystal in a sleeving mode, the lamp panels are embedded in the upper end and the lower end of the protection frame plate, the storage battery is arranged in the base and electrically connected with the lamp panels, the switch is installed on the base, connected with the storage battery and used for controlling the lamp panels to be turned on or turned off, and the lamp panels located at the lower end of the protection frame plate are fixedly connected with the base. Through the light supplementing structure, uniform illumination can be provided for the crystal under the condition of poor light, so that the structural form of the human body model body is clearer and more visible, and the efficiency and quality of medical teaching and clinical diagnosis and treatment can be improved. The protective frame plate not only provides additional protection for the crystal, but also prevents external objects from bumping against edges and corners of the crystal, and reduces the risk of damage.
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Description

Technical Field

[0001] The present application relates to the technical field of medical equipment, and in particular to a novel human body model display device. Background Art

[0002] In medical education and clinical diagnosis and treatment, doctors often use mannequins to more intuitively explain the condition of a specific part of the human body to patients. This teaching method not only improves patient understanding but also strengthens communication and trust between doctors and patients. To preserve and display these intricate mannequins over a long period of time, a common practice is to place them in transparent crystal containers. This not only protects the models from environmental damage but also enhances their three-dimensionality and visual appeal through the refractive effect of the crystal.

[0003] However, existing human model display devices, because the models are enclosed within a crystal container, rely primarily on natural or artificial light for illumination. When the indoor light is insufficient or blocked by external objects, the illumination inside the crystal container is significantly reduced, making it difficult to see the model details, affecting the effectiveness of teaching and diagnosis.

[0004] Therefore, the present application provides a novel human body model display device to solve the above problems. Utility Model Content

[0005] This application provides a novel human model display device designed to address the problem, as mentioned in the prior art, that existing human models are enclosed within a crystal container and primarily rely on natural or artificial light for illumination. When indoor light levels are insufficient or light is blocked by external objects, the illumination within the crystal container is significantly reduced, making it difficult to see model details, thus affecting the effectiveness of teaching and diagnosis.

[0006] To achieve the above-mentioned purpose, the present application provides the following technical solutions: a novel human model display device, comprising a base, a crystal arranged on the base, a human model body arranged in the crystal, and a fill light structure for illuminating the crystal;

[0007] To facilitate supplemental lighting for the crystal in low light conditions, the supplemental lighting structure includes a protective frame mounted on the crystal, light panels embedded in the upper and lower ends of the protective frame, a battery housed in the base and electrically connected to the light panels, and a switch mounted on the base and connected to the battery for turning the light panels on and off. The light panel at the lower end of the protective frame is fixedly connected to the base. When supplemental lighting is needed for the crystal, medical personnel or patients simply press the switch on the base. The battery then powers the light panel, emitting soft, even light. This light, guided by the protective frame, evenly illuminates the exterior and interior of the crystal, clearly revealing the structure and morphology of the mannequin. When supplemental lighting is no longer needed, simply press the switch again to turn off the light panel, saving energy and electricity. This supplemental lighting structure not only improves the efficiency and quality of medical teaching and clinical diagnosis and treatment, but also protects the crystal and mannequin from external damage. It is easy to operate and energy-efficient and environmentally friendly.

[0008] Preferably, in order to facilitate the installation and fixation of the light board, the light board is in a T-shape. The T-shaped light board design makes the installation process simpler and faster, without the need for additional fixings or tools, reducing the installation difficulty and cost.

[0009] To facilitate the designated installation of the light panel, mounting slots for the light panel are preferably provided at both the upper and lower ends of the protective frame. By creating mounting slots that match the shape of the light panel, the light panel can be precisely installed, ensuring uniform and consistent lighting. The mounting slot design provides a tighter and more secure connection between the light panel and the protective frame, effectively preventing the light panel from loosening or falling off during use. The introduction of the mounting slots simplifies the installation of the light panel, eliminating the need for additional fasteners or tools, reducing installation difficulty and cost.

[0010] Preferably, to facilitate battery installation and removal, a battery slot is provided on the end of the base away from the crystal. This slot facilitates battery installation and removal, eliminating the need for additional tools or equipment, reducing both installation complexity and cost. The slot's shape and size match the battery's position, ensuring stability and accuracy during installation and preventing issues like poor electrical contact caused by shaking or misalignment. The inclusion of the slot allows for easy battery replacement and maintenance, extending the device's lifespan and reliability.

[0011] Preferably, to ensure the battery is stably positioned within the battery slot, a T-shaped slot is provided at the end of the base away from the crystal, communicating with the battery slot. A T-shaped plate is inserted into the T-shaped slot to secure the battery within the slot. The design of the slot and T-shaped plate ensures the battery is stably secured within the slot, preventing it from falling due to shaking or vibration, and ensuring the reliability and safety of the device. The T-shaped plate is quick and easy to insert and remove, allowing users to secure and remove the battery without the need for additional tools, reducing both ease of use and cost.

[0012] Preferably, to facilitate the removal of the T-shaped plate, a plurality of auxiliary removal grooves are provided in an array on the end of the T-shaped plate away from the base. The design of the auxiliary removal grooves makes the T-shaped plate more convenient to remove, eliminating the need for additional tools and reducing the difficulty and cost of use. The introduction of the auxiliary removal grooves allows the user to apply a more uniform and stable force when removing the T-shaped plate, avoiding damage or safety hazards caused by improper removal, and ensuring safety and reliability during the removal process.

[0013] To prevent the base from sliding on the countertop, anti-slip pads are preferably fixed to the four corners of the base. These pads are made of a highly elastic, high-friction material, such as rubber or silicone, ensuring a tight fit and stable fixation between the base and the countertop. The anti-slip pads ensure a stable placement of the base on the countertop, preventing the device from tipping over or being damaged due to sliding, and ensuring safety and reliability during use.

[0014] This application uses a fill-light structure to provide uniform illumination for the crystal in low-light conditions, making the structural morphology of the mannequin body more clearly visible, helping to improve the efficiency and quality of medical teaching and clinical diagnosis and treatment. The protective frame not only provides additional protection for the crystal, but also prevents external objects from knocking against the crystal's corners, reducing the risk of damage. Through simple switch operation, medical staff or patients can easily control the fill-light structure to be turned on or off without complex settings or maintenance. The use of light panels and batteries for power supply reduces both energy consumption and environmental pollution. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a schematic diagram of the structure of a new human body model display device;

[0016] Figure 2 for Figure 1 Schematic diagram of the structure connecting the middle crystal and the human body model body;

[0017] Figure 3 for Figure 1 The bottom view of the structure and the exploded view of the internal structure of the battery slot;

[0018] Figure 4 for Figure 1 The structural explosion diagram of the protective frame and light panel.

[0019] In the picture:

[0020] 1. Base; 11. Battery slot; 12. T-slot; 121. T-plate; 1211. Auxiliary disassembly slot; 2. Crystal; 3. Mannequin body; 4. Fill light structure; 41. Protective frame plate; 411. Mounting slot; 42. Light board; 43. Battery; 44. Switch; 5. Anti-slip pad. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0022] This embodiment provides a new human body model display device, such as Figure 1-4 As shown, the display device includes a base 1, a crystal 2 arranged on the base 1, a human model body 3 arranged in the crystal 2, and a fill light structure 4 for illuminating the crystal 2;

[0023] To facilitate supplemental illumination of the crystal 2 in low-light conditions, the supplemental illumination structure 4 includes a protective frame 41 mounted on the crystal 2, light panels 42 embedded in the upper and lower ends of the protective frame 41, a battery 43 housed within the base 1 and electrically connected to the light panels 42, and a switch 44 mounted on the base 1 and connected to the battery 43 for turning the light panels 42 on and off. The light panels 42, located at the lower end of the protective frame 41, are fixedly connected to the base 1. The supplemental illumination structure 4 provides uniform illumination of the crystal 2 in low-light conditions, making the structure and morphology of the mannequin body 3 more clearly visible, thereby improving the efficiency and quality of medical teaching and clinical diagnosis. The protective frame 41 not only provides additional protection for the crystal 2 but also prevents external objects from bumping against the sharp corners of the crystal 2, reducing the risk of damage. Medical staff or patients can easily control the supplemental illumination structure 4 by simply operating the switch 44, eliminating the need for complex setup or maintenance. The use of the light panels 42 and battery 43 for power supply reduces both energy consumption and environmental pollution. When supplemental lighting is needed for crystal 2, medical personnel or patients simply press switch 44 on base 1. Battery 43 then powers light panel 42, emitting a soft, even light. This light, guided by protective frame 41, evenly illuminates the exterior and interior of crystal 2, clearly revealing the structure and morphology of mannequin body 3. When supplemental lighting is no longer needed, simply press switch 44 again to turn off light panel 42, saving energy and electricity. This supplemental lighting mechanism 4 not only improves the efficiency and quality of medical education and clinical diagnosis and treatment but also protects crystal 2 and the mannequin from external damage. It is easy to operate, energy-efficient, and environmentally friendly.

[0024] Furthermore, in order to facilitate the installation and fixation of the light board 42, the light board 42 is in a T-shape. The T-shaped light board 42 design makes the installation process simpler and faster, without the need for additional fixings or tools, reducing the installation difficulty and cost.

[0025] Specifically, in order to facilitate the designated installation of the light panel 42: the upper and lower ends of the protective frame plate 41 are provided with mounting grooves 411 for installing the light panel 42. By providing the mounting groove 411 that matches the shape of the light panel 42, the precise installation of the light panel 42 is achieved, ensuring the uniformity and consistency of the lighting effect. The design of the mounting groove 411 makes the connection between the light panel 42 and the protective frame plate 41 tighter and more secure, effectively preventing the light panel 42 from loosening or falling off during use. The introduction of the mounting groove 411 simplifies the installation steps of the light panel 42, eliminates the need for additional fasteners or tools, and reduces the difficulty and cost of installation. During installation, simply align the T-shaped light panel 42 with the mounting grooves 411 at the upper and lower ends of the protective frame plate 41 and gently push it in to secure it. The shape and size of the mounting groove 411 fully match the light panel 42, ensuring the stability and accuracy of the light panel 42 during installation.

[0026] Specifically, to facilitate the installation and removal of the battery 43, a battery slot 11 is provided on the end of the base 1 facing away from the crystal 2 for installing the battery 43. The design of the battery slot 11 makes installation and removal of the battery 43 more convenient, requiring no additional tools or equipment, thus reducing both installation difficulty and cost. The shape and dimensions of the battery slot 11 match the battery 43, ensuring stability and accuracy during installation and preventing problems such as poor electrical contact caused by shaking or misalignment. The introduction of the battery slot 11 allows users to easily replace or maintain the battery 43, extending the lifespan and reliability of the device. To install the battery 43, users simply align the battery 43 with the opening of the slot 11 and gently push it in to secure it. The shape and dimensions of the battery slot 11 perfectly match the battery 43, ensuring stability and accuracy during installation. To remove the battery 43, users simply press gently on the edge of the battery 43 with their fingers or a tool to remove it from the slot 11.

[0027] Furthermore, in order to ensure that the battery 43 is stably placed inside the battery slot 11: a T-shaped slot 12 is provided at the end of the base 1 away from the crystal 2, which is connected to the battery slot 11, and a T-shaped plate 121 is inserted into the inside of the T-shaped slot 12 for fixing the battery 43 in the battery slot 11. The design of the slot 12 and the T-shaped plate 121 enables the battery 43 to be stably fixed in the battery slot 11, preventing the problem of falling off due to shaking or vibration, and ensuring the reliability and safety of the device. The insertion and removal of the T-shaped plate 121 are simple and quick. The user can complete the fixing and removal of the battery 43 without the aid of additional tools, reducing the difficulty and cost of use. When installing the battery 43, the user first places the battery 43 into the battery slot 11 and ensures that it is in the correct position. Then, align the T-shaped plate 121 with the opening of the T-shaped slot 12 and gently push it in until it is fully inserted into the slot. At this point, the fixing portion of the T-shaped plate 121 fits snugly against the two side walls of the T-shaped slot, while the pressing portion firmly presses the battery 43 against the bottom of the battery slot 11, ensuring stable fixation of the battery 43. To remove the battery 43, the user simply pulls out the T-shaped plate 121 to remove it from the battery slot 11. This design not only simplifies the removal process of the battery 43 but also ensures safety and reliability.

[0028] Furthermore, to facilitate the disassembly of the T-shaped plate 121, a plurality of auxiliary disassembly slots 1211 are provided in an array at one end of the T-shaped plate 121 away from the base 1. The design of the auxiliary disassembly slots 1211 makes the disassembly of the T-shaped plate 121 more convenient, and the user can complete the operation without the aid of additional tools, reducing the difficulty and cost of use. The introduction of the auxiliary disassembly slots 1211 allows the user to apply a more uniform and stable force when disassembling the T-shaped plate 121, avoiding damage or safety hazards caused by improper disassembly, and ensuring the safety and reliability of the disassembly process. When disassembling the T-shaped plate 121, the user only needs to insert a finger or a tool into the auxiliary disassembly slot 1211 and then gently apply force to pull the T-shaped plate 121 out of the T-shaped slot 12. The design of the auxiliary disassembly slots 1211 allows the user to apply a more uniform and stable force during the disassembly process, avoiding damage or safety hazards caused by improper disassembly. Once the T-shaped plate 121 is pulled out, the user can easily remove the battery 43 from the battery compartment 11 for replacement or maintenance. After completing the replacement or maintenance, the user only needs to put the battery 43 back into the battery slot 11, align the T-shaped plate 121 with the opening of the T-shaped slot 12, and gently push it in to secure it.

[0029] Furthermore, in order to prevent the base 1 from sliding on the table, anti-slip pads 5 are fixedly connected to the four corners of the bottom end of the base 1. The anti-slip pads 5 are made of a material with high elasticity and a high coefficient of friction, such as rubber or silicone, to ensure a close fit and stable fixation between the base 1 and the table. The design of the anti-slip pads 5 allows the base 1 to be placed stably on the table, preventing the device from tipping over or being damaged due to sliding, and ensuring safety and reliability during use. The anti-slip pads 5 not only have an anti-slip function, but also protect the table from scratches or damage caused by the hard material of the base 1, thereby extending the service life of the table. When the device is placed on the table, the anti-slip pads 5 fit tightly against the table, forming a stable support point. Since the anti-slip pads 5 are made of a material with high elasticity and a high coefficient of friction, when the base 1 is subjected to external forces, such as wind or human push, the anti-slip pads 5 can generate sufficient friction to resist the sliding force, ensuring that the base 1 remains stable on the table. In addition, the surface of the anti-slip pad 5 is also anti-slip treated by adding textures or bumps, etc., which further increases the friction between the anti-slip pad 5 and the table surface, making the base 1 more stable when subjected to external forces.

[0030] The above is only a preferred specific implementation method of the present application, but the scope of protection of the present application is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes based on the technical solution and concept of the present application within the technical scope disclosed in the present application, and they should be covered by the scope of protection of the present application.

Claims

1. A novel human body model display device, comprising a base (1), a crystal (2) arranged on the base (1), a human body model body (3) arranged in the crystal (2), and a supplementary light structure (4) for illuminating the crystal (2); Its characteristics are: The fill light structure (4) comprises a protective frame plate (41) mounted on the crystal (2), a light board (42) embedded in the upper and lower ends of the protective frame plate (41), a battery (43) arranged in the base (1) and electrically connected to the light board (42), and a switch (44) mounted on the base (1) and connected to the battery (43) for controlling the light board (42) to be turned on or off, wherein the light board (42) located at the lower end of the protective frame plate (41) is fixedly connected to the base (1).

2. The novel human body model display device according to claim 1, characterized in that: The light panel (42) is T-shaped.

3. The novel human body model display device according to claim 1, characterized in that: The upper and lower ends of the protective frame plate (41) are both provided with mounting grooves (411) for mounting the light board (42).

4. The novel human body model display device according to claim 1, characterized in that: A battery slot (11) for installing a battery (43) is provided at one end of the base (1) away from the crystal (2).

5. The novel human body model display device according to claim 4, characterized in that: A T-shaped slot (12) communicating with the battery slot (11) is provided at one end of the base (1) away from the crystal (2), and a T-shaped plate (121) for fixing the battery (43) in the battery slot (11) is inserted into the interior of the T-shaped slot (12).

6. The novel human body model display device according to claim 5, characterized in that: A plurality of auxiliary disassembly grooves (1211) are provided in an array at one end of the T-shaped plate (121) away from the base (1).

7. The novel human body model display device according to claim 1, characterized in that: Anti-slip pads (5) are fixedly connected to the four corners of the bottom end of the base (1).