Improved structure of critical disease transfer emergency equipment

By introducing a support column fixing device and a built-in oxygen supply device into the critical care transport and emergency equipment, the problems of equipment falling and safety hazards have been solved, the equipment has achieved stable connection and reasonable layout, and the convenience and safety of operation have been improved.

CN223914205UActive Publication Date: 2026-02-17HUNAN TAIYANGLONG MEDICAL TECH
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Patent Information

Application Number
CN202423073441.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2026-02-17
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

In existing critical care transport and emergency equipment, medical devices lack fixed connections, posing a risk of falling; exposed oxygen supply devices pose a safety hazard; and the equipment layout is unreasonable, affecting operational safety and convenience.

Method used

An improved structure with a support column was designed. The medical equipment is connected to the support column through a fixing device. The oxygen supply device is built into the equipment cabinet. The power and low voltage sockets are set separately. The equipment and the transfer bed are connected by a lifting component, which realizes the fixation, adjustment and safety improvement of the equipment.

Benefits of technology

It eliminates the risk of equipment falling, improves operational safety and convenience, and its reasonable layout meets the operational needs of medical staff, thus enhancing the overall safety and stability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an improved structure of critical disease transfer first-aid equipment. The device is characterized by comprising a main machine body, an equipment cabinet and a movable chassis, the equipment cabinet is connected with the main machine body and the movable chassis, the main machine body is provided with at least one bearing column, medical equipment is connected with the bearing column through a fixing device, and the main machine body is provided with a medical gas terminal, a strong and weak current socket and a storage part; a UPS power supply device and a negative pressure device are arranged in the movable chassis, the equipment cabinet is provided with a connecting part II, and the connecting part II is connected and fixed through lifting of the transfer bed and a connecting part I arranged at the end of the connecting part II, so that the whole transfer first-aid equipment is lifted and transferred along with the transfer bed. The utility model has the advantages that the assembly layout of the medical equipment and the first-aid equipment is more reasonable, the operation of medical personnel is facilitated, the use safety is improved, and the like.
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Description

Technical Field

[0001] This utility model relates to an improved structure of a critical care transport and emergency medical device, which belongs to the field of medical transport equipment. Background Technology

[0002] To address various issues encountered during the transport of critically ill patients using standard medical life support equipment such as electrocardiogram monitors, ventilators, oxygen supply systems, suction devices, drug infusion systems, defibrillators, and cardiopulmonary resuscitation devices, patent number 202323353157.6 describes a mobile critical care transport and emergency equipment platform. This platform allows the aforementioned life support equipment to be installed, placed, and stored in a single unit, forming a critical care transport and emergency equipment that can be used in combination with a transport bed or independently during critical care transport. While this solves the problem of integrating standard medical life support equipment for bedside transport, certain shortcomings remain. For example, medical equipment such as electrocardiogram monitors, ventilators, and defibrillators are placed on the platform without being connected or secured, posing a risk of falling during use. Furthermore, the exposed oxygen supply device presents safety hazards. Therefore, further improvements and innovations are needed. Utility Model Content

[0003] To address the aforementioned technical problems, this utility model provides an improved structure for a critical care transport and emergency medical device. It features a support column that is fixed and allows for adjustment of the medical equipment's orientation, and an equipment cabinet that can house an oxygen supply device. The assembly layout of the medical equipment and the emergency transport and emergency medical device is more rational, facilitating operation by medical personnel and improving safety during use.

[0004] The objective of this utility model can be achieved through the following technical solutions:

[0005] An improved structure for a critical care transport and emergency medical device is characterized by comprising a main body, an equipment cabinet, and a mobile chassis. The equipment cabinet is connected to both the main body and the mobile chassis. The main body has at least one support column, and the medical device is connected to the support column via a fixing device. The main body is equipped with a medical gas terminal, power and low voltage sockets, and a storage compartment. The equipment cabinet has a built-in oxygen supply device, and the mobile chassis has a built-in UPS power supply device and a negative pressure device. The equipment cabinet has a connecting part II, which is connected and fixed via the lifting and lowering of the transport bed and a connecting part I at its end, allowing the entire transport and emergency medical device to be lifted and moved along with the transport bed.

[0006] In this technical solution, the main body includes a box area and a platform area. The support column is installed in the platform area. The medical gas terminal and the strong and weak current sockets are respectively installed in the box area. The storage part is a storage box and / or a storage drawer constructed in the box area. The storage part is provided with a cable slot.

[0007] In this technical solution, the strong and weak current sockets are constructed separately in the main body through strong and weak current boxes.

[0008] In this technical solution, the main body also includes a liquid medicine pump frame assembly, an oxygen pressure and flow monitoring device, and a power monitoring device. The liquid medicine pump frame assembly is installed on the main body or a support column, and the oxygen pressure and flow monitoring device and the power monitoring device are installed on the main body.

[0009] In this technical solution, the liquid pump frame assembly is movably connected to the main body or the support column via a pump frame rotating arm.

[0010] In this technical solution, the fixing device is arranged to rotate and / or translate along the axial direction of the bearing column, and the fixing device includes any one or more of the following structures: fixing base, fixing swing arm, and fixing hanging rod.

[0011] In this technical solution, the oxygen supply device is constructed of an oxygen cylinder, and the equipment cabinet is equipped with a cabinet door.

[0012] In this technical solution, the medical equipment includes a ventilator, an electrocardiogram monitor, a defibrillator, an infusion pump, a respiratory monitoring integrated machine, and a defibrillation monitoring integrated machine.

[0013] In this technical solution, at least one of the connecting parts I is installed at the tail end of the transfer bed via a connecting support, and at least one of the connecting parts II is installed in the equipment cabinet corresponding to the connecting part I.

[0014] In this technical solution, the connecting part II is provided with a hole / groove with a corresponding configuration to the connecting part I, so that the connecting part I can be inserted into the hole / groove of the connecting part II and connected thereto.

[0015] In this technical solution, the connecting part I is provided with a hole / groove with a corresponding configuration to the connecting part II, so that the connecting part II can be inserted into the hole / groove of the connecting part I and connected thereto.

[0016] This utility model is an improvement on the existing technology, and its advantages and beneficial effects are as follows:

[0017] 1. Because the medical equipment is fixed to the support column by the fixing device, the risk of falling when the medical equipment is assembled with the transport and emergency equipment is eliminated. The support column is set in the platform area of ​​the main body, and the medical equipment is set above the platform area at the end of the main body. The assembly layout of the medical equipment is more reasonable and meets the needs of medical staff for operation and use.

[0018] 2. The fixing device on the support column can rotate or translate along its axis, so that the medical equipment connected to the fixing device can adjust its display and operation orientation to facilitate medical staff to observe and operate it from different positions.

[0019] 3. The main body and the mobile chassis are connected by an equipment cabinet. The oxygen supply device is built into the equipment cabinet, which improves the protection performance of the oxygen supply device and the corresponding pipelines and valves, and makes it easier to lay and install gas pipelines and power lines that connect to the corresponding medical gas terminals and power sockets from the mobile chassis and the oxygen supply device into the main body.

[0020] 4. Strong and weak current sockets are separated from the main unit by strong and weak current boxes, which keeps electrical wiring separate from the main unit, avoids electrical explosion accidents, and improves the overall safety of the equipment.

[0021] 5. The transport emergency equipment is connected and disconnected from the transport bed through the lifting mechanism. The connection and disconnection are convenient and quick. When connected to the transport bed and transported together, the entire transport emergency equipment is off the ground, which effectively reduces the problem of excessive vibration caused by too many wheels when the two are connected and used, improves the passability, enhances the patient's comfort, and is compatible with various transport beds and transport emergency equipment. Attached Figure Description

[0022] Figure 1 This is the front view of the structure of the first embodiment of this utility model.

[0023] Figure 2 yes Figure 1 Schematic diagram of the structure in direction A.

[0024] Figure 3 yes Figure 1 Schematic diagram of the B-direction structure.

[0025] Figure 4 yes Figure 1 Schematic diagram of the C-axis structure.

[0026] Figure 5 This utility model is a diagram showing the usage status of medical equipment.

[0027] Figure 6 yes Figure 5 Schematic diagram of the D-direction structure.

[0028] Figure 7 This is a schematic diagram of the utility model in the state of being separated from the transfer bed.

[0029] Figure 8 This is a schematic diagram of the connection between this utility model and the transfer bed.

[0030] Figure 9 This is the second embodiment of the present invention and includes a diagram showing the usage status of the medical device.

[0031] Figure 10 This is a second embodiment of the present invention and another usage state diagram of the medical device.

[0032] Figure 11This is a schematic diagram of the structure of the third embodiment of this utility model.

[0033] Figure 12 This is a schematic diagram of the structure of the fourth embodiment of this utility model.

[0034] Figure 13 yes Figure 12 Schematic diagram of the E-direction structure.

[0035] Figure 14 This is a diagram showing the usage status of the medical device according to the fourth embodiment of this utility model.

[0036] Attached Figure Labels: 1-Main Unit, 2-Storage Box, 3-Storage Drawer, 4-Equipment Cabinet, 5-Connecting Part II, 6-Mobile Chassis, 7-UPS Power Supply, 8-Negative Pressure Device, 9-Gas Tank, 10-Push-Pull Handrail, 11-Drug Pump Rack Assembly, 12-Pump Rack Rotary Arm, 13-Fixed Base, 14-Medical Gas Terminal, 15-Bearing Column, 16-Fixed Rotary Arm, 17-Oxygen Pressure and Flow Monitoring Device, 18-Power Monitoring Device, 19-Power and Low Voltage Electrical Box, 20-Power and Low Voltage Electrical Socket, 21-Cable Tray, 22-Oxygen Cylinder, 23-Cabinet Door, 24-Defibrillator, 25-ECG Monitor, 26-Infusion Pump, 27-Ventilator, 28-Transfer Bed, 29-Connecting Support, 30-Connecting Part I, 31-Defibrillator and Monitor Integrated Unit, 32-Respiratory Monitor Integrated Unit, 33-Fixed Hanging Rod. Detailed Implementation

[0037] The utility model will now be described in detail with reference to the accompanying drawings and specific embodiments:

[0038] Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11 , Figure 12 , Figure 13 , Figure 14An embodiment of this utility model is shown. Its components include: a main body 1, a storage box 2, a storage drawer 3, an equipment cabinet 4, a connecting part II 5, a mobile chassis 6, a UPS power supply 7, a negative pressure device 8, a gas storage tank 9, a push-pull armrest 10, a medicine pump rack assembly 11, a pump rack rotating arm 12, a fixed base 13, a medical gas terminal 14, a support column 15, a fixed rotating arm 16, an oxygen pressure and flow monitoring device 17, a power monitoring device 18, a power and low voltage electrical box 19, a power and low voltage electrical socket 20, a cable tray 21, an oxygen cylinder 22, a cabinet door 23, a defibrillator 24, an electrocardiogram monitor 25, an infusion pump 26, a ventilator 27, a transport bed 28, a connecting support 29, a connecting part I 30, a defibrillator-monitor integrated machine 31, a respiratory monitor-monitor integrated machine 32, a fixed hanging rod 33, and connecting components and fasteners.

[0039] The structural features of the specific embodiment are as follows:

[0040] An improved structure of a critical care transport and emergency medical device is characterized by comprising a main body 1, an equipment cabinet 4, and a mobile chassis 6. The equipment cabinet 4 is connected to the main body 1 and the mobile chassis 6. The main body 1 is provided with at least one support column 15. The medical device is connected to the support column 15 through a fixing device. The main body 1 is provided with a medical gas terminal 14, a power socket 20, and a storage section. The equipment cabinet 4 has a built-in oxygen supply device. The mobile chassis 6 has a built-in UPS power supply device 7 and a negative pressure device 8. The equipment cabinet 4 has a connecting part II 5. The connecting part II 5 is connected and fixed through the lifting and lowering of the transport bed 28 and the connecting part I 30 at its end, so that the entire transport and emergency medical device can be lifted and transported with the transport bed 28.

[0041] In this embodiment of the utility model, the main body 1 is provided with a box area and a platform area extending from one end of the box area. The medical gas terminal 14, the strong and weak current sockets 20, and the storage part are respectively provided in the box area. The storage part can store medical equipment and its accessories and medical supplies, such as the breathing mask, breathing tube, and connecting cable of the ventilator 27, the lead cable and electrode pads of the electrocardiogram monitor 25 and the defibrillator 24, the cardiopulmonary resuscitation device, etc. The storage part can adopt the structure of storage box 2 or storage drawer 3, or both storage box 2 and storage drawer 3 can be set in the box area of ​​the main body 1. The storage space for different medical equipment and its accessories and medical supplies can be divided according to the number of storage boxes 2 and storage drawers 3.

[0042] In an embodiment of this utility model, the storage part is provided with a cable slot 21, which allows the inner cavity of the storage part to communicate with the outside. This allows the lead cable of the medical device to be stored in the storage chamber through the cable slot 21 without disassembly. In this way, not only is the lead cable stored, but the lead cable can also maintain a normal connection with the medical device. When needed, it can be directly taken out from the storage chamber for connection and use, providing medical staff with a more convenient operating method and saving precious time in treating critically ill patients.

[0043] In the embodiments of this utility model, the support column 15 adopts an upright rod-shaped structure and is installed on the platform area of ​​the main body 1, and maintains a certain distance from the storage part, medical gas terminal 14, and strong and weak current socket 20, so as to meet the space requirements of the medical equipment connected to the support column 15. The medical equipment is installed in the vertical longitudinal space of the support column 15, which is more in line with the operation and use needs of medical staff.

[0044] In embodiments of this utility model, depending on the usage requirements, two or more support columns 15 may be constructed and installed on the platform area of ​​the main body 1, so that different medical devices are respectively connected to each support column 15 through fixing devices.

[0045] In the embodiments of this utility model, the fixing device can be rotatably arranged along the axial direction of the bearing column 15, or it can be translated along the axial direction of the bearing column 15, or it can be both rotatably and translated along the axial direction of the bearing column 15. The fixing device is fixedly connected to the medical device, and the medical device can rotate and / or translate on the bearing column 15 through the fixing device, thereby adjusting the display and operation orientation of the medical device on the bearing column 15. Medical staff can make adjustments from different positions for observation and operation.

[0046] In embodiments of this utility model, the fixing device can be constructed as a fixing base 13. In order to expand the adjustable range of the medical device, the fixing base can also be constructed as a fixing arm 16. In this way, while the fixing arm 16 rotates around the central axis of the bearing column 15, the medical device connected to its other end has a larger range of adjustment space. The fixing device can also be constructed as a fixing rod 33. In this way, it is only necessary to install a hook on the medical device to fix it to the fixing rod 33. This structure makes it easier to install or remove the medical device.

[0047] In embodiments of this utility model, one or more of the above-mentioned fixing device structures can be constructed on the bearing column 15 to meet the installation and disassembly requirements of different medical devices.

[0048] In an embodiment of this utility model, the strong and weak current sockets 20 can be separated from the main body 1 by the strong and weak current box 19, so that the power lines and airflow pipes inside the main body 1 are separated, thereby preventing the explosion accident caused by the power lines and airflow pipes being in the same chamber and improving the overall safety of the equipment.

[0049] In an embodiment of this utility model, the main body 1 may also be provided with a medicine pump rack assembly 11. The medicine pump rack assembly 11 is used to hang infusion bottles / bags and fix the infusion pump 26. The medicine pump rack assembly 11 can be installed on the main body 1 or the support column 15, such as fixedly installed on the main body 1, or installed on the main body 1 through the pump rack rotating arm 12, or installed on the support column 15 through the pump rack rotating arm 12.

[0050] In an embodiment of this utility model, an oxygen pressure and flow monitoring device 17 and a power monitoring device 18 may also be installed on the main body 1. The oxygen pressure and flow monitoring device 17 can monitor the oxygen pressure and flow in real time so as to maintain or replace the oxygen supply device in a timely manner. The power monitoring device 18 can monitor the power of the UPS power supply device 7 in real time so as to store or replace the UPS power supply device 7 in a timely manner.

[0051] In the embodiments of this utility model, the oxygen supply device adopts an oxygen cylinder 22 structure. As a commonly used medical device in hospitals, the oxygen cylinder 22 is easy to move, use, replace and maintain. The cabinet door 23 of the equipment cabinet 4 facilitates the replacement of the oxygen cylinder 22 and the inspection and maintenance of the airflow pipeline, power line and other components.

[0052] In embodiments of this utility model, the medical equipment includes ventilator 27, electrocardiogram monitor 25, defibrillator 24, infusion pump 26, respiratory monitoring integrated machine 32, defibrillator monitoring integrated machine 31, and other treatment and rescue equipment required for the transfer and emergency care of critically ill patients. Depending on the actual application scenario, one or more of the above medical equipment can be selected and assembled on the support column 15 for use.

[0053] In an embodiment of this utility model, one or more connecting parts I 30 are installed at the end of the transfer bed 28, and connecting parts II 5 are installed on the equipment cabinet 4 corresponding to the connecting parts I 30. The increase in the number of connecting parts I 30 and connecting parts II 5 can improve the stability of the transfer emergency equipment when connected to the transfer bed 28.

[0054] In an embodiment of this utility model, the connecting part I30 is connected to the end of the transfer bed 28 via the connecting support 29.

[0055] In an embodiment of this utility model, the connecting part II5 is provided with a hole / groove corresponding to the connecting part I30. By inserting or disengaging the connecting part I30 into or from the hole / groove of the connecting part II5, the transport bed 28 can be connected or separated from the transport emergency equipment.

[0056] In an embodiment of this utility model, the connecting part I 30 may be provided with a hole / groove corresponding to the connecting part II 5. The transfer bed 28 can be connected to or separated from the transfer emergency equipment by inserting or disengaging the connecting part II 5 into or from the hole / groove of the connecting part I 30.

[0057] In an embodiment of this utility model, the end of the transfer bed 28 includes a tail end, a head end, and two side ends. That is, the connecting part I 30 can be provided at one of the tail end, head end, left side end, or right side end, so that the transfer emergency equipment can be connected and combined with one end of the transfer bed 4 provided with the connecting part I 30 and transported with the bed.

[0058] Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 The first embodiment of the present invention is shown. In this embodiment, the main body 1 is connected to the upper end of the equipment cabinet 4, the movable chassis 6 is connected to the lower end of the equipment cabinet 4, and push-pull handles 10 are provided on both sides of the lower end of the main body 1.

[0059] One side of the main body 1 adopts a box structure to form a box area, and the lower front end of the box area extends to form a platform area of ​​the platform structure.

[0060] Three storage boxes 2 are provided on the upper rear side of the main body 1. Each storage box 2 has a door at the top and a cable tray 21 at the door. A storage drawer 3 is provided in the lower part of the box area. The storage drawer 3 can be pulled out and opened from the rear side of the box area.

[0061] The main body 1 has a medical gas terminal 14, an oxygen pressure and flow monitoring device 17, and a power monitoring device 18 on the two sides near the front of the box area. The main body 1 also has a medical gas terminal 14 on the two sides of the front of the box area. The main body 1 has a power and low voltage box 19 in the middle of the front of the box area. Multiple power and low voltage sockets 20 are installed on the upper surface of the power and low voltage box 19. The power and low voltage sockets 20 are placed on the upper surface of the power and low voltage box 19 to facilitate the connection and use of medical equipment.

[0062] A support column 15 is fixedly provided in the middle of the platform area of ​​the main body 1. The support column 15 is provided with two fixed seats 13 and a fixed rotating arm 16 at intervals from bottom to top. The fixed seat 13 has a connection end face for fixed connection with medical equipment. The fixed seat 13 is fixed to the support column 15 by adjusting screws. The fixed seat 13 can be rotated along the axial direction of the support column 15 and moved up and down by adjusting screws to adjust its fixed direction and position on the support column 15. The fixed rotating arm 16 is sleeved and connected to the support column 15. One end of the fixed rotating arm 16 rotates along the axial direction of the support column 15, and the other end of the fixed rotating arm 16 has a connection end face for fixed connection with medical equipment. A drug liquid pump frame assembly 11 is installed on one side of the platform area of ​​the main body 1 through the pump frame rotating arm 12. The drug liquid pump frame assembly 11 can move within a certain range through the pump frame rotating arm 12.

[0063] The rear end face of the equipment cabinet 4 is provided with a cabinet door 23, and a latch for opening and closing the cabinet door is provided on the cabinet door 23. An oxygen supply device with an oxygen cylinder 22 is placed inside the equipment cabinet 4. In order to make the oxygen cylinder 22 more stable in the equipment cabinet 4, grooves with a shape that matches the side and bottom of the oxygen cylinder 22 can be provided on the side wall and bottom of the equipment cabinet 4. Connecting parts II5 are provided on both ends of the equipment cabinet 4.

[0064] The mobile chassis 6 has wheels, and its inner cavity is equipped with a UPS power supply device 7, a negative pressure device 8, and a gas storage tank 9 required for the negative pressure device 8.

[0065] The connection points between the equipment cabinet 4 and the main body 1 and the mobile chassis 6 are respectively provided with through holes / grooves for power lines and airflow ducts to pass through. The power lines of the UPS power supply device 7 of the mobile chassis 6 are connected to the strong and weak current sockets 20 on the strong and weak current box 19 through the inner cavity of the equipment cabinet 4 to the inner cavity of the main body 1. The airflow ducts of the negative pressure device 8 and the oxygen cylinder 22 are respectively connected to the medical gas terminal 14 through the inner cavity of the equipment cabinet 4 to the inner cavity of the main body 1. According to the different airflow ducts connected to the medical gas terminal 14, each medical gas terminal 14 on the main body 1 constitutes an oxygen terminal and a negative pressure terminal respectively.

[0066] Reference Figure 5 , Figure 6 The ventilator 27 is connected to the lower part of the support column 15 via the fixed base 13, the defibrillator 24 is connected to the middle part of the support column 15 via the fixed base 13, the electrocardiogram monitor 25 is connected to the middle part of one side of the support column 15 via the fixed rotating arm 16, and the infusion pump 26 is connected to the rod part of the drug pump frame assembly 11. The above medical equipment can be powered by connecting to the power socket 20.

[0067] Reference Figure 7 , Figure 8 The tail end of the transfer bed 28 is provided with two connecting parts I 30 corresponding to the connecting parts II 5 on both sides of the equipment cabinet 4. The connecting parts I 30 are fixedly connected to the transfer bed 28 through the connecting support 29, and the connecting parts I 30 are located at the end of the connecting support 29 extending out of the transfer bed body, so that the connecting parts I 30 are below the connecting parts II 5 when connected. In this embodiment, the connecting parts I 30 have a columnar structure. The lower end of the connecting parts II 5 is provided with an insertion hole (not shown in the figure) that matches the configuration of the connecting parts I 30. When the transfer bed 28 is raised as a whole, the connecting parts I 30 can be inserted into the connecting parts II 5 from bottom to top until the entire transfer emergency equipment is lifted off the ground, thereby completing the connection between the transfer emergency equipment and the transfer bed 28 and allowing it to be transported with the bed. Conversely, when the transfer bed 28 is lowered as a whole until the transfer emergency equipment is grounded, the connecting parts I 30 are completely disengaged from the connecting parts II 5 from top to bottom.

[0068] Figure 9 , Figure 10 The second embodiment of this utility model is shown. The parts identical to the first embodiment will not be repeated here. The difference lies in that the fixing device on the supporting column 15 consists of two fixing seats 13, as shown below. Figure 9 As shown, the mounting base 13 located at the lower part of the support column 15 is connected to the ventilator 27, and the mounting base 13 located in the middle of the support column 15 is connected to the defibrillator monitoring unit 31. (The last sentence appears to be incomplete and possibly refers to another part of the diagram.) Figure 10As shown, the fixed seat 13 located at the lower part of the support column 15 is connected to the respiratory monitoring integrated machine 32, and the fixed seat 13 located in the middle of the support column 15 is connected to the defibrillator 24. Both the defibrillator monitoring integrated machine 31 and the respiratory monitoring integrated machine 32 have electrocardiogram monitoring and display functions. Therefore, the support column 15 does not need to be connected to the electrocardiogram monitor 25 through a fixing device. This embodiment can meet the needs of different medical devices to be assembled and used together.

[0069] Figure 11 The third embodiment of the present invention is shown. The parts that are the same as those in the first embodiment will not be described again here. The difference is that the liquid pump frame assembly 11 is connected to the support column 15 through the pump frame rotating arm 12. The pump frame rotating arm 12 can rotate along the axial direction of the support column 15, so that the liquid pump frame assembly 11 can move within the range of one side of the support column 15.

[0070] Figure 12 , Figure 13 , Figure 14 The fourth embodiment of this utility model is shown. The parts identical to the first embodiment will not be repeated here. The difference lies in that the fixing devices at the lower and upper parts of the supporting column 15 respectively adopt a fixing base 13 and a fixing rotating arm 16, while the fixing device in the middle of the supporting column 15 adopts a fixing hanging rod 33. The fixing hanging rod 33 has a transverse hanging rod body perpendicular to the supporting column 15. The fixing hanging rod 33 is fixed to the supporting column 15 by an adjusting screw. The fixing hanging rod 33 can be rotated along the axial direction of the supporting column 15 and moved up and down to adjust its fixing direction and position on the supporting column 15. Figure 14 As shown, the defibrillator 24 is hung on the horizontal mounting rod of the fixed hanging rod 33 by a configured hook. The fixed hanging rod 33 is used to facilitate the installation and removal of the medical equipment from the support column 15.

[0071] Finally, it should be noted that although the above embodiments have described the technical solution of this utility model in detail, there are still substitutions, modifications, and equivalent examples falling within the scope of this utility model. Those skilled in the art should understand that there are various other ways to implement the device of this utility model, and this should be understood to include all such substitutions, modifications, and equivalent examples falling within the spirit and scope of this utility model.

Claims

1. In a critical patient transport emergency apparatus, the improvement wherein: The device includes a main body (1), a device cabinet (4) and a mobile chassis (6), the device cabinet is connected with the main body and the mobile chassis respectively, the main body is provided with at least one bearing column (15), medical equipment is connected with the bearing column through a fixing device, the main body is provided with a medical gas terminal (14), a strong and weak electric socket (20) and a storage part respectively, the device cabinet is provided with an oxygen supply device, the mobile chassis is provided with a UPS power supply device (7) and a negative pressure device (8), the device cabinet is provided with a connecting part II (5), the connecting part II is connected and fixed through the lifting of a transfer bed (28) and a connecting part I (30) arranged at the end of the transfer bed, so that the whole emergency transfer device is lifted and transferred with the transfer bed.

2. The improvement of claim 1 wherein: The main body (1) includes a box body area and a platform area, the bearing column (15) is installed on the platform area, the medical gas terminal (14) and the strong and weak electric socket (20) are installed on the box body area respectively, and the storage part is a storage box (2) and / or a storage drawer (3) arranged in the box body area.

3. The improvement of a critical patient transport emergency care device of claim 1 or 2, wherein: The strong and weak electric socket (20) is arranged in the main body (1) in a separated structure through a strong and weak electric box (19).

4. The improvement of an emergency care apparatus for critical patient transport according to claim 1 or 2, wherein: The main body (1) further includes a liquid medicine pump frame assembly (11), an oxygen pressure flow monitoring device (17) and an electric quantity monitoring device (18), the liquid medicine pump frame assembly is installed on the main body or the bearing column (15), and the oxygen pressure flow monitoring device and the electric quantity monitoring device are installed on the main body.

5. The improvement of claim 4 wherein: The liquid medicine pump frame assembly (11) is movably connected with the main body (1) or the bearing column (15) through a pump frame rotary arm (12).

6. The improvement of a critical patient transport first aid apparatus as defined in claim 1 wherein: The fixing device is arranged in an axial rotation and / or translation mode along the bearing column (15), and the fixing device includes any one or more than two of a fixing seat (13), a fixing rotary arm (16) and a fixing hanging rod (33).

7. The improvement of a critical patient transport first aid apparatus as defined in claim 1 wherein: The oxygen supply device is an oxygen cylinder (22), and the device cabinet (4) is provided with a cabinet door (23).

8. The improvement of a critical patient transport emergency care device of claim 1, wherein: The medical equipment includes a breathing machine (27), an electrocardio monitor (25), a defibrillator (24), an infusion pump (26), a breathing monitoring all-in-one machine (32) and a defibrillation monitoring all-in-one machine (31).

9. The improvement of a critical patient transport emergency care device of claim 1 wherein: At least one connecting part I (30) is installed at the tail end of the transfer bed (28) through a connecting support (29), and at least one connecting part II (5) is installed on the device cabinet (4) corresponding to the connecting part I.

10. The improvement in a critical transport emergency care apparatus as defined in claim 9 wherein: The connecting part II (5) is provided with a hole / slot corresponding to the connecting part I (30) in structure, so that the connecting part I is inserted into the hole / slot of the connecting part II and connected with the connecting part II.

11. The improvement of a critical transport first aid apparatus, as recited in claim 9, wherein: The connecting part I (30) is provided with a hole / slot corresponding to the connecting part II (5) in structure, so that the connecting part II is inserted into the hole / slot of the connecting part I and connected with the connecting part I.

Citation Information

Patent Citations

  • Mobile critical disease transfer first-aid equipment platform

    CN221654947U