Portable multifunctional general life support equipment

The portable multifunctional universal life support device, which integrates mechanical ventilation, fluid infusion, vital signs monitoring and ultrasound diagnosis functions, solves the problems of large size and single function of the equipment, realizes the simultaneous use of multiple functions and improves the efficiency of first aid.

CN223380921UActive Publication Date: 2025-09-26BEIJING AEONMED
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Patent Information

Application Number
CN202421330649.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-12
Publication Date
2025-09-26
Estimated Expiration
2034-06-12

AI Technical Summary

Technical Problem

Existing ventilators, vital signs monitoring and fluid infusion equipment are large in size, have single functions, and are inconvenient to carry, making them inconvenient to use in outdoor emergency locations. In addition, the operation of multiple devices is cumbersome, delaying treatment time.

Method used

A portable multifunctional universal life support device is designed, which integrates mechanical ventilation, fluid infusion, vital signs monitoring and ultrasound diagnosis functions. It adopts a modular design, including a mechanical ventilation module, a display module, a fluid infusion module, a vital signs monitoring module, an ultrasound module and a power supply module, and supports the simultaneous use of multiple functions.

Benefits of technology

It has achieved the simultaneous use of multiple functions through one device in the emergency room, shortened the doctor's treatment and judgment time, improved the doctor's time utilization rate, and gained more rescue time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of medical instruments, in particular to portable multifunctional general life support equipment. The device comprises a mechanical ventilation module, a display screen module, a liquid infusion module, a vital sign monitoring module, an ultrasonic module and a power supply module. The display screen module is connected with the mechanical ventilation module, the liquid infusion module, the vital sign monitoring module, the ultrasonic module and the power supply module and used for displaying parameters of all the modules. The power supply module is connected with the mechanical ventilation module, the liquid infusion module, the vital sign monitoring module and the ultrasonic module; the equipment is further provided with a liquid conveying assembly. A liquid infusion function, a vital sign monitoring function, an ultrasonic diagnosis function and a mechanical ventilation function are integrated on one device, and multiple functions can be used at the same time through one device even in a first-aid place.
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Description

Technical Field

[0001] The utility model relates to the technical field of medical equipment, in particular to a portable multifunctional universal life support device. Background Art

[0002] In clinical medicine, there are many types of ventilators, vital signs monitors, fluid infusion equipment, and ultrasound diagnostic equipment. These devices are large, difficult to carry, and have limited functionality. Most of these devices are used in hospital wards and operating rooms. For outdoor emergency situations, existing ventilators and other equipment are difficult to use and carry, leading to delays in treatment due to incomplete equipment. These devices cannot meet patients' needs. In different transport locations, such as some ambulances, multiple devices are placed to enable multiple functions simultaneously. However, this leads to high costs and reduced space utilization. Activating these devices for patient use is cumbersome and time-consuming, wasting patients' time.

[0003] Therefore, there is an urgent need for a portable multifunctional universal life support device that integrates multiple functions. Utility Model Content

[0004] The purpose of the present invention is to overcome the defects of the prior art. The present invention integrates the functions of liquid infusion, vital signs monitoring, ultrasound diagnosis and mechanical ventilation into one device. Even in emergency situations, multiple functions can be used simultaneously through one device.

[0005] The utility model provides a portable multifunctional universal life support device, which includes a mechanical ventilation module, a display screen module, a liquid infusion module, a vital signs monitoring module, an ultrasound module and a power supply module;

[0006] The display screen module is respectively connected to the mechanical ventilation module, the liquid infusion module, the vital signs monitoring module, the ultrasound module and the power supply module to display the parameters of each module;

[0007] The power supply module is connected to the mechanical ventilation module, the liquid infusion module, the vital signs monitoring module and the ultrasound module;

[0008] The device is also provided with an infusion component.

[0009] Preferably, the mechanical ventilation module includes an air intake module and an oxygen intake module;

[0010] The air intake module is arranged on the rear shell assembly, and the rear shell assembly is also provided with an air intake port 2b, which is connected to the filter cotton inside the device;

[0011] The oxygen intake module 4a is provided on the right component, and the right component is also provided with a fan air inlet 4b, a network port 4c, a USB port 4k, a VGA port 41 and an oxygen sensor port 4m.

[0012] Preferably, the display screen module is arranged on the front shell assembly, and the front shell assembly is also provided with an alarm light 1a, a knob 1c, a power button 1d and a battery indicator light 1e.

[0013] Preferably, the liquid infusion module 3a is provided on the left component, and the liquid infusion module 3a is provided with an alarm module for controlling the infusion volume and infusion speed by adjusting the preset volume and speed on the display screen module;

[0014] The left side component is also provided with a battery compartment component 3b, a speaker sound outlet 3c, a power adapter interface 3d and a heating device interface 3e.

[0015] Preferably, the battery compartment assembly 3b includes multiple adjacent battery compartment bodies and a battery compartment cover covering the openings of the battery compartment bodies, wherein the battery compartment bodies are used to place batteries, and multiple batteries are installed on the same side. A movable limiting baffle is set between the openings of adjacent battery compartment bodies to prevent two batteries from being taken out at the same time.

[0016] Preferably, the vital signs monitoring module is arranged on the right component, and the vital signs monitoring module is composed of an invasive blood pressure interface 4d, an electrocardiogram interface 4e, a body temperature interface 4f, a carbon dioxide interface 4h, a blood oxygen interface 4i and a non-invasive blood pressure 4j.

[0017] Preferably, the ultrasound module in the device is used in conjunction with an ultrasound probe using a USB interface to display the image through a display screen module.

[0018] Preferably, the power supply module includes battery power supply and power adapter power supply, and the two can be switched freely.

[0019] Preferably, the infusion component is an infusion pole fixing frame 5a, which is arranged on the upper shell component, and the upper shell component also includes a retractable handle 5b.

[0020] Preferably, two fixing cavities 6a are further included and are arranged on the bottom shell assembly.

[0021] Compared with the prior art, the advantages of this utility model are:

[0022] This portable multifunctional universal life support device integrates multiple functions in one, which solves the problem of doctors wasting time due to switching between multiple devices. It greatly shortens the time for doctors to judge the treatment of patients, buys more rescue time for patients, and improves the time utilization rate of doctors. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 This is a schematic diagram of the front shell assembly of the utility model;

[0024] Figure 2 This is a schematic diagram of the rear housing assembly of the present utility model;

[0025] Figure 3 This is a schematic diagram of the left side components of the utility model;

[0026] Figure 4 This is a schematic diagram of the right side components of the utility model;

[0027] Figure 5 This is a schematic diagram of the upper shell assembly of the utility model;

[0028] Figure 6 This is a schematic diagram of the bottom shell assembly of the utility model;

[0029] Figure 7 This is a schematic diagram of the overall equipment of the utility model;

[0030] Reference numerals:

[0031] 1a-Alarm light, 1b-Display module, 1c-Knob, 1d-Power button, 1e-Battery indicator, 1f-Power indicator, 2a-Screw hole plug, 2b-Air inlet, 3a-Liquid infusion module, 3b-Battery compartment assembly, 3c-Speaker outlet, 3d-Power adapter jack, 3e-Heating jack, 4a-Oxygen inlet module, 4b-Fan inlet, 4c-Network port, 4d-Invasive blood pressure (IBP) port, 4e-ECG port, 4f-Temperature port, 4h-CO2 port, 4i-SpO2 port, 4j-Non-Invasive blood pressure port, 4k-USB port, 4l-VGA port, 4m-Oxygen sensor port, 5a-Infusion bag hanger, 5b-Retractable handle, 6a-Fixed cavity. DETAILED DESCRIPTION

[0032] The technical solution of the present utility model is described in detail below with reference to the embodiments and drawings.

[0033] This utility model provides a portable, multifunctional, universal life support device that integrates mechanical ventilation, vital signs monitoring, fluid infusion, and ultrasonic diagnostic functions. The device comprises a mechanical ventilation module, a display module, a fluid infusion module, a vital signs monitoring module, an ultrasonic module, and a power supply module. Structurally, the device consists of six parts: a front housing assembly, a rear housing assembly, a left assembly, a right assembly, an upper housing assembly, and a bottom housing assembly, with each function distributed across the components.

[0034] like Figure 1As shown, the front housing assembly is equipped with an alarm light 1a. Alarm light 1a is made of translucent material and uses different colors to indicate different alarm levels. This makes the alarm not only audible but also visible, allowing for quick identification of the alarm device in noisy environments. The display module 1b displays the parameters of each functional module on the display, which can be adjusted by touch. The front housing assembly is equipped with a knob 1c. In addition to on-screen operation, knob 1c can also be used to adjust parameters, preventing touchscreen malfunction in harsh environments. The power button 1d controls the device on and off. The battery indicator 1e indicates battery status. There can be multiple battery indicators 1e. The power indicator 1f indicates power usage. Displaying the parameters of each functional module on the display and adjusting the functional parameters by touch is a conventional adjustment method in the art and does not involve method improvements.

[0035] like Figure 2 As shown, the rear housing assembly mainly consists of the air inlet 2b, the device nameplate, etc. The air inlet is connected to the filter cotton inside the device. Air enters from the air inlet, is filtered by the filter cotton inside the device, and is mixed with oxygen in a certain proportion before being provided to the patient to achieve the purpose of ventilation.

[0036] like Figure 3 As shown, the left-side components consist of a liquid infusion module 3a, a battery compartment assembly 3b, a speaker outlet 3c, a power adapter interface 3d, and a heating device interface 3e. The liquid infusion module 3a is equipped with an alarm function, and the infusion volume and speed can be controlled by adjusting the preset amount and speed through the display module 1b. The liquid infusion module 3a is connected to the device's internal power management system, which is a power board that powers each module. This power management system provides power to the liquid infusion module 3a and feeds data back to the display module 1b. Feeding data back to the display module 1b is a conventional display method in the art and does not involve any improvement. The battery compartment assembly 3b includes two adjacent battery compartment bodies and a battery compartment cover covering the opening of the battery compartment body, wherein the battery compartment body has two removable batteries built in and is provided with a device to prevent the two batteries from being removed at the same time. The two batteries in the battery compartment body are installed on the same side, and a movable limit baffle is provided between the openings of the adjacent battery compartment bodies. By pushing the limit baffle to one side, one of the batteries can be taken out, and by pushing it to the other side, the other battery can be taken out. Because the limit baffle is in the middle, they cannot be taken out at the same time, which is convenient for operation. The battery power usage is visualized through the display module 1b. The heating device interface 3e is used in conjunction with the corresponding heating accessory. The heating accessory can be a heating strip. The heating strip can be wrapped around the infusion tube to achieve the purpose of heating the infusion liquid, ensuring smooth infusion of the patient and improving the patient's comfort. The liquid infusion module 901A can control the infusion volume and infusion speed by adjusting the display module. This is a conventional adjustment method in this field and does not involve improvement of the method.

[0037] like Figure 4 As shown, the right side components are composed of an oxygen intake module 4a, a fan air inlet 4b, a network port 4c, an invasive blood pressure IBP (4d), an electrocardiogram interface 4e, a body temperature interface 4f, a carbon dioxide interface 4h, a blood oxygen interface 4i, a non-invasive blood pressure (NIBP) 4j, a USB interface 4k, a VGA interface 4l, and an oxygen sensor port 4m. The oxygen intake module 4a and the proportional valve inside the device jointly control the ratio of oxygen and air, and the final oxygen concentration is displayed on the screen through the display module 1b to achieve visualization. Controlling the ratio of oxygen and air is a conventional method in this field and does not involve improvements to the method. The fan air inlet 4b adopts the form of a shutter to achieve the purpose of rain protection. The USB interface 4k consists of two parallel components, which can be used and exchanged with external data at the same time. Data exchange is a conventional adjustment method in this field and does not involve improvements to the method. The vital signs monitoring module consists of two invasive blood pressure (IBP) ports 4d, two temperature ports 4f (enabling simultaneous monitoring of temperature parameters at different locations for greater accuracy), an invasive blood pressure (IBP) port 4d, an electrocardiogram (ECG) port 4e, a temperature port 4f, a carbon dioxide (CO2) port 4h, a blood oxygen (SPO) port 4i, and a non-invasive blood pressure (NIBP) port 4j. The device includes two IBP ports 4d, two temperature ports 4f (enabling simultaneous monitoring of temperature parameters at different locations for greater accuracy), and one port for each of the other ports. These ports connect to the power cables of the corresponding accessories to monitor the corresponding data, which is visualized on the display module 1b. The vital signs monitoring function is achieved by connecting the accessories to the monitoring module within the device.

[0038] like Figure 5 As shown, the upper housing assembly primarily consists of a retractable handle 5b and an infusion pole holder 5a. The retractable handle 5b is secured to the upper housing of the device with screws, making it easy to carry and simultaneously switching the suspension mode from vertical to horizontal. The infusion pole holder 5a is mounted on the top of the device and can rotate relative to the device to suspend the infusion bag.

[0039] like Figure 6 As shown, the bottom shell assembly has two fixing cavities 6a, which can be used in conjunction with other devices to be fixed on a stretcher to provide life support for the patient during transportation.

[0040] The device's power supply module includes built-in battery power supply and power adapter power supply, and the two can be switched freely. When the adapter is connected to the grid power interface, the internal battery power supply is not applicable. Unplug the power adapter and the battery starts to supply power. There are two removable batteries inside the device, which provide short-term use of the device in an emergency when environmental conditions do not permit.

[0041] Each major edge of the device is covered with TPU rubber to prevent the device from being unable to function normally due to falling or impact.

[0042] Ultrasound module: The device is used in conjunction with an ultrasound probe using a USB interface to display images on the display module 1b, realizing the function of ultrasound diagnosis. Displaying images on the display module 1b is a conventional adjustment method in the field and does not involve any improvement of the method.

[0043] In terms of dust and water resistance: there are soft rubber sealing covers at the interfaces; the screw holes are sealed with screw plugs made of silicone, which are dust and water proof and beautiful.

[0044] Any content not described in detail in the present invention may adopt conventional technical knowledge in this field and does not involve improvement of the method.

[0045] Finally, it should be noted that the above embodiments are intended only to illustrate the technical solutions of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the embodiments, those skilled in the art will understand that modifications or equivalent substitutions to the technical solutions of the present invention do not depart from the spirit and scope of the present invention and are intended to be encompassed by the claims of the present invention.

Claims

1. A portable multifunctional universal life support device, characterized in that: The device includes a mechanical ventilation module, a display screen module, a liquid infusion module, a vital signs monitoring module, an ultrasound module and a power supply module; The display screen module is respectively connected to the mechanical ventilation module, the liquid infusion module, the vital signs monitoring module, the ultrasound module and the power supply module to display the parameters of each module; The power supply module is connected to the mechanical ventilation module, the liquid infusion module, the vital signs monitoring module and the ultrasound module; The device is also provided with an infusion component; The liquid infusion module (3a) is arranged on the left component; the left component is also provided with a battery compartment component (3b); The battery compartment assembly (3b) comprises two adjacent battery compartment bodies and a battery compartment cover covering the openings of the battery compartment bodies, wherein the battery compartment bodies have two removable batteries built in, the two batteries in the battery compartment bodies are installed on the same side, and a movable limiting baffle is provided between the openings of the adjacent battery compartment bodies; by pushing the limiting baffle to one side, one of the batteries can be taken out, and by pushing it to the other side, the other battery can be taken out.

2. The portable multifunctional universal life support device according to claim 1, characterized in that: The mechanical ventilation module includes an air intake module and an oxygen intake module; The air intake module is arranged on the rear shell component, and the rear shell component is also provided with an air intake port (2b), and the air intake port is connected to the filter cotton inside the device; The oxygen intake module (4a) is arranged on the right side component, and the right side component is also provided with a fan air inlet (4b), a network port interface (4c), a USB interface (4k), a VGA interface (41) and an oxygen sensor port (4m).

3. The portable multifunctional universal life support device according to claim 1, characterized in that: The display screen module is arranged on the front shell component, and the front shell component is also provided with an alarm light (1a), a knob (1c), a power button (1d) and a battery indicator light (1e).

4. The portable multifunctional universal life support device according to claim 1, characterized in that: The liquid infusion module (3a) is provided with an alarm module for controlling the infusion volume and infusion speed by adjusting the preset volume and speed on the display screen module; The left side component is also provided with a speaker sound outlet (3c), a power adapter interface (3d) and a heating device interface (3e).

5. The portable multifunctional universal life support device according to claim 1, characterized in that: The vital signs monitoring module is arranged on the right component, and is composed of an invasive blood pressure interface (4d), an electrocardiogram interface (4e), a body temperature interface (4f), a carbon dioxide interface (4h), a blood oxygen interface (4i), and a non-invasive blood pressure (4j).

6. The portable multifunctional universal life support device according to claim 1, characterized in that: The ultrasound module in the device is used in conjunction with an ultrasound probe using a USB interface to display images through the display module.

7. The portable multifunctional universal life support device according to claim 1, characterized in that: The power supply module includes battery power supply and power supply from a power adapter, and the two can be switched freely.

8. The portable multifunctional universal life support device according to claim 1, characterized in that: The infusion component is an infusion pole fixing frame (5a), which is arranged on the upper shell component. The upper shell component also includes a telescopic handle (5b).

9. The portable multifunctional universal life support device according to claim 1, characterized in that: It also includes two fixing cavities (6a) arranged on the bottom shell assembly.