CN210575124U - Multi-bed centralized nursing system - Google Patents

Multi-bed centralized nursing system Download PDF

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Publication number
CN210575124U
CN210575124U CN201922364044.3U CN201922364044U CN210575124U CN 210575124 U CN210575124 U CN 210575124U CN 201922364044 U CN201922364044 U CN 201922364044U CN 210575124 U CN210575124 U CN 210575124U
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server
alarm
parameter information
physiological parameter
bed
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CN201922364044.3U
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董春娇
商春恒
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China Science Pengzhou Intelligent Industry Innovation Center Co Ltd
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China Science Pengzhou Intelligent Industry Innovation Center Co Ltd
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Abstract

The utility model provides a many beds concentrate nurse system belongs to nurse apparatus equipment field, and it can realize the purpose of a guardianship station monitoring a plurality of beds simultaneously, and this system can reduce medical personnel's working strength, reaches the purpose of in time mastering the patient's state of an illness simultaneously. The multi-bed centralized nursing system in the utility model comprises a plurality of non-contact monitors, a server and a centralized monitoring station; wherein, every non-contact monitor corresponds a bed, and each non-contact monitor's output all is connected with the input of server, and the output of server is connected with concentrated guardianship station, and wherein, non-contact monitor for gather the user physiological parameter information that corresponds the bed and upload to the server with user physiological parameter information. And the server is used for sending an alarm signal to the centralized monitoring station when the received physiological parameter information of the user exceeds the preset standard physiological parameter information. And the centralized monitoring station is used for monitoring the alarm signals of all the beds in a centralized manner.

Description

Multi-bed centralized nursing system
Technical Field
The utility model relates to a nurse apparatus equipment, concretely relates to many beds concentrate nurse system.
Background
The traditional medical nursing system is that the monitor is arranged at the bedside of a patient, and a doctor and a nurse are required to go to a ward to check the information of the patient displayed on the monitor. The current nursing system can not realize data transmission, does not have a special control manager, has low intelligent degree, enables medical care personnel not to remotely read and monitor patient information of different sickbeds, achieves the aim of timely mastering the illness state of the patient and can increase the working intensity of the medical care personnel. Accordingly, there is a need to develop a system that can monitor the condition of a patient without the need to touch the patient.
SUMMERY OF THE UTILITY MODEL
The utility model discloses aim at solving one of the technical problem that exists among the prior art at least, provide a many beds and concentrate nurse system.
The utility model provides a many beds concentrate nurse system, include: a plurality of non-contact monitors, a server and a centralized monitoring station; wherein each non-contact monitor corresponds to one bed, the output end of each non-contact monitor is connected with the input end of the server, the output end of the server is connected with the centralized monitoring station, wherein,
the non-contact monitor is used for acquiring the physiological parameter information of the user corresponding to the bed and uploading the physiological parameter information of the user to the server;
the server is used for sending an alarm signal to the centralized monitoring station when the received physiological parameter information of the user exceeds preset standard physiological parameter information;
the centralized monitoring station is used for monitoring the alarm signals of all the beds in a centralized manner.
Optionally, the non-contact monitor adopts a radar monitor, the radar monitor comprises a monitor main body and a sending module, a receiving module and a WiFi module which are arranged on the monitor main body, and the WiFi module is connected with the server.
Optionally, the system further comprises a switch and a plurality of wireless access devices, and at least one wireless access device is arranged on each bed;
each WiFi module is connected with the corresponding wireless access device, the input end of the switch is connected with each wireless access device, and the output end of the switch is connected with the server.
Optionally, the server includes a receiving unit, a comparing unit, and a storing unit; the input end of the receiving unit is connected with the non-contact monitor, the first input end of the comparing unit is connected with the output end of the receiving unit, and the second input end of the comparing unit is connected with the storage unit; wherein the content of the first and second substances,
the receiving unit is used for receiving the physiological parameter information of each user;
the comparison unit is used for comparing the physiological parameter information of each user with preset standard physiological parameter information stored in the storage unit and sending the alarm signal when the physiological parameter information of the user exceeds the standard physiological parameter information.
Optionally, the centralized monitoring station includes an alarm, and an input end of the alarm is connected with an output end of the server; wherein the content of the first and second substances,
and the alarm is used for giving an alarm according to the alarm signal of each bed.
Optionally, the alarm comprises an audible alarm and/or a light alarm.
Optionally, the centralized monitoring station further includes a display screen, and an input end of the display screen is connected with an output end of the server; wherein the content of the first and second substances,
and the display screen is used for displaying the alarm information of each bed.
Optionally, the display screen is an LCD display screen or an OLED display screen.
Optionally, the system further includes a mobile terminal, and the mobile terminal is connected to the centralized monitoring station to receive the alarm signal of each bed.
Optionally, the mobile terminal includes at least one of a mobile phone, a computer, and a tablet.
The utility model provides a many beds concentrate nurse system carries out the continuity monitoring to patient's vital sign (breathing, rhythm of the heart, body movement, leaving the bed) through the non-contact monitor to convey the information of gathering in real time through wireless network and concentrate guardianship station storage and show. When the physiological signal of a certain patient exceeds the set safety range, alarm information is sent to the centralized monitoring station, and a disease log is recorded and generated. In addition, the system also has the functions of equipment management, user information management, historical record inquiry and the like, and can monitor important vital sign parameters of the patient at any time, continuously and for a long time.
Drawings
FIG. 1: the structure of the multi-bed centralized nursing system in one embodiment of the utility model is schematically shown;
FIG. 2: the utility model discloses in the structure sketch map of many beds centralized nursing system of another embodiment.
Detailed Description
In order to make the technical solution of the present invention better understood by those skilled in the art, the present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
As shown in fig. 1 and 2, the present invention provides a multi-bed centralized nursing system 100, comprising: a plurality of non-contact monitors 110, a server 120, and a centralized monitoring station 130; each non-contact monitor 110 corresponds to a bed, the output end of each non-contact monitor 110 is connected with the input end of the server 120, and the output end of the server 120 is connected with the centralized monitoring station 130, wherein the non-contact monitor 110 is used for acquiring the physiological parameter information of a user corresponding to the bed and uploading the physiological parameter information of the user to the server 120. The server 120 is configured to send an alarm signal to the centralized monitoring station 130 when the received physiological parameter information of the user exceeds the preset standard physiological parameter information. And the centralized monitoring station 130 is used for monitoring alarm signals of all the beds in a centralized manner.
The multi-bed centralized nursing system 100 provided by the embodiment can realize centralized monitoring of the illness state information of each patient under the condition of not contacting a plurality of beds, and the system can be used for configuring corresponding non-contact monitors 110 on each bed to collect the physiological parameters of the patient and then transmitting the collected data to the centralized monitoring station 130 through the server 120 so as to achieve the purpose that one centralized monitoring station 130 monitors a plurality of beds simultaneously, so that the system can reduce the working intensity of medical workers and achieve the purpose of timely mastering the illness state of the patient.
It should be noted that the server 120 in this embodiment is mainly used for receiving the data monitored by the non-contact monitor 110 and comparing the data with the pre-stored standard physiological parameters, that is, the server 120 mainly pre-determines the patient condition information of the patient and sends a signal to the centralized monitoring station 130 when the difference between the data and the standard physiological data occurs. Of course, the server 120 may also be integrated with the centralized monitoring station 130, that is, the host in the centralized monitoring station 130 functions as the server 120, that is, the server 120 functions as a data processing and control module, and plays a role in processing the monitored data, and further transmitting and controlling the signals.
Specifically, as shown in fig. 2, the non-contact monitor 110 is a radar monitor, and the radar monitor includes a monitor main body (not shown in the figure), and a transmitting module 111, a receiving module 112, and a WiFi module 113 provided on the non-contact monitor 110 main body, wherein the WiFi module 113 is connected to the server 120.
It should be noted that the non-contact monitor 110 can detect various physiological signals of a living body in a longer distance, which not only provides a non-invasive, convenient and more applicable detection means for the physiological signals, but also provides possibility for the detection of the physiological signals in some special occasions. In addition, this embodiment adopts the radar monitor, and the radar technology has unique advantage in the aspect of physiological signal detection, is difficult for receiving environmental factor influences such as weather, temperature, illumination, has stronger penetrability, and the radar monitor is through sending module 111 sending signal and receiving module 112 receiving signal, according to echo signal frequency variation, can survey human physiological parameter.
Optionally, as shown in fig. 2, the multi-bed centralized nursing system 100 of the present embodiment further includes a plurality of wireless access devices 140 and a switch 150, and each bed is provided with at least one wireless access device 140. Each WiFi module 113 is connected to the corresponding wireless access device 140, the input end of the switch 150 is connected to the output ends of the wireless access devices 140, and the output end of the switch 150 is connected to the server 120.
Specifically, as shown in fig. 2, the server 120 includes a receiving unit 121, a comparing unit 122, and a storing unit 123; the input end of the receiving unit 121 is connected to the non-contact monitor 110, the first input end of the comparing unit 122 is connected to the output end of the receiving unit 121, and the second input end of the comparing unit 122 is connected to the storage unit 123. The receiving unit 121 is configured to receive physiological parameter information of each user. And the comparing unit 122 is used for comparing the physiological parameter information of each user with preset standard physiological parameter information stored in the storage unit 123, and sending out an alarm signal when the physiological parameter information of the user exceeds the standard physiological parameter information.
It should be noted that specific structures of the receiving unit 121, the comparing unit 122 and the storing unit 123 are not specifically limited, for example, the receiving unit 121 may be a receiver, the comparing unit 122 may be a comparator, and the storing unit 123 may be a RAM or a ROM.
Specifically, as shown in fig. 2, the centralized monitoring station 130 includes an alarm 131, and an input terminal of the alarm 131 is connected to an output terminal of the server 120. Wherein, the alarm 131 is used for giving an alarm according to the alarm signal of each bed. It should be noted that, the alarm 131 can prompt the medical care worker to deal with the state of illness of the patient in time, that is, the alarm 131 mainly plays a role in prompting, and may be a sound alarm, a light alarm, or both, and is not limited herein.
Specifically, as shown in fig. 2, in order to enable the medical care workers to monitor the change of physiological parameters of patients in real time and to view the disease logs of each patient, the centralized monitoring station 130 further includes a display screen 132, and an input end of the display screen 132 is connected to an output end of the server 120; wherein, the display screen 132 is used for displaying the alarm information of each bed. Optionally, the display screen 132 is an LCD display screen or an OLED display screen.
It should be noted that the centralized monitoring station 130 of this embodiment can monitor physiological parameters of patients in real time and process alarm events of the patients, and certainly, can query personal information, history of illness state, alarm records, and other information of each patient.
Optionally, the system of this embodiment further includes a mobile terminal (not shown in the figure), and the mobile terminal is connected to the centralized monitoring station 130 to receive the alarm signal of each bed. The mobile terminal includes at least one of a mobile phone, a computer and a tablet, which is not limited herein.
It should be noted that the mobile terminal has an equipment management module, a user management module, a system parameter setting module, and the like, and specifically, the equipment management module is configured to manage equipment bound to a bed, for example, count, add, modify, or delete each bound equipment through the equipment management module. The user management module is used for managing the basic information of the patient, for example, counting, adding, modifying, deleting or inquiring the information of each patient through the user management module. The system parameter setting module is used for setting a system working interface, for example, parameters such as the number of beds, the alarm volume, the alarm mode and the working interface switching of the system are set through the system parameter setting module.
The utility model provides a many beds concentrate nurse system carries out the continuity monitoring to patient's vital sign (breathing, rhythm of the heart, body movement, leaving the bed) through the non-contact monitor to convey the information of gathering in real time through wireless network and concentrate guardianship station storage and show. When the physiological signal of a certain patient exceeds the set safety range, alarm information is sent to the centralized monitoring station, and a disease log is recorded and generated. In addition, the system also has the functions of equipment management, user information management, historical record inquiry and the like, and can monitor important vital sign parameters of the patient at any time, continuously and for a long time.
It is to be understood that the above embodiments are merely exemplary embodiments adopted for illustrating the present invention, but the present invention is not limited thereto. It will be apparent to those skilled in the art that various modifications and improvements can be made without departing from the spirit and substance of the invention, and these modifications and improvements are also considered to be within the scope of the invention.

Claims (10)

1. A multi-bed centralized nursing system, comprising: a plurality of non-contact monitors, a server and a centralized monitoring station; wherein each non-contact monitor corresponds to one bed, the output end of each non-contact monitor is connected with the input end of the server, the output end of the server is connected with the centralized monitoring station, wherein,
the non-contact monitor is used for acquiring the physiological parameter information of the user corresponding to the bed and uploading the physiological parameter information of the user to the server;
the server is used for sending an alarm signal to the centralized monitoring station when the received physiological parameter information of the user exceeds preset standard physiological parameter information;
the centralized monitoring station is used for monitoring the alarm signals of all the beds in a centralized manner.
2. The system of claim 1, wherein the non-contact monitor is a radar monitor, the radar monitor comprises a monitor body, and a transmitting module, a receiving module and a WiFi module disposed on the monitor body, and the WiFi module is connected to the server.
3. The system of claim 2, further comprising a switch and a plurality of wireless access devices, at least one of the wireless access devices being disposed on each of the beds;
each WiFi module is connected with the corresponding wireless access device, the input end of the switch is connected with each wireless access device, and the output end of the switch is connected with the server.
4. The system of claim 1, wherein the server comprises a receiving unit, a comparing unit, a storing unit; the input end of the receiving unit is connected with the non-contact monitor, the first input end of the comparing unit is connected with the output end of the receiving unit, and the second input end of the comparing unit is connected with the storage unit; wherein the content of the first and second substances,
the receiving unit is used for receiving the physiological parameter information of each user;
the comparison unit is used for comparing the physiological parameter information of each user with preset standard physiological parameter information stored in the storage unit and sending the alarm signal when the physiological parameter information of the user exceeds the standard physiological parameter information.
5. The system of any one of claims 1-4, wherein the centralized monitoring station comprises an alarm, an input of the alarm being connected to an output of the server; wherein the content of the first and second substances,
and the alarm is used for giving an alarm according to the alarm signal of each bed.
6. A multi-cot centralized nursing system according to claim 5, wherein the alarm comprises an audible alarm and/or a light alarm.
7. The system of any one of claims 1-4, wherein the centralized monitoring station further comprises a display screen, an input of the display screen being connected to an output of the server; wherein the content of the first and second substances,
and the display screen is used for displaying the alarm information of each bed.
8. The system of claim 7, wherein the display screen is an LCD display screen or an OLED display screen.
9. The system of any one of claims 1-4, further comprising a mobile terminal connected to the centralized monitoring station for receiving the alarm signal from each of the beds.
10. The system of claim 9, wherein the mobile terminal comprises at least one of a cell phone, a computer, and a tablet.
CN201922364044.3U 2019-12-25 2019-12-25 Multi-bed centralized nursing system Active CN210575124U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111866112A (en) * 2020-07-13 2020-10-30 博繁软件(广州)有限公司 Patient sign data acquisition system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111866112A (en) * 2020-07-13 2020-10-30 博繁软件(广州)有限公司 Patient sign data acquisition system

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