Remote medical terminal

By designing a telemedicine terminal with rechargeable batteries and wireless communication functions, the problem of difficulty in charging equipment on earthquake-resistant disaster relief sites has been solved, and the device is portable, efficient charging and long battery life is achieved.

CN222853904UActive Publication Date: 2025-05-13SHENZHEN DINGSHENG INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202421356146.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-13
Publication Date
2025-05-13
Estimated Expiration
2034-06-13

AI Technical Summary

Technical Problem

At the earthquake-resistant disaster relief site, smart glasses, handheld ultrasound diagnostic equipment and mobile phone chargers take up a lot of space, complicated wire wrapping, and no electricity in the disaster area or tight sockets, resulting in difficulty in charging.

Method used

A telemedicine terminal is designed, including a terminal host with a rechargeable battery, a built-in satellite communication module, and a first and second charging slots on the top for smart glasses and handheld ultrasound diagnostic devices, respectively. These devices communicate wirelessly with the terminal host and automatically charge when not in use, reducing reliance on additional chargers.

Benefits of technology

It realizes portable and efficient charging of smart glasses and handheld ultrasound diagnostic devices, extends the battery life of the device, simplifies the charging process, and reduces the need for sockets.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222853904U_ABST
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Abstract

The utility model relates to a remote medical terminal which comprises a terminal host with a rechargeable battery, a cover plate covering the top end of the terminal host is arranged on the terminal host in an overturning mode, a touch screen displayer is arranged on the face, facing the terminal host, of the cover plate, and a locking piece is arranged between the terminal host and the cover plate. A first charging groove and a second charging groove are formed in the top end of the terminal host, intelligent glasses are arranged in the first charging groove, handheld ultrasonic diagnosis equipment is arranged in the second charging groove, and the intelligent glasses and the handheld ultrasonic diagnosis equipment are placed into the corresponding first charging groove and the second charging groove to be charged when not used. The intelligent glasses and the handheld ultrasonic diagnosis equipment do not need to additionally carry a charger, the endurance time of the intelligent glasses and the handheld ultrasonic diagnosis equipment is prolonged, the charger does not need to be additionally carried, and charging is more convenient.
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Description

Technical Field

[0001] The utility model relates to the field of medical terminals, and more specifically, to a remote medical terminal. Background Art

[0002] Telemedicine refers to the use of computer technology, remote sensing, telemetry and remote control technology to give full play to the medical technology and medical equipment advantages of large hospitals or specialized medical centers to provide long-distance diagnosis, treatment and consultation for the wounded and sick in remote areas, islands or ships with poor medical conditions.

[0003] Telemedicine has been fully utilized at the earthquake relief site. Medical staff at the disaster site use smart glasses to wirelessly connect to mobile phones to share the on-site images with distant experts in real time, and then use handheld ultrasound diagnostic equipment to wirelessly connect to mobile phones to share the patient's internal body conditions with distant experts. At the same time, the mobile phone also displays the patient's internal body images for the convenience of medical staff at the site. However, smart glasses, handheld ultrasound diagnostic equipment and mobile phones have limited battery power due to their size. Mobile phones need to run multiple programs at the same time and consume too much power. Therefore, medical staff need to carry chargers for smart glasses, handheld ultrasound diagnostic equipment and mobile phones when carrying them. The chargers for the three not only take up space, but the wires of the three chargers are easily tangled together. In addition, there is often no electricity at the disaster site, making it difficult to charge the three. When the generator is used to provide emergency power to the temporary rescue camp, charging the three also requires three sockets, which will cause socket shortage. Utility Model Content

[0004] In view of the above-mentioned defects of the prior art, a remote medical terminal is provided.

[0005] The technical solution adopted by the utility model to solve its technical problems is: a remote medical terminal, including a terminal host with a rechargeable battery, a satellite communication module is arranged in the terminal host, a touch screen display covering the top of the terminal host is flipped on the terminal host, a locking piece is arranged between the terminal host and the touch screen display, a first charging slot and a second charging slot are arranged on the top of the terminal host, smart glasses with a camera are arranged in the first charging slot, and a handheld ultrasonic diagnostic device is arranged in the second charging slot, and the smart glasses and the handheld ultrasonic diagnostic device are both wirelessly connected to the terminal host.

[0006] Preferably, the first charging slot includes a first groove, a protrusion and a glasses charging cable with a connector, the smart glasses are arranged in the first groove, the protrusion is arranged at the bottom of the first groove and located between the two frames of the smart glasses, the glasses charging cable is arranged in the first groove, and the glasses charging cable is electrically connected to the rechargeable battery of the terminal host.

[0007] Preferably, a portion is provided in the first groove to divide the first groove into a glasses groove and a charging cable groove, the protrusion and the smart glasses are both located in the glasses groove, the glasses charging cable is located in the charging cable groove, and elastic pads with their own elastic deformation are provided on the inner wall and the bottom of the glasses groove.

[0008] Preferably, the second charging slot is a contoured slot having the same external shape as the handheld ultrasonic diagnostic device, and the two opposite inner side walls of the contoured slot are provided with strip-shaped notches that are recessed outward and extend up and down, and a wireless charger is embedded in the bottom of the contoured slot, and the handheld ultrasonic diagnostic device is a handheld ultrasonic diagnostic device that can be wirelessly charged.

[0009] Preferably, a storage slot is also provided on the top of the terminal host.

[0010] Preferably, the terminal host is flipped with a cover plate covering the top of the terminal host, the touch screen display is arranged on the surface of the cover plate facing the terminal host, and the locking member is a first lock and a second lock arranged between the terminal host and the cover plate, and the first lock and the second lock are locked with each other.

[0011] Preferably, a strip-shaped mounting block is provided on the edge of the top surface of the terminal host, the mounting block extends along the edge of the terminal host, the cover plate is provided with a cover plate notch corresponding to the position of the mounting block, and a damping shaft is provided between the two opposite side walls of the mounting block and the two inner side walls of the cover plate notch.

[0012] Preferably, a third groove is provided at the top of the terminal host, the first charging groove and the second charging groove are both provided at the bottom of the third groove, a horizontal frame is provided in the third groove and is flipped relative to the third groove, and an elastic plate with its own elastic deformation that covers the first charging groove, the second charging groove and the touch screen display screen is installed in the horizontal frame.

[0013] Preferably, a heat dissipation port is provided on one side wall of the terminal host, and a dustproof net is installed in the heat dissipation port.

[0014] Preferably, a handle is provided on one side wall of the terminal host.

[0015] The beneficial effects of the utility model are that the smart glasses and the handheld ultrasonic diagnostic device are installed in the first charging slot and the second charging slot on the terminal host, which are convenient for carrying together. When in use, the smart glasses and the handheld ultrasonic diagnostic device can be taken out from the first charging slot and the second charging slot without searching. The terminal host is larger in size and can be installed with batteries with larger capacity. When not in use, the smart glasses and the handheld ultrasonic diagnostic device can be placed in the corresponding first charging slot and the second charging slot for charging, which improves the battery life of the smart glasses and the handheld ultrasonic diagnostic device. There is no need to carry an additional charger, and charging is more convenient. Charging the terminal host only requires one socket. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a front structural schematic diagram of an embodiment of the utility model;

[0017] Figure 2 This is a schematic diagram of the unfolded back structure of an embodiment of the utility model;

[0018] Figure 3 It is a schematic diagram of the explosion structure of an embodiment of the utility model;

[0019] Figure 4 This is a schematic diagram of the top structure of the terminal host of the embodiment of the utility model;

[0020] Figure 5 This utility model embodiment Figure 4 A magnified schematic diagram of the middle A area;

[0021] Figure 6 It is a schematic diagram of the folded structure of an embodiment of the utility model.

[0022] Figure numerals: 1 terminal host, 10 first charging slot, 100 glasses charging cable, 101 first groove, 102 protrusion, 11 second charging slot, 110 wireless charger, 111 bar notch, 12 third groove, 13 first lock buckle, 14 storage slot, 2 cover plate, 20 touch screen display, 21 second lock buckle, 22 mounting block, 23 damping shaft, 3 smart glasses, 4 handheld ultrasonic diagnostic equipment, 5 horizontal frame, 50 elastic plate, 6 vertical plate, 7 dust net, 8 handle. DETAILED DESCRIPTION

[0023] In order to make the purpose, technical solution and advantages of the embodiments of the utility model clearer, the following will be clearly and completely described in combination with the technical solution in the embodiments of the utility model. Obviously, the described embodiments are partial embodiments of the utility model, rather than all embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work belong to the protection scope of the utility model. In addition, the directional terms mentioned in the utility model, such as "up", "down", "front", "back", "left", "right", "inside", "outside", etc., are only referenced to the directions of the attached diagrams. The directional terms used are for better and clearer explanation and understanding of the utility model, rather than indicating or implying the orientation that the utility model must have, and therefore cannot be understood as a limitation on the utility model.

[0024] The utility model is implemented as follows Figures 1 to 6As shown in , a telemedicine terminal includes a terminal host 1 with a rechargeable battery, the rechargeable battery is integrated inside the terminal host 1, and the terminal host 1 is also provided with a charging interface, which is arranged on the rear side wall of the terminal host 1.The terminal host 1 is provided with a satellite communication module. When the signal base station in the disaster area is damaged and cannot be used, remote communication is carried out through the satellite communication module. The terminal host 1 is flipped and provided with a touch screen display 20 covering the top of the terminal host 1. A locking member is provided between the terminal host 1 and the touch screen display 20. The terminal host 1 is flipped and provided with a cover plate 2 covering the top of the terminal host 1. The touch screen display 20 is embedded on the surface of the cover plate 2 facing the terminal host 1. The locking member is a first lock buckle 13 and a second lock buckle 21 provided between the terminal host 1 and the cover plate. The first lock buckle 12 and the second lock buckle 21 are locked with each other. The first lock buckle 13 and the second lock buckle 21 are combined into a buckle. The top of the terminal host 1 is provided with a A first charging slot 10 and a second charging slot 11 are provided, the first charging slot 10 is located on the left side of the top surface of the terminal host 1, and the second charging slot 11 is located on the right side of the top surface of the terminal host 1. The first charging slot 10 is provided with smart glasses 3 with a camera, and a rechargeable battery is provided in the smart glasses 3. A charging interface is also provided on the smart glasses 3. A handheld ultrasonic diagnostic device 4 is matched and provided in the second charging slot 11. The handheld ultrasonic diagnostic device 4 can select a fully digital ultrasonic imaging diagnostic instrument with the model XProbe of Guangzhou Sonoxing Company. The smart glasses 3 and the handheld ultrasonic diagnostic device 4 are both wirelessly connected to the terminal host 1. The smart glasses 3 need to be wirelessly connected to the terminal host 1 via Bluetooth or WIFI. The handheld ultrasonic diagnostic device 4 is wirelessly connected to the terminal host 1 through WIFI. The inner wall and the bottom of the first charging slot 10 are both provided with elastic pads, which are beaded fleece. The elastic pads can prevent the smart glasses 3 in the first charging slot 10 from being damaged. The inner wall and the bottom of the second charging slot 11 are also provided with elastic pads. The cover plate 2 is opened, the smart glasses 3 in the first charging slot 10 are taken out and put on. After the smart glasses 3 are wirelessly connected to the terminal host 1 through Bluetooth or WIFI, the touch screen display 20 is used to control the terminal host 1 to quickly call for consultation. The smart glasses 3 transmit the picture to the terminal host 1 in real time. The terminal host 1 transmits the picture signal of the smart glasses 3 to the terminal of the remote expert through the satellite communication module, so that the remote consulting expert can receive the real-time The handheld ultrasonic diagnostic device 4 is then used to detect the internal condition of the patient's body. The handheld ultrasonic diagnostic device 4 sends the data of the patient's body to the terminal host 1. The touch screen display 20 displays the internal condition of the patient's body. The screen of the touch screen display 20 is also larger than that of the mobile phone. The medical staff on the scene can see the internal condition of the patient's body more clearly. The terminal host 1 sends the patient's body data to the remote consultation expert, that is, the patient's body data collected by the smart glasses 3 and the handheld ultrasonic diagnostic device 4 are shared in real time with the remote expert consultation team through the terminal host 1. After the remote expert consultation team gives a treatment plan, it can also provide real-time guidance through the smart glasses 3. After the smart glasses 3 and the handheld ultrasonic diagnostic device 4 are out of power,The smart glasses 3 can be placed in the first charging slot 10 for charging, and the handheld ultrasonic diagnostic device 4 can be placed in the second charging slot 11 for charging.

[0025] Further improvements such as Figure 1 , Figure 4 and Figure 5 As shown in, the first charging slot 10 includes a first groove 101, a protrusion 102 and a glasses charging cable 100 with a connector, the smart glasses 3 are arranged in the first groove 101, the protrusion 102 is arranged at the bottom of the first groove 101 and is located between the two frames of the smart glasses 3, and the protrusion 102 is provided with two avoidance notches for avoiding two corresponding nose pads of the smart glasses 3. The protrusion 102 is used to limit the folded smart glasses 3 to prevent the smart glasses 3 from moving in the horizontal direction. The first groove 101 is provided with a vertical plate 6 that divides the first groove 101 into a glasses groove and a charging cable groove. The protrusion 102 and the smart glasses 3 are both located in the glasses groove, and the glasses charging cable 100 is located in the charging cable groove. The glasses charging cable 200 is electrically connected to the rechargeable battery of the terminal host 2, the elastic pad is arranged on the inner wall and the bottom of the glasses groove, the second charging groove 11 is a contoured groove with the same external shape as the handheld ultrasonic diagnostic device 4, the contoured groove prevents the handheld ultrasonic diagnostic device 4 from moving horizontally, a wireless charger 110 is embedded in the bottom of the contoured groove, the handheld ultrasonic diagnostic device 4 is a handheld ultrasonic diagnostic device 4 that can be wirelessly charged, the smart glasses 3 are charged by connecting the charging interface of the smart glasses 3 through the connector of the glasses charging cable 100, the connector of the glasses charging cable 100 and the charging interface of the smart glasses 3 can adopt Type-C type connectors and interfaces, and the handheld ultrasonic diagnostic device 4 is charged through the wireless charger 110.

[0026] Further improvements such as Figure 1 and Figure 3 As shown in the figure, a storage slot 14 is also provided at the top of the terminal host 1. The storage slot 14 is located between the first charging slot 10 and the second charging slot 11. The storage slot 14 is used to place bottled medical ultrasonic coupling agent or hose-packed ultrasonic coupling agent. When using the handheld ultrasonic diagnostic equipment 4, the ultrasonic coupling agent can be quickly taken out from the storage slot 14 for use, and there is no need to look for the ultrasonic coupling agent from the first aid kit, which is very quick and convenient.

[0027] Further improvements such as Figure 1 and Figure 3As shown in the figure, a strip-shaped mounting block 22 is arranged at the middle position of the rear side on the top surface of the terminal host 1, and the mounting block 22 extends in the left and right directions. Two coaxial damping shafts 23 are arranged on the left and right side walls of the mounting block 22, and the cover plate 2 is provided with a cover plate notch corresponding to the position of the mounting block 22. The two damping shafts 23 are connected to the left and right inner walls of the cover plate notch respectively. The first lock buckle 13 is arranged at the front end of the terminal host 1 near the top and at the center, and the second lock buckle 21 is arranged on the cover plate 2, so that when the telemedicine terminal is transported, the terminal host 1 and the cover plate 2 will not be opened, so as to prevent debris from entering between the terminal host 1 and the cover plate 2 and causing damage to the touch screen display 20.

[0028] Further improvements such as Figure 1 and Figure 3 As shown in , a third groove 12 is provided at the top of the terminal host 1, the first charging groove 10 and the second charging groove 11 are both arranged at the bottom of the third groove 12, a horizontal frame 5 flipped relative to the third groove 12 is provided in the third groove 12, the horizontal frame 5 is a square frame structure, a shaft blind hole is provided on the left side of the front and rear inner side walls of the third groove 12, an integrally formed shaft is provided on the left side of the front and rear end side walls of the horizontal frame 5, the front shaft is rotatably arranged in the front shaft blind hole, and the rear shaft is rotatably arranged in the rear shaft blind hole, the horizontal frame An elastic plate 50 is installed inside to cover the first charging slot 10, the second charging slot 11 and the touch screen display 20. The elastic plate 50 is a rubber pad or a sponge pad. The left inner wall of the third groove 12 is an open structure, so that the horizontal frame 5 and the elastic plate 50 can be flipped 180° to prevent the horizontal frame 5 and the elastic plate 50 from blocking the touch screen display 20. The horizontal frame 5 and the elastic plate 50 can prevent the smart glasses 3 and the handheld ultrasonic diagnostic equipment 4 from colliding up and down in the corresponding first charging slot 10 and second charging slot 11 and being damaged, and can also prevent the screen of the touch screen display 20 from being damaged.

[0029] Further improvements such as Figure 1 and Figure 4 As shown in the figure, the two opposite inner walls of the second charging slot 11 are recessed outward and extend up and down. The strip notches 111 are all semi-cylindrical structures. The strip notches 11 facilitate medical staff to quickly remove the handheld ultrasonic diagnostic equipment 4 from the second charging slot 11.

[0030] Further improvements such as Figure 2 As shown in , a heat dissipation port is provided on the rear side wall of the terminal host 1, and a dustproof net 7 is installed in the heat dissipation port to enhance the heat dissipation of the terminal host 1, ensure the normal operation of the terminal host 1, and quickly perform edge computing.

[0031] Further improvements such as Figure 1 and Figure 5 As shown in FIG. 1 , a handle 8 is provided on the front side wall of the terminal host 1 , which is convenient for carrying the remote medical terminal to the disaster relief area that can only be reached on foot.

[0032] It should be understood that those skilled in the art can make improvements or changes based on the above description, and all these improvements and changes should fall within the scope of protection of the claims attached to the utility model.

Claims

1. A telemedicine terminal, comprising a terminal host with a rechargeable battery; characterized in that: A satellite communication module is arranged in the terminal host; a touch screen display covering the top of the terminal host is flipped up on the terminal host; a locking piece is arranged between the terminal host and the touch screen display; a first charging slot and a second charging slot are arranged on the top of the terminal host; smart glasses with a camera are arranged in the first charging slot; a handheld ultrasonic diagnostic device is arranged in the second charging slot; the smart glasses and the handheld ultrasonic diagnostic device are both wirelessly connected to the terminal host.

2. A remote medical terminal according to claim 1, characterized in that: The first charging slot includes a first groove, a protrusion and a glasses charging cable with a connector; the smart glasses are arranged in the first groove; the protrusion is arranged at the bottom of the first groove and located between the two frames of the smart glasses; the glasses charging cable is arranged in the first groove; the glasses charging cable is electrically connected to the rechargeable battery of the terminal host.

3. A telemedicine terminal according to claim 2, characterized in that: The first groove is provided with a groove that divides the first groove into a glasses groove and a charging cable groove; the protrusion and the smart glasses are both located in the glasses groove; the glasses charging cable is located in the charging cable groove; and elastic pads that are elastically deformable themselves are provided on the inner wall and bottom of the glasses groove.

4. A remote medical terminal according to claim 1, characterized in that: The second charging slot is a contoured slot with the same external shape as the handheld ultrasonic diagnostic device; the two opposite inner side walls of the contoured slot are recessed outward and extend up and down with strip-shaped notches; a wireless charger is embedded in the bottom of the contoured slot; and the handheld ultrasonic diagnostic device is a handheld ultrasonic diagnostic device that can be wirelessly charged.

5. A remote medical terminal according to claim 1, characterized in that: The top of the terminal host is also provided with a storage slot.

6. A remote medical terminal according to claim 1, characterized in that: The terminal host is flipped with a cover plate covering the top of the terminal host; the touch screen display is arranged on the surface of the cover plate facing the terminal host; the locking member is a first lock and a second lock arranged between the terminal host and the cover plate; the first lock and the second lock are locked with each other.

7. A remote medical terminal according to claim 6, characterized in that: A strip-shaped mounting block is arranged on the edge of the top surface of the terminal host; the mounting block extends along the edge of the terminal host; a cover plate notch is arranged on the cover plate corresponding to the position of the mounting block; a damping shaft is arranged between the two opposite side walls of the mounting block and the two inner side walls of the cover plate notch.

8. A remote medical terminal according to claim 1, characterized in that: A third groove is arranged at the top of the terminal host; the first charging groove and the second charging groove are both arranged at the bottom of the third groove; a horizontal frame is arranged in the third groove and is flipped relative to the third groove; an elastic plate with its own elastic deformation that covers the first charging groove, the second charging groove and the touch screen display is installed in the horizontal frame.

9. A remote medical terminal according to claim 1, characterized in that: A heat dissipation port is arranged on one side wall of the terminal host; a dustproof net is installed in the heat dissipation port.

10. A remote medical terminal according to claim 1, characterized in that: A handle is arranged on one side wall of the terminal host.