A multi-parameter monitoring and early warning device for stroke first aid
By integrating a GPS module, a wireless module, and an extended battery box, the design solves the problems of large size, insufficient power, and signal cable limitations of stroke monitors during emergency rescue, transfer, and hospitalization. This enables flexible use and secure connection of the device, improving the convenience and safety of monitoring.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- HANDAN FIRST HOSPITAL
- Filing Date
- 2026-03-23
- Publication Date
- 2026-06-16
AI Technical Summary
Existing stroke monitoring devices suffer from problems such as large size, insufficient battery life, limited signal cables, and inconvenient placement during emergency treatment, transfer, and hospitalization, leading to inconvenience and safety risks.
A multi-parameter monitoring and early warning device for stroke emergency treatment was designed, integrating a GPS module, a wireless module, and an expansion battery box. It supports wireless connection and removable battery power supply, and features a composite signal cable and a storage chamber, enabling flexible use and safe connection of the device.
It achieves long battery life, secure connectivity, and convenient use in different scenarios, reducing the risks of device placement and relocation, and improving the flexibility and security of monitoring.
Smart Images

Figure CN122208104A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of medical assistive devices, and in particular to a multi-parameter monitoring and early warning device for stroke emergency care. Background Technology
[0002] A medical monitor is a device that monitors a patient's vital signs using multiple parameters. It typically includes a monitor body and a signal cable. Electrodes are attached to the end of the signal cable to fit against the body surface and acquire corresponding vital sign signals. These signals are then transmitted to the monitor body, where they are decoded and processed to generate various indicator data, which are displayed on the monitor body's screen. If any vital sign exceeds a reasonable range, the monitor body will issue an alert directly through sound, light, or images.
[0003] However, for stroke patients, the location and time of the stroke are random, which means that medical staff need to rush to the scene quickly after receiving the call to carry out emergency treatment, transfer, treatment and hospital observation. The whole process needs to be monitored in real time with a monitoring device, but the existing monitoring devices have several inconveniences. When responding to calls outside, the monitoring device needs to be designed to be larger to ensure sufficient battery installation space in order to guarantee battery life. When transferring patients, the monitoring device needs to be close to the patient at all times due to the limitation of the signal cable length, which makes placement and storage difficult and poses a risk of the signal cable being pulled off. When hospitalized, large monitoring devices placed on the bedside table in the ward are inconvenient to move and have a high risk of falling. To address the design contradictions of monitoring devices in the aforementioned application scenarios, a multi-parameter monitoring and early warning device for stroke emergency care is provided. Summary of the Invention
[0004] The purpose of this invention is to provide a multi-parameter monitoring and early warning device for stroke emergency care, in order to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a multi-parameter monitoring and early warning device for stroke emergency care, comprising: The multi-functional monitoring device has an integrated GPS module for marking the current location of use; A wireless module, which is wirelessly connected to the multi-functional monitor; The composite signal cable can be optionally directly plugged into the multi-functional monitor for wired connection or plugged into the wireless module for wireless connection with the multi-functional monitor. An extended battery box is detachably installed on the multi-functional monitor to provide power to the multi-functional monitor; The extended battery box has a storage chamber on its back, which is used to store the composite signal cable and the wireless module. The storage chamber also contains a charging dock adapted to the wireless module.
[0006] Preferably, the composite signal line includes a composite plug and a main line fixedly mounted on the composite plug, wherein multiple branch acquisition lines are integrated and mounted at the end of the main line, and electrode plates are mounted at the end of the branch acquisition lines.
[0007] Preferably, the bottom of the wireless module is provided with a composite slot adapted to the composite plug and a charging interface adapted to the charging dock, and the wireless module is provided with a signal processing circuit and a wireless signal transceiver.
[0008] Preferably, the side of the multi-functional monitor is provided with a direct connection socket adapted to the composite plug, and the outer wall of the direct connection socket is rotatably provided with a protective cover. The back of the multi-functional monitor is provided with a storage slot, and a multi-functional support part is provided in the storage slot.
[0009] Preferably, the outer wall of the extended battery box has an assembly station for assembling the multi-functional monitor. The multi-functional monitor is provided with a locking component for fixing it to the assembly station. A power supply interface is provided on the back of the multi-functional monitor. A power plug adapted to the power supply interface is fixedly provided in the assembly station. A charging port is provided on the side of the extended battery box.
[0010] Preferably, the locking component includes a locking strip integrally formed on the bottom of the multi-functional monitor, a slot adapted to the locking strip is provided on the inner bottom of the assembly station, a movable locking block is installed on the top of the multi-functional monitor, a fixing groove adapted to the movable locking block is provided on the inner top of the assembly station, a pressure block is movably disposed in the fixing groove, and a locking spring is provided at the bottom of the movable locking block.
[0011] Preferably, the outer wall of the storage slot is provided with multiple positioning grooves, and a positioning block is slidably provided on the outer surface of the multifunctional support. The positioning block is movably engaged in the positioning groove so that the multifunctional support and the multifunctional monitor are at a preset angle.
[0012] Preferably, the positioning groove includes; A hanging positioning slot is provided at the top of the storage slot for the multifunctional support to be used for hanging positioning when the multifunctional support is facing upwards; A storage positioning groove is provided at the bottom of the storage slot to keep the multifunctional support part contained and stored in the storage slot; A support positioning groove is formed in the middle of the storage slot. The support positioning groove extends outward at an angle so that the multifunctional support part can provide tilt support for the multifunctional monitor after being installed inside the support positioning groove by the positioning block.
[0013] Preferably, the outer wall of the storage chamber is rotatably provided with a cover plate, and the top of the cover plate is rotatably provided with a locking member. The inner end of the locking member is rotated and engaged with the inner top of the storage chamber, so that the cover plate covers the opening of the storage chamber.
[0014] Preferably, the top of the extended battery box is provided with a handle for rotation. The technical effects and advantages of this invention are as follows: 1. This multi-parameter monitoring and early warning device for stroke emergency care allows for quick assembly of the multi-functional monitor with an extended battery box when out in use, ensuring longer battery life and power supply. The extended battery box also stores the wireless module and composite signal cable, and charges the wireless module. During patient transport, the wireless module connects to the composite signal cable's connector, preventing accidental disconnection and making transport more convenient. In hospital use, the multi-functional monitor can be detached from the extended battery box and connected to the power interface on the back via a power cable. It can then be hung on a wall or placed on a table using the multi-functional support on the back, providing convenient access. This addresses the needs of existing multi-functional monitors in various complex operating conditions.
[0015] 2. This multi-parameter monitoring and early warning device for stroke emergency treatment allows for quick and easy disassembly and assembly by pressing the pressure block downwards to remove the movable latch from the side wall of the assembly station, and then directly detaching the multi-functional monitor from the extended battery box. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall outer surface of the present invention; Figure 2 This is a schematic diagram of the back of the multifunctional monitoring instrument and extended battery box of the present invention; Figure 3 This is a schematic diagram of the composite signal line and the outer surface structure of the wireless module of the present invention; Figure 4 This is an exploded view of the front structure of the multifunctional monitoring instrument and extended battery box of the present invention; Figure 5 This is a schematic diagram of the multifunctional support part of the present invention used as a support for placing the multifunctional monitoring instrument; Figure 6 This is a schematic diagram of the multifunctional support part of the present invention used as a mounting device for a multifunctional monitoring instrument.
[0017] In the diagram: 1. Multifunctional monitor; 12. Direct connection socket; 13. Protective cover; 14. Storage slot; 15. Multifunctional support; 16. Positioning block; 17. Positioning groove; 171. Hanging positioning slot; 172. Support positioning slot; 173. Storage positioning slot; 18. Movable locking block; 182. Locking spring; 19. Locking strip; 2. Composite signal line; 21. Composite plug; 22. Main line; 23. Branch acquisition line; 24. Electrode plate; 3. Extended battery box; 32. Handle; 33. Storage chamber; 34. Cover plate; 35. Charging base; 36. Locking component; 37. Charging port; 38. Assembly station; 39. Pressing block; 310. Slot; 4. Wireless module; 42. Composite slot; 43. Charging interface. Detailed Implementation
[0018] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0019] This invention provides, for example Figures 1-6 The illustrated multi-parameter monitoring and early warning device for stroke emergency treatment includes a multi-functional monitor 1, a composite signal cable 2, an extended battery box 3, and a wireless module 4. The multi-functional monitor 1 integrates a GPS module for marking the current location. The wireless module 4 is wirelessly connected to the multi-functional monitor 1. The composite signal cable 2 can be either directly plugged into the multi-functional monitor 1 for a wired connection or plugged into the wireless module 4 for a wireless connection. The extended battery box 3 is detachably installed on the multi-functional monitor 1 to provide power. The back of the extended battery box 3 has a storage chamber 33 for storing the composite signal cable 2 and the wireless module 4, and a charging base 35 adapted to the wireless module 4 is provided in the storage chamber 33.
[0020] The composite signal line 2 includes a composite plug 21 and a main line 22 fixedly mounted on the composite plug 21. Multiple branch acquisition lines 23 are integrated at the end of the main line 22, and electrode plates 24 are mounted at the end of the branch acquisition lines 23.
[0021] The bottom of the wireless module 4 has a composite slot 42 for the composite plug 21 and a charging interface 43 for the charging dock 35. The wireless module 4 contains a signal processing circuit and a wireless transceiver.
[0022] The side of the multi-functional monitor 1 is provided with a direct connection socket 12 that is compatible with the composite plug 21, and the outer wall of the direct connection socket 12 is provided with a protective cover 13. The back of the multi-functional monitor 1 is provided with a storage slot 14, and a multi-functional support part 15 is provided in the storage slot 14.
[0023] An assembly station 38 for assembling a multi-functional monitoring instrument 1 is provided on the outer wall of the extended battery box 3. The multi-functional monitoring instrument 1 is provided with a locking component for fixing to the assembly station 38. A power supply interface is provided on the back of the multi-functional monitoring instrument 1. A power plug adapted to the power supply interface is fixedly provided in the assembly station 38. A charging port 37 is provided on the side of the extended battery box 3.
[0024] The locking component includes a locking strip 19 integrally formed on the bottom of the multi-functional monitor 1. The bottom of the assembly station 38 is provided with a slot 310 adapted to the locking strip 19. A movable locking block 18 is installed on the top of the multi-functional monitor 1. A fixing groove adapted to the movable locking block 18 is provided on the top of the assembly station 38. A pressure block 39 is movably arranged in the fixing groove. A locking spring 182 is provided at the bottom of the movable locking block 18.
[0025] The outer wall of the storage slot 14 is provided with multiple positioning grooves 17, and the outer surface of the multi-functional support part 15 is slidably provided with positioning blocks 16. The positioning blocks 16 are movably engaged in the positioning grooves 17 so that the multi-functional support part 15 and the multi-functional monitor 1 are at a preset angle.
[0026] The positioning groove 17 is provided with multiple grooves, including a hanging positioning groove 171 at the top of the storage groove 14 for hanging and positioning the multi-functional support 15 upwards; a storage positioning groove 173 at the bottom of the storage groove 14 for keeping the multi-functional support 15 stored and restricted in the storage groove 14; and a support positioning groove 172 in the middle of the storage groove 14. The support positioning groove 172 extends outward at an angle so that the multi-functional support 15 can be installed inside the support positioning groove 172 by the positioning block 16 and provide tilt support for the multi-functional monitor 1, thereby enabling the multi-functional support 15 to be used for suspension or placement support.
[0027] The outer wall of the storage chamber 33 is rotatably provided with a cover plate 34, and the top of the cover plate 34 is rotatably provided with a locking member 36. The inner end of the locking member 36 is rotated and snapped into the inner top of the storage chamber 33 so that the cover plate 34 covers the opening of the storage chamber 33 for storing the composite signal line 2 and the wireless module 4 when carried.
[0028] The top of the extended battery box 3 is equipped with a rotating handle 32 for easy carrying.
[0029] Working principle; This device has three usage modes; Form 1: When performing emergency rescue, the device is installed in the assembly station 38 on the front of the extended battery box 3, so that the card strip 19 enters the card slot 310 and the movable card block 18 is engaged in the inner top of the assembly station 38. At this time, the power interface and the power plug are connected, and the entire extended battery box 3 provides power to the multi-functional monitor 1. At the same time, the wireless module 4 and the composite signal cable 2 are placed in the storage chamber 33 for storage and carrying. In emergency rescue, the composite signal cable 2 is taken out and plugged into the direct connection socket 12 for connection and use. Form 2: When transporting patients, the wireless module 4 is plugged into the composite plug 21 of the composite signal cable 2. At this time, the wireless module 4 is wirelessly connected to the multi-functional monitor 1. The wireless module 4 is directly tied to the patient's body, so the multi-functional monitor 1 can be placed close to the patient, avoiding accidental contact with the composite signal cable 2 and causing the connector to fall off, making the transport process more convenient. Form 3: During the patient's hospitalization observation period, by pressing down the pressure block 39, the movable locking block 18 is moved out from the side wall of the assembly station 38, and then the multi-functional monitor 1 is directly detached from the expansion battery box 3. At this time, the multi-functional monitor 1 is connected to the power interface on the back of the device via the power supply wire, so that the expansion battery box 3 does not need to be brought into the ward during hospitalization. At the same time, by flipping the multi-functional support part 15 on the back of the multi-functional monitor 1 out from the storage slot 14, and then sliding the positioning block 16, the positioning block 16 is placed inside the hanging positioning slot 171 or the support positioning slot 172, so that the entire multi-functional monitor 1 can be hung on the wall or placed on the table for convenient use. This multifunctional monitor 1 collects human physiological electrical signals, optical signals, and pressure signals through sensors on electrode pads 24 connected by composite signal lines 2. After filtering, amplification, and analog-to-digital conversion by the instrument's internal circuitry, and combined with medical algorithms for processing and analysis, the signals are finally converted into digital and waveform results readable by medical staff, enabling dynamic monitoring of vital signs. The entire system can perform non-invasive, real-time, and continuous monitoring of core vital signs of patients, including electrocardiogram, blood oxygen saturation, non-invasive blood pressure, respiratory rate, body temperature, pulse rate, pulse oxygen perfusion index, non-invasive blood glucose, and end-tidal carbon dioxide. The data is displayed on the screen in real time, thus achieving a display of numerical values and waveforms. By preset normal ranges for vital signs, an automatic alarm is triggered when any value of the monitored person exceeds the threshold.
[0030] Meanwhile, this multi-functional monitoring device 1 integrates a GPS module to mark the current location. By writing a log module into the operating system and pre-setting the hospital as a fixed location, the device automatically activates the GPS positioning module to locate the current position when in use. If the current location is not a pre-set fixed point, it is marked as an emergency call, recording the current location, time, and related monitoring data, and generating an emergency data report. When the device reaches the hospital, the GPS automatically detects the pre-set location, automatically records the time, and generates a hospital arrival log. When used within the hospital, it is marked as a fixed-location usage log to record daily monitoring data. When changing users, the previously recorded data is uploaded and then the local data is cleared.
[0031] Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A multi-parameter monitoring and early warning device for stroke emergency care, characterized in that, include: The multi-functional monitoring instrument (1) has an integrated GPS module for marking the current location of use; The wireless module (4) is wirelessly connected to the multi-functional monitor (1); The composite signal line (2) can be optionally directly plugged into the multi-functional monitor (1) for wired connection or plugged into the wireless module (4) for wireless connection with the multi-functional monitor (1); An extended battery box (3) is detachably installed on the multi-functional monitor (1) to provide power to the multi-functional monitor (1); The extended battery box (3) has a storage chamber (33) on the back, which is used to store the composite signal line (2) and the wireless module (4), and a charging base (35) adapted to the wireless module (4) is provided in the storage chamber (33).
2. The multi-parameter monitoring and early warning device for stroke emergency care according to claim 1, characterized in that, The composite signal line (2) includes a composite plug (21) and a main line (22) fixedly installed on the composite plug (21). Multiple branch acquisition lines (23) are integrated at the end of the main line (22), and electrode plates (24) are installed at the end of the branch acquisition lines (23).
3. The multi-parameter monitoring and early warning device for stroke emergency care according to claim 2, characterized in that, The bottom of the wireless module (4) is provided with a composite slot (42) adapted to the composite plug (21) and a charging interface (43) adapted to the charging dock (35). The wireless module (4) is provided with a signal processing circuit and a wireless signal transceiver.
4. The multi-parameter monitoring and early warning device for stroke emergency care according to claim 2, characterized in that, The side of the multi-functional monitor (1) is provided with a direct connection socket (12) adapted to the composite plug (21), and the outer wall of the direct connection socket (12) is provided with a protective cover (13). The back of the multi-functional monitor (1) is provided with a storage slot (14), and a multi-functional support part (15) is provided in the storage slot (14).
5. A multi-parameter monitoring and early warning device for stroke emergency care according to claim 4, characterized in that, The outer wall of the extended battery box (3) is provided with an assembly station (38) for assembling the multi-functional monitor (1). The multi-functional monitor (1) is provided with a locking component for fixing to the assembly station (38). The back of the multi-functional monitor (1) is provided with a power supply interface. The assembly station (38) is fixedly provided with a power supply plug adapted to the power supply interface. The side of the extended battery box (3) is provided with a charging port (37).
6. The multi-parameter monitoring and early warning device for stroke emergency care according to claim 5, characterized in that, The locking component includes a locking strip (19) integrally formed on the bottom of the multi-functional monitor (1). The inner bottom of the assembly station (38) is provided with a slot (310) adapted to the locking strip (19). A movable locking block (18) is installed on the top of the multi-functional monitor (1). A fixing groove adapted to the movable locking block (18) is provided on the inner top of the assembly station (38). A pressure block (39) is movably arranged in the fixing groove. A locking spring (182) is provided at the bottom of the movable locking block (18).
7. A multi-parameter monitoring and early warning device for stroke emergency care according to claim 4, characterized in that, The outer wall of the storage slot (14) is provided with multiple positioning grooves (17), and the outer surface of the multi-functional support part (15) is slidably provided with a positioning block (16). The positioning block (16) is movably engaged in the positioning groove (17) so that the multi-functional support part (15) and the multi-functional monitor (1) are at a preset angle.
8. A multi-parameter monitoring and early warning device for stroke emergency care according to claim 7, characterized in that, The positioning groove (17) includes; A hanging positioning groove (171) is provided at the top of the storage groove (14) for the multifunctional support part (15) to be used for hanging positioning when facing upwards; A storage positioning groove (173) is provided at the bottom of the storage slot (14) to keep the multifunctional support (15) contained within the storage slot (14); A support positioning groove (172) is provided in the middle of the storage groove (14). The support positioning groove (172) extends outward at an angle so that the multifunctional support part (15) can be installed inside the support positioning groove (172) by the positioning block (16) to provide tilt support for the multifunctional monitor (1).
9. A multi-parameter monitoring and early warning device for stroke emergency care according to claim 1, characterized in that, The outer wall of the storage chamber (33) is rotatably provided with a cover plate (34), and the top of the cover plate (34) is rotatably provided with a locking member (36). The inner end of the locking member (36) is rotated and snapped into the inner top of the storage chamber (33) so that the cover plate (34) covers the opening of the storage chamber (33).
10. A multi-parameter monitoring and early warning device for stroke emergency care according to claim 1, characterized in that, The top of the extended battery box (3) is rotatably provided with a handle (32).