Be applied to severe monitoring room's VR remote monitering systemTechnical Field
The invention belongs to the technical field of severe illness remote monitoring, and particularly relates to a VR remote monitoring system applied to a severe illness monitoring room.
Background
Intensive care therapy, as the name implies, is used for monitoring some intensive care patients, and more particularly, is used for intensively and intensively treating and nursing various critical patients by applying various advanced medical technologies and modern monitoring and rescuing equipment. To ensure the survival and the subsequent life quality of the patients to the maximum extent. The intensive care unit is a department specially used for intensive care patients. Generally, some critical patients are accommodated in an intensive care unit, and the patients lose vital signs at any time, so that real-time monitoring is needed to rescue the patients in time.
Today intensive care units are provided with monitoring devices, whereby all situations in the intensive care unit are monitored. If the patient has the performance that the physical condition changes dangerously, can in time observe and remind and carry out timely treatment to the patient. However, today's monitoring systems only notify medical personnel after monitoring an emergency; although the problem can be fed back in time, the assignment of medical staff, the preparation of using medical consumables and the preparation of medicines are time-consuming, and the most valuable rescue time of the patient is delayed. The existing monitoring device has poor use effect in an actual scene, and exposes a plurality of defects. To solve this problem, a VR remote monitoring system for use in an intensive care monitoring room is needed.
Disclosure of Invention
The invention aims to: in order to solve the problems that monitoring devices are arranged in the intensive care units at present, the monitoring devices monitor all conditions in the intensive care units, if the patients have bad conditions, the monitoring devices can be observed in time, so that the patients can be rescued in time, but the monitoring systems at present only notify medical workers after monitoring the emergency condition, although the problems can be fed back in time, the assignment of the medical workers, the preparation of using medical consumables and the preparation of medicines all need to consume time, the most valuable rescue time of the patients is delayed, and the using effect is poor, the VR remote monitoring system applied to the intensive care units is provided.
In order to achieve the purpose, the invention adopts the following technical scheme: the utility model provides a be applied to VR remote monitering system in severe monitoring room, be equipped with supervisory equipment, video in the severe monitoring room and shoot module and regional orientation module, its characterized in that: based on existing equipment device increase and be correlated to become VR remote monitering system, include: the acquisition module is used for acquiring the operation data of the monitoring equipment in real time, inputting the operation data into the operation data processing module through the data transmission module, judging the operation state of the monitoring equipment and early warning the hidden trouble of the fault; the monitoring video processing module receives the real-time indoor image obtained from the video shooting module and the positioning data of the area positioning module through the data transmission module, and performs video quality optimization processing at least comprising brightness adjustment, contrast adjustment, definition adjustment and anti-shake adjustment; the VR video synthesis module is used for importing a VR model based on the monitoring video, generating a VR video and archiving the VR video, wherein the VR model constructs a point cloud map based on sickbeds and other medical hardware equipment in the intensive care room, carries out frame image interception, image analysis, point cloud matching of a real object in an image and torsion change of the real object on the monitoring video, and obtains the VR video which accords with a visual angle range through frame-by-frame splicing of semi-finished images; VR video analysis module for show the VR video to the severe monitoring personnel, remind the severe monitoring personnel to utilize and nurse quick dispatch module execution dispatch, wherein show the relevant video of multiple image size scope to the severe monitoring personnel through wearing VR glasses, peeping or VR projection apparatus, and wherein include the change to video image along time axis to the VR video analysis that generates: such as a certain monitoring device with a black screen, abnormal ripples, alarm lamps, abnormal changes of the body state of the patient and the like. The intuitive 3D image changes and the reminding signals can enable the intensive care monitoring personnel to feel the indoor situation personally; the monitoring terminal is provided with an internal calling module which correspondingly calls medical staff in each department of the hospital to come and an external calling module which correspondingly requests assistance by crossing the hospital in a matching way, and is called by the operation of the intensive care personnel.
As a further description of the above technical solution: the monitoring terminal is at least multiplexed by one or more of a mobile phone, a notebook computer and a desktop upper computer which are interconnected with the VR video synthesis module, accessed to a mobile network and have the capability of external communication.
As a further description of the above technical solution: the operation data processing module comprises a database, and a classification module, a comparison module, an abnormal data extraction module and an abnormal data analysis module which are sequentially connected along with the flow direction of the operation data, the classification module and the output end of the database are connected into the comparison module, and the abnormal data analysis module is connected with the alarm prompt module.
As a further description of the above technical solution: the alarm prompting module is a sound-light alarm device or is in communication connection with the monitoring terminal to interact with the warning information.
As a further description of the above technical solution: the monitoring video processing module comprises a brightness adjusting module, a contrast adjusting module, a definition adjusting module and an anti-shake adjusting module which are sequentially connected with each other corresponding to the flow direction of the monitoring video data.
As a further description of the above technical solution: the intensive care monitoring personnel operates the medical care fast scheduling module to execute the independent calling of medical care personnel, departments, medicines and medical care consumables in different items.
As a further description of the above technical solution: the outbound module comprises a peripheral medical institution calling module and an outbound request transmission module, and the output end of the outbound request transmission module is sequentially connected with submodules of screening, stage adjustment and calling notification related to medical workers along with a request signal.
As a further description of the above technical solution: and the output ends of the internal calling module and the external calling module are also provided with a big data analysis module, and a calling fault, fault type classification, source tracing and cause checking, a fault problem set and an improvement suggestion are extracted through the input of a calling result data set and by utilizing big data analysis.
In summary, due to the adoption of the technical scheme, the invention has the beneficial effects that: through the data monitoring module that is provided with supervisory equipment itself including, can be when supervisory equipment uses, monitor its working data of itself, gather and contrast, thereby judge whether the user state of supervisory equipment itself meets the requirements, can effectively avoid using the condition emergence that supervisory equipment later stage appears the use trouble, effectively eliminate supervisory equipment's trouble hidden danger, adopt VR video synthesis method simultaneously, make the surveillance video be the VR video, be convenient for the background to carry out all-round observation understanding to the condition in the intensive care unit, be provided with VR video analysis module simultaneously, can be to the state of patient in the surveillance video and analyze, if patient's state is not good, then can carry out medical care fast dispatch in advance, to medical personnel, the medicine, administrative or technical offices and consumptive material carry out fast dispatch, can be when patient takes place dangerous condition, fast rescue, a series of dispatches after effectively having solved traditional patient and taking place danger, and the problem of valuable patient rescue time, improve this supervisory system's result of use, while in the system, be assisted and be provided with the outbound system, to some difficult problems of illness, can carry out the quick miscellaneous disease, the request, waste. Through being provided with big data analysis module, can carry out effective analysis to some trouble problems that whole calling system in the system produced, carry out categorised collection to trouble problems, can automatic generation some improve the suggestion according to categorised problem simultaneously, can effectively assist the calling module in the system to improve, improve calling module's whole result of use.
Drawings
Fig. 1 is a schematic diagram of an assembly module of a VR remote monitoring system applied to an intensive care unit according to the present invention.
Fig. 2 is a schematic diagram of an internal structure of the operation data processing module in fig. 1.
Fig. 3 is a schematic diagram of an internal structure of the surveillance video processing module in fig. 1.
Fig. 4 is a schematic diagram of an internal structure of the medical fast scheduling module in fig. 1.
Fig. 5 is a schematic diagram of the internal structure of the outbound module in fig. 1.
Fig. 6 is a schematic diagram of an internal structure of the big data analysis module in fig. 1.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example 1
Referring to fig. 1-6, the present invention provides a technical solution: a VR remote monitoring system applied to a critical care monitoring room comprises a monitoring device operation data acquisition module, a monitoring video shooting module and a monitoring area positioning module, wherein the output ends of the monitoring device operation data acquisition module, the monitoring video shooting module and the monitoring area positioning module are connected with the input end of a data transmission module, the output end of the data transmission module is respectively connected with the input ends of an operationdata processing module 1 and a monitoringvideo processing module 2, the output end of the monitoringvideo processing module 2 is electrically connected with the input end of a VR model importing module, the output end of the VR model importing module is electrically connected with the input end of a VR video generating module, the output end of the VR video generating module is electrically connected with the input end of a VR video archiving module, the output end of the VR video archiving module is connected with the input end of a medicalfast dispatching module 3, the output end of the VR video archiving module is connected with the input end of a monitoring terminal through a network, the output end of the monitoring terminal is connected with the input end of a request calling module, the output end of the request calling module is respectively connected with the input end of an internal calling module and the external calling module 4, and the monitoring terminal is a mobile phone.
The operationdata processing module 1 comprises an operation data classification module and a database, the output ends of the operation data classification module and the database are connected with the input end of an operation data comparison module, the output end of the operation data comparison module is connected with the input end of an abnormal data extraction module, the output end of the abnormal data extraction module is connected with the input end of an abnormal data analysis module, and the output end of the abnormal data analysis module is connected with the input end of an alarm prompt module.
The monitoringvideo processing module 2 comprises a monitoring video brightness adjusting module and a monitoring video contrast adjusting module, the output end of the monitoring video brightness adjusting module is connected with the input end of the monitoring video contrast adjusting module, the output end of the monitoring video contrast adjusting module is connected with the input end of the monitoring video definition adjusting module, and the output end of the monitoring video definition adjusting module is connected with the input end of the monitoring video anti-shake adjusting module.
Example 2
Referring to fig. 1-6, the present invention provides a technical solution: the utility model provides a be applied to VR remote monitering system of intensive care unit, including doctorsing and nursesquick dispatch module 3, doctorsing and nursesquick dispatch module 3 and include medical personnel's dispatch module and doctorsing and nurses department's dispatch module, medical personnel's dispatch module's output is connected with the input of doctorsing and nurses department's dispatch module, and the output of doctorsing and nurses department's dispatch module is connected with the input of medicine dispatch module, and the output of medicine dispatch module is connected with the input of doctorsing and nurses consumptive material dispatch module.
Through the data monitoring module that is provided with supervisory equipment itself including, can be when supervisory equipment uses, work data to itself monitors, gather and contrast, thereby judge whether the user state of supervisory equipment itself meets the requirements, can effectively avoid using the condition emergence that the user trouble appears in supervisory equipment later stage, effectively eliminate supervisory equipment's trouble hidden danger, adopt VR video synthesis method simultaneously, make the surveillance video be the VR video, be convenient for the background to carry out all-round observation understanding to the condition in the intensive care unit, be provided with VR video analysis module simultaneously, can be to the analysis of patient's state in the surveillance video, if patient's state is not good, then can carry out medical fast dispatch of doctorsing and nurses in advance, to medical personnel, the medicine, administrative or technical offices carries out fast dispatch with the consumptive material, can be when patient takes place dangerous condition, quick rescue, a series of dispatches after effectively having solved traditional patient and taking place danger again, and the problem of valuable patient rescue time, improve this monitored control system's result of use.
Example 3
Referring to fig. 1-6, the present invention provides a technical solution: the utility model provides a be applied to VR remote monitering system of severe monitoring room, including exhaling module 4 outward, exhale module 4 outward and include peripheral medical institution calling module and exhale request transmission module outward, peripheral medical institution calling module's output is connected with the input of exhaling request transmission module outward, exhale request transmission module's output outward and medical personnel's intelligent screening module's input and be connected, medical personnel's intelligent screening module's output is connected with medical personnel's grade adjustment module's input, medical personnel's grade adjustment module's output and medical personnel call the input of informing the module and be connected.
By arranging the outbound module 4, the problem of some difficult and complicated diseases can be quickly outbound and assisted by a request, so that the problem can be quickly solved, and the function is strong.
The output ends of the outbound module 4 and the inbound module are connected with the input end of the calling result set module, the output end of the calling result set module is connected with the input end of the bigdata analysis module 5, the bigdata analysis module 5 comprises a calling fault acquisition module, the output end of the calling fault acquisition module is connected with the input end of the fault type classification module, the output end of the fault type classification module is connected with the input end of the traceability factor module, the output end of the traceability factor module is connected with the input end of the fault question set module, and the output end of the fault question set module is connected with the input end of the improvement suggestion generation module.
Through being provided with bigdata analysis module 5, can carry out effective analysis to some trouble problems that whole calling system in the system produced, carry out categorised collection to trouble problems, can automatic generation some improve the suggestion according to categorised problem simultaneously, can effectively assist the calling module in the system to improve, improve calling module's whole result of use.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered as the technical solutions and the inventive concepts of the present invention within the technical scope of the present invention.