CN220175404U - Transfer bed - Google Patents

Transfer bed Download PDF

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Publication number
CN220175404U
CN220175404U CN202321513802.3U CN202321513802U CN220175404U CN 220175404 U CN220175404 U CN 220175404U CN 202321513802 U CN202321513802 U CN 202321513802U CN 220175404 U CN220175404 U CN 220175404U
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China
Prior art keywords
interface
sliding
transfer bed
electrocardiograph
monitoring
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Active
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CN202321513802.3U
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Chinese (zh)
Inventor
刘红
徐南
张爱霞
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Shanghai Yangpu Central Hospital
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Shanghai Yangpu Central Hospital
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Priority to CN202321513802.3U priority Critical patent/CN220175404U/en
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Abstract

The utility model discloses a transfer bed, and belongs to the technical field of transfer beds; including fixed connection on transporting the bed body interface frame, be provided with on the interface frame: the electrocardiograph monitoring interface is connected with the electrocardiograph monitor through a first switching wire; the sphygmomanometer interface is connected with the electrocardiograph monitor through a second patch cord; the blood oxygen saturation monitoring interface is connected with the electrocardiograph monitor through a third patch cord; the first switching wire, the second switching wire and the third switching wire are all contained on the interface frame; the connectors of the monitoring lead, the blood pressure cuff and the oximeter can be inserted into the corresponding interfaces, and the connectors of the monitoring lead, the blood pressure cuff and the oximeter can be pulled out of the corresponding interfaces when not in use and stored.

Description

Transfer bed
Technical Field
The utility model relates to a transfer bed, and belongs to the technical field of transfer beds.
Background
The traditional transfer bed is not provided with vital sign monitoring and first-aid equipment, and in order to meet the vital sign monitoring and first-aid requirements, an electrocardiograph monitor is usually arranged on the transfer bed. The connecting lines of the monitoring leads, the blood pressure cuffs and the blood oxygen meters matched with the electrocardiograph monitor are long and are in a tug, and if the monitoring leads, the blood pressure cuffs and the blood oxygen meters are not taken down from the electrocardiograph monitor in a non-use state, the tug is left, and dangers or damage to the instrument can be caused during transportation. If not in use, the device is pulled out in time, and the thin needle on the electrocardiograph monitor interface is easy to deform due to repeated insertion and pulling operations.
In order to solve the technical problems, a transfer bed is designed. The interface frame is provided with an electrocardiograph monitoring interface, a sphygmomanometer interface and an oximetry monitoring interface, when the electrocardiograph monitoring interface is used, the connectors of the monitoring leads, the blood pressure cuffs and the oximetry can be inserted into the corresponding interfaces, and when the electrocardiograph monitoring interface is not used, the connectors of the monitoring leads, the blood pressure cuffs and the oximetry can be pulled out of the corresponding interfaces to be stored. During replacement, only the electrocardiograph monitoring interface, the sphygmomanometer interface, the blood oxygen saturation monitoring interface, the first switching wire, the second switching wire and the third switching wire are required to be replaced, and the replacement cost is low. Through accomodating first patch cord, second patch cord and third patch cord on the interface frame, even use in the transportation, also can not be hooked, avoid the emergence of risk factor, also can not damage the instrument.
Disclosure of Invention
The technical problems to be solved by the utility model are as follows: the technical problem of thin needle deformation on an electrocardiograph monitor interface caused by repeated plugging is solved.
The technical problems to be solved by the utility model are realized by adopting the following technical scheme:
scheme one: the utility model provides a transfer bed, includes transfer bed body and electrocardiograph monitor, still includes the interface frame of fixed connection on transferring the bed body, be provided with on the interface frame:
an electrocardiograph monitoring interface adapted to the connector of the monitoring lead, the electrocardiograph monitoring interface being connected to the electrocardiograph monitor through a first transfer line;
the sphygmomanometer interface is matched with the connector of the pressure sensor of the blood pressure cuff and is connected with the electrocardiograph monitor through a second patch cord;
an oxygen saturation monitoring interface adapted to the connector of the oximeter; the blood oxygen saturation monitoring interface is connected with the electrocardiograph monitor through a third patch cord;
the first switching wire, the second switching wire and the third switching wire are all accommodated on the interface frame.
Scheme II: based on the first scheme, in order to place the required article in first aid, still set up the operation platen.
Preferably, a pair of sliding rails is fixedly connected under the transfer bed body, and first sliding grooves are formed in opposite side surfaces of the pair of sliding rails; the two ends of the first sliding groove extend to the two ends of the sliding rail respectively, and the operating table plate is embedded in the pair of first sliding grooves in a sliding manner.
Preferably, the opposite side surfaces of the sliding rail are provided with second sliding grooves, each second sliding groove comprises an open end and a closed end, the open ends of the second sliding grooves extend to one end of the sliding rail, and the distance between the closed ends of the second sliding grooves and the other end of the sliding rail is 1/2-1/3 of the total length of the sliding rail; the operation table plate is fixedly connected with a sliding block; when the operating platform plate is in sliding fit with the pair of first sliding grooves, the sliding block is in sliding fit with the second sliding groove.
Scheme III: based on scheme one, in order to accomodate and carry first aid article, still set up first aid article storage cabinet, first aid article storage cabinet includes first aid medicine storage drawer, article storage drawer and garbage collection drawer.
Preferably, a clamping groove is formed in the garbage collection drawer, a pressing plate is arranged in the clamping groove in a matched mode, and the pressing plate is clamped inside the clamping groove.
The beneficial effects of the utility model are as follows:
the utility model has the advantages that the electrocardiograph monitoring interface, the sphygmomanometer interface and the blood oxygen saturation monitoring interface are arranged on the interface frame, when the electrocardiograph monitoring interface is used, the connectors of the monitoring leads, the blood pressure cuffs and the blood oxygen monitor can be inserted into the corresponding interfaces, and when the electrocardiograph monitoring interface is not used, the connectors of the monitoring leads, the blood pressure cuffs and the blood oxygen monitor can be pulled out of the corresponding interfaces and stored. During replacement, only the electrocardiograph monitoring interface, the sphygmomanometer interface, the blood oxygen saturation monitoring interface, the first switching wire, the second switching wire and the third switching wire are required to be replaced, and the replacement cost is low. Secondly, through accomodating first patch cord, second patch cord and third patch cord on the interface frame, even use in the transportation process, also can not be hooked, avoid the emergence of risk factor, also can not damage the instrument.
Drawings
FIG. 1 is a schematic view of a first perspective view of the present utility model;
FIG. 2 is a schematic view of a second perspective view of the present utility model;
FIG. 3 is a schematic view of the mounting structure of the parts of the transfer bed body, the interface frame, the monitoring leads, the blood pressure cuff, the oximeter, etc.;
FIG. 4 is a schematic diagram of connection structures of components such as an electrocardiograph monitor, an interface frame, a first patch cord, a second patch cord, a third patch cord, a buckle, and the like;
FIG. 5 is a schematic view of a slide rail structure;
FIG. 6 is a schematic view of the connection structure of the operating platen and the slider;
FIG. 7 is a schematic view of the connection of the slide rails to the operating platen without withdrawal of the operating platen;
FIG. 8 is a schematic view of the connection structure of the slide rail and the operating platen when the operating platen is fully withdrawn;
FIG. 9 is a schematic view of a garbage collection drawer and platen mounting structure.
In the figure: 1. a transfer bed body; 2. an electrocardiograph monitor; 3. an EGG interface; 4. a BPNI interface; 5. an IBP interface; 6. SpO2 interface; 7. an interface frame; 8. an electrocardiograph monitoring interface; 9. a first switching line; 10. a sphygmomanometer interface; 11. a monitoring lead; 12. a blood pressure cuff; 13. a second patch cord; 14. an oximeter; 15. a blood oxygen saturation monitoring interface; 16. a third patch cord; 17. a buckle; 18. first-aid article storage cabinets; 1801. first-aid medicine storage drawer; 1802. an article storage drawer; 1803. a garbage collection drawer; 19. an operation platen; 20. a slide rail; 21. a first chute; 22. a second chute; 23. a sliding block; 24. a clamping groove; 25. and (5) pressing plates.
Detailed Description
The utility model will be further described with reference to the following embodiments in order to make the technical means, the creation features, the achievement of the objects and the effects of the utility model easy to understand.
In the description of the present utility model, it should be understood that the terms "transverse", "longitudinal", "end", "edge", "side wall", "upper", "lower", "directly above", "surface", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "axial", "radial", "circumferential", "end", "head", "tail", etc. refer to the orientation or positional relationship based on the drawings, are merely for convenience of describing the technical solution of the present utility model and for simplifying the description, and do not indicate or imply that the apparatus or element referred to must have a specific orientation, be configured and operated in a specific orientation, and therefore should not be construed as limiting the present utility model.
As shown in fig. 1-2, the present embodiment provides a transfer bed, which comprises a transfer bed body 1 and an electrocardiograph monitor 2;
as shown in fig. 4, the electrocardiograph monitor 2 includes an NIBP interface 4 for measuring non-invasive blood pressure, an IBP interface 5 for measuring invasive blood pressure, and an SpO2 interface 6 for blood oxygen saturation, in addition to the EGG interface 3 connected to the monitor lead 11;
as shown in fig. 3 and 4, the interface rack 7 is further included, and the interface rack 7 is provided with: an electrocardiographic monitoring interface 8 adapted to the connector of the monitoring lead 11, for example, when the connector of the monitoring lead 11 is a T-shaped nine-needle connector, the electrocardiographic monitoring interface 8 is also a T-shaped nine-needle serial port;
the electrocardiograph monitoring interface 8 is connected with the electrocardiograph monitor 2 through a first transfer wire 9, one end of the first transfer wire 9 is welded with the electrocardiograph monitoring interface 8, and the other end of the first transfer wire 9 is welded with a joint of the EGG interface 3 on the adaptive electrocardiograph monitor 2. For example, when the EGG interface 3 on the electrocardiograph monitor 2 employs a nine-pin serial port, the other end of the first switching wire 9 is typically welded with a nine-pin connector.
A sphygmomanometer interface 10 that mates with the joint of the pressure sensor of the blood pressure cuff 12; the sphygmomanometer interface 10 is connected with the electrocardiograph monitor 2 through a second patch cord 13, one end of the second patch cord 13 is welded with the sphygmomanometer interface 10, and the other end of the second patch cord 13 is welded with a joint of the NIBP interface 4 or the IBP interface 5 on the adaptive electrocardiograph monitor 2; for example, when the NIBP interface 4 or the IBP interface 5 adopts a six-pin serial port, the connector adapted to the NIBP interface 4 or the IBP interface 5 on the electrocardiograph monitor 2 also adopts a six-pin connector.
An oximetry monitoring interface 15 adapted to the connection of the oximeter 14; the blood oxygen saturation monitoring interface 15 is connected to the electrocardiograph monitor 2 through a third patch cord 16. One end of the third patch cord 16 is welded with the blood oxygen saturation monitoring interface 15, and the other end of the third patch cord 16 is welded with a joint of the SpO2 interface 6 on the adaptive electrocardiograph monitor 2; for example, when the SpO2 interface 6 is a six-pin serial port, a six-pin connector is also used for the connector that is adapted to the SpO2 interface 6 on the electrocardiograph monitor 2.
As shown in fig. 4, the first patch cord 9, the second patch cord 13, and the third patch cord 16 are all accommodated in the interface rack 7. The first patch cord 9, the second patch cord 13 and the third patch cord 16 are preferably stored on the inner side surface of the interface rack 7; for example: the interface frame 7 is fixedly connected with a plurality of buckles 17 for fixing the first patch cord 9, the second patch cord 13 and the third patch cord 16. The first patch cord 9, the second patch cord 13 and the third patch cord 16 are all accommodated on the interface frame 7 at one side, facing the transfer bed, of the interface frame 7, the buckle 17 is clamped on the first patch cord 9, the second patch cord 13 and the third patch cord 16, and the buckle 17 is fixed on one side, facing the transfer bed, of the interface frame 7.
In other embodiments, a power supply for supplying power to the electrocardiograph monitor 2 is further provided on the transfer bed body 1, and the power supply preferably selects a rechargeable storage battery, and the rechargeable storage battery can be charged when the rechargeable storage battery is externally connected with the power supply.
As shown in fig. 1 and 2, in other embodiments, an emergency article storage bin 18 is included, the emergency article storage bin 18 including an emergency medicine storage drawer 1801, an article storage drawer 1802, and a garbage collection drawer 1803. The emergency treatment device can separate and store the medicines and articles used for emergency treatment, and can separate and open the emergency treatment articles and the emergency treatment medicines, so that the emergency treatment device is more convenient to take; and medical waste can be placed in the waste collection drawer 1803 at any time, so that medical waste can be collected at any time. The medical articles comprise monitoring leads 11, blood pressure sleeves, monitors, oxygenerators, attractors, first-aid medicines and other instruments and equipment, and dangerous situations occur in the patient during the transportation after the medicines are configured, so that the first-aid can be immediately carried out.
As shown in fig. 1, in other embodiments, the emergency treatment device further comprises a control table 19, and by arranging the control table 19, articles required in emergency, such as monitors, oxygenerators, attractors, first-aid medicines and other instrument devices, and medicines, can be subjected to dangerous situations in a patient in transportation after being configured, and can be immediately subjected to emergency treatment.
As shown in fig. 5-8, in other embodiments, a pair of sliding rails 20 are fixedly connected under the transferring bed body 1, and first sliding grooves 21 are formed on opposite sides of the pair of sliding rails 20; the first chute 21 is equal in length to the operating platen 19; the two ends of the first sliding groove 21 extend to the two ends of the sliding rail 20, and the operation platform 19 is slidably engaged in the pair of first sliding grooves 21. The first chute 21 can support the operation table 19, and the length of the operation table 19 that can be pulled out can be adjusted, so that the length of the operation table 19 that can be pulled out can be selected according to the volume occupied by the actually placed article.
In other embodiments, as shown in fig. 5-8, a pair of slide rails 20 are provided with second slide grooves 22 on opposite sides thereof; the second sliding groove 22 comprises an open end and a closed end, wherein the open end of the second sliding groove 22 extends to one end of the sliding rail 20, and the distance between the closed end of the second sliding groove 22 and the other end of the sliding rail 20 is 1/2-1/3 of the total length of the sliding rail 20; a sliding block 23 is fixedly connected to the operation table plate 19; when the operation panel 19 is slidably fitted in the pair of first slide grooves 21 and the slide block 23 is slidably fitted in the second slide groove 22, the operation panel 19 reaches the maximum extent that it can be pulled out when the slide block 23 slides to the closed end of the second slide groove 22.
As shown in fig. 8, the second chute 22 plays a limiting role on the operation table plate 19, so that the extraction amount of the operation table plate 19 accounts for 2/3-1/2 of the total length of the operation table plate, and a pair of slide rails 20 play a stable supporting role on the operation table plate 19.
In other embodiments, as shown in fig. 9, a clamping groove 24 is formed in the garbage collection drawer 1803, the clamping groove 24 is provided with a pressing plate 25 in a matching manner, and the pressing plate 25 is clamped inside the clamping groove 24. In use, the garbage bag is placed in the garbage collection drawer 1803, and the pressing plate 25 is placed in the clamping groove 24, so that the technical effect of pressing the opening of the garbage bag is achieved.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be appreciated by persons skilled in the art that the present utility model is not limited to the embodiments described above, but is capable of numerous variations and modifications without departing from the spirit and scope of the utility model as hereinafter claimed. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (6)

1. The utility model provides a transfer bed, includes transfer bed body and electrocardiograph monitor, its characterized in that still includes the interface frame of fixed connection on the transfer bed body, be provided with on the interface frame:
an electrocardiograph monitoring interface adapted to the connector of the monitoring lead, the electrocardiograph monitoring interface being connected to the electrocardiograph monitor through a first transfer line;
the sphygmomanometer interface is matched with the connector of the pressure sensor of the blood pressure cuff and is connected with the electrocardiograph monitor through a second patch cord;
an oxygen saturation monitoring interface adapted to the connector of the oximeter; the blood oxygen saturation monitoring interface is connected with the electrocardiograph monitor through a third patch cord;
the first switching wire, the second switching wire and the third switching wire are all accommodated on the interface frame.
2. The transfer bed of claim 1, further comprising a handling platen.
3. The transfer bed according to claim 2, wherein a pair of sliding rails are fixedly connected under the transfer bed body, and first sliding grooves are formed in opposite side surfaces of the pair of sliding rails; the two ends of the first sliding groove extend to the two ends of the sliding rail respectively, and the operating table plate is embedded in the pair of first sliding grooves in a sliding manner.
4. A transfer bed according to claim 3, wherein the opposite sides of the slide rail are provided with second slide grooves, the second slide grooves comprise an open end and a closed end, the open end of the second slide groove extends to one end of the slide rail, and the distance between the closed end of the second slide groove and the other end of the slide rail is 1/2-1/3 of the total length of the slide rail; the operation table plate is fixedly connected with a sliding block; when the operating platform plate is in sliding fit with the pair of first sliding grooves, the sliding block is in sliding fit with the second sliding groove.
5. The transfer bed of claim 1, further comprising an emergency article storage bin comprising an emergency drug storage drawer, an article storage drawer, and a garbage collection drawer.
6. The transfer bed of claim 5, wherein the garbage collection drawer is internally provided with a clamping groove, the clamping groove is provided with a pressing plate in a matching way, and the pressing plate is clamped inside the clamping groove.
CN202321513802.3U 2023-06-14 2023-06-14 Transfer bed Active CN220175404U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321513802.3U CN220175404U (en) 2023-06-14 2023-06-14 Transfer bed

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321513802.3U CN220175404U (en) 2023-06-14 2023-06-14 Transfer bed

Publications (1)

Publication Number Publication Date
CN220175404U true CN220175404U (en) 2023-12-15

Family

ID=89105162

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321513802.3U Active CN220175404U (en) 2023-06-14 2023-06-14 Transfer bed

Country Status (1)

Country Link
CN (1) CN220175404U (en)

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