CN112093322A - Physiological waste treatment monitoring system - Google Patents

Physiological waste treatment monitoring system Download PDF

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Publication number
CN112093322A
CN112093322A CN202010985271.2A CN202010985271A CN112093322A CN 112093322 A CN112093322 A CN 112093322A CN 202010985271 A CN202010985271 A CN 202010985271A CN 112093322 A CN112093322 A CN 112093322A
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China
Prior art keywords
wireless communication
communication module
physiological
waste treatment
monitoring system
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CN202010985271.2A
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CN112093322B (en
Inventor
丘丹
黄丽华
梁洁贞
杜淑娴
李小霞
王碧云
朱建英
袁慧敏
钟灼英
刘莉棉
吴映芳
李瑞芳
吴巧嫦
曾利琼
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Dongguan Maternal And Child Health Hospital
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Dongguan Maternal And Child Health Hospital
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F1/00Refuse receptacles; Accessories therefor
    • B65F1/14Other constructional features; Accessories
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K7/00Methods or arrangements for sensing record carriers, e.g. for reading patterns
    • G06K7/10Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation
    • G06K7/10544Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation by scanning of the records by radiation in the optical part of the electromagnetic spectrum
    • G06K7/10821Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation by scanning of the records by radiation in the optical part of the electromagnetic spectrum further details of bar or optical code scanning devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F2210/00Equipment of refuse receptacles
    • B65F2210/128Data transmitting means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F2210/00Equipment of refuse receptacles
    • B65F2210/184Weighing means

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  • Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Electromagnetism (AREA)
  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Toxicology (AREA)
  • Artificial Intelligence (AREA)
  • Computer Vision & Pattern Recognition (AREA)
  • General Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Accommodation For Nursing Or Treatment Tables (AREA)

Abstract

The invention discloses a physiological waste treatment monitoring system.A waste collection device of the physiological waste treatment monitoring system comprises a fixed mounting base and a medical waste treatment barrel, wherein the medical waste treatment barrel is embedded in a base accommodating cavity of the fixed mounting base; the fixed mounting base is provided with a display screen, a two-dimensional code recognizer and a collecting end controller, the collecting end controller comprises a collecting end MCU controller and a collecting end wireless communication module, and the weighing sensor, the reflective photoelectric sensor, the display screen and the two-dimensional code recognizer are respectively and electrically connected with the collecting end MCU controller; the physiological waste treatment monitoring system also comprises a background server and a mobile phone terminal, wherein the background server is provided with a server wireless communication module. Through the structural design, the multifunctional obstetric apparatus has the advantages of novel design and multiple functions, and can effectively monitor physiological waste generated by the obstetrical department of hospitals in real time.

Description

Physiological waste treatment monitoring system
Technical Field
The invention relates to the technical field of hospital obstetrical physiological waste treatment, in particular to a physiological waste treatment monitoring system.
Background
In order to effectively control the adverse consequences such as placenta loss, business, infectious disease transmission and the like after parturition of the lying-in women, the specific requirements of the placenta management after parturition of the lying-in women are provided by infectious disease prevention and treatment law, medical waste management regulation and recovery of the placenta treatment problem after parturition of the lying-in women issued by the ministry of health.
In the process of managing the physiological wastes such as placenta, induced labor and dead fetus and the like in the obstetrical department of a hospital, the medical personnel in the obstetrical department sleeve the physiological wastes through the sealing bag, put the physiological wastes sleeved by the sealing bag into a designated barrel, need to carry out antiseptic disinfection of a disinfectant after putting the physiological wastes into the barrel, and then have special collection personnel for centralized collection and treatment. In the prior art, when obstetrical medical care personnel actually monitor and manage physiological waste, the monitoring process is complicated, and the physiological waste monitoring defect and the phenomenon of increasing human resources still exist.
Disclosure of Invention
The invention aims to provide a physiological waste treatment monitoring system aiming at the defects of the prior art, which has novel design and various functions and can effectively monitor physiological waste generated by a hospital obstetrical department in real time.
In order to achieve the above object, the present invention is achieved by the following technical solutions.
A physiological waste treatment monitoring system comprises a waste collection device, wherein the waste collection device comprises a fixed mounting base, the fixed mounting base is provided with a base accommodating cavity with an upward opening, and a medical waste disposal barrel is embedded in the base accommodating cavity of the fixed mounting base; a weighing sensor and a reflective photoelectric sensor positioned beside the weighing sensor are arranged at the lower end side of the medical waste disposal barrel in the base accommodating cavity, the upper end surface of the weighing sensor is connected with the middle position of the lower surface of the medical waste disposal barrel, the lower end surface of the weighing sensor is fixedly connected with the bottom surface of the base accommodating cavity, and the reflective photoelectric sensor is arranged on the bottom surface of the base accommodating cavity;
the fixed mounting base is provided with a display screen and a two-dimensional code identifier beside the medical waste disposal barrel, the fixed mounting base is also provided with a collecting end controller, the collecting end controller comprises a collecting end MCU controller and a collecting end wireless communication module, and the weighing sensor, the reflective photoelectric sensor, the display screen and the two-dimensional code identifier are respectively and electrically connected with the collecting end MCU controller;
the physiological waste treatment monitoring system further comprises a background server and a mobile phone terminal, wherein the background server is provided with a server wireless communication module, and the background server is in wireless communication with the mobile phone terminal and the collection end wireless communication module through the server wireless communication module respectively.
The physiological waste treatment monitoring system also comprises a network camera, and the network camera is in wireless communication connection with the server wireless communication module.
The server wireless communication module and the collection end wireless communication module are respectively a 4G communication module or a GPRS communication module.
Wherein the fixed mounting base is provided with a disinfectant liquid storage barrel and a disinfectant quantitative supply pump beside the medical waste disposal barrel, and a liquid inlet of the disinfectant quantitative supply pump is connected with the disinfectant liquid storage barrel through a liquid conveying pipeline;
the medical waste disposal barrel is provided with a liquid inlet nozzle communicated with the inner cavity, and a liquid outlet of the disinfectant quantitative supply pump is connected with the liquid inlet nozzle of the medical waste disposal barrel through a liquid conveying pipeline.
The invention has the beneficial effects that: the invention relates to a physiological waste treatment monitoring system which comprises a waste collection device, wherein the waste collection device comprises a fixed mounting base, the fixed mounting base is provided with a base accommodating cavity with an upward opening, and a medical waste treatment barrel is embedded in the base accommodating cavity of the fixed mounting base; a weighing sensor and a reflective photoelectric sensor positioned beside the weighing sensor are arranged at the lower end side of the medical waste disposal barrel in the base accommodating cavity, the upper end surface of the weighing sensor is connected with the middle position of the lower surface of the medical waste disposal barrel, the lower end surface of the weighing sensor is fixedly connected with the bottom surface of the base accommodating cavity, and the reflective photoelectric sensor is arranged on the bottom surface of the base accommodating cavity; the fixed mounting base is provided with a display screen and a two-dimensional code identifier beside the medical waste disposal barrel, the fixed mounting base is also provided with a collecting end controller, the collecting end controller comprises a collecting end MCU controller and a collecting end wireless communication module, and the weighing sensor, the reflective photoelectric sensor, the display screen and the two-dimensional code identifier are respectively and electrically connected with the collecting end MCU controller; the physiological waste treatment monitoring system further comprises a background server and a mobile phone terminal, wherein the background server is provided with a server wireless communication module, and the background server is in wireless communication with the mobile phone terminal and the collection end wireless communication module through the server wireless communication module respectively. Through the structural design, the multifunctional obstetric apparatus has the advantages of novel design and multiple functions, and can effectively monitor physiological waste generated by the obstetrical department of hospitals in real time.
Drawings
The invention will be further described with reference to the drawings to which, however, the embodiments shown in the drawings do not constitute any limitation.
Fig. 1 is a schematic view of the waste collection device of the present invention.
Fig. 2 is a schematic block diagram of the present invention.
Included in fig. 1 and 2 are:
1-waste collecting device 11-fixed mounting base
111-base containing cavity 12-medical waste disposal barrel
13-weighing sensor 14-reflection type photoelectric sensor
15-display screen 16-two-dimensional code recognizer
171-collection end MCU controller 172-collection end wireless communication module
181-disinfectant liquid storage tank 182-disinfectant quantitative supply pump
183-transfusion pipeline 2-background server
21-server wireless communication module 3-mobile phone terminal
4-network camera.
Detailed Description
The present invention will be described below with reference to specific embodiments.
As shown in fig. 1 and 2, a physiological waste treatment monitoring system comprises a waste collection device 1, wherein the waste collection device 1 comprises a fixed mounting base 11, the fixed mounting base 11 is provided with a base accommodating cavity 111 with an upward opening, and a medical waste disposal barrel 12 is embedded in the base accommodating cavity 111 of the fixed mounting base 11; the weighing sensor 13 and the reflection type photoelectric sensor 14 located beside the weighing sensor 13 are arranged on the lower end side of the medical waste disposal barrel 12 in the base accommodating cavity 111, the upper end face of the weighing sensor 13 is connected with the middle position of the lower surface of the medical waste disposal barrel 12, the lower end face of the weighing sensor 13 is fixedly connected with the bottom surface of the base accommodating cavity 111, and the reflection type photoelectric sensor 14 is arranged on the bottom surface of the base accommodating cavity 111.
The fixed mounting base 11 is provided with a display screen 15 and a two-dimensional code identifier 16 beside the medical waste disposal barrel 12, the fixed mounting base 11 is further provided with a collecting end controller, the collecting end controller comprises a collecting end MCU controller 171 and a collecting end wireless communication module 172, and the weighing sensor 13, the reflective photoelectric sensor 14, the display screen 15 and the two-dimensional code identifier 16 are respectively electrically connected with the collecting end MCU controller 171.
Further, the physiological waste treatment monitoring system further comprises a background server 2 and a mobile phone terminal 3, wherein the background server 2 is provided with a server wireless communication module 21, and the background server 2 is in wireless communication with the mobile phone terminal 3 and the collection end wireless communication module 172 through the server wireless communication module 21. Among them, the background server 2 of the present invention may be a computer of a hospital obstetrics department. It should be explained that the server wireless communication module 21 and the collection wireless communication module 172 are respectively a 4G communication module or a GPRS communication module.
With the medical waste disposal barrel 12 of the present invention, before collecting and storing medical waste in a centralized manner, the inner cavity of the medical waste disposal barrel 12 needs to be provided with a disinfectant; the disinfectant in the medical waste disposal barrel 12 can be directly poured in by a manual mode, and can be automatically filled. Wherein, for the self-filling antiseptic solution mode, it can adopt following structural design, specific: the fixed mounting base 11 is provided with a disinfectant liquid storage barrel 181 and a disinfectant quantitative supply pump 182 beside the medical waste disposal barrel 12, and a liquid inlet of the disinfectant quantitative supply pump 182 is connected with the disinfectant liquid storage barrel 181 through a liquid conveying pipeline 183; the medical waste disposal barrel 12 is provided with a liquid inlet nozzle communicated with the inner cavity, and a liquid outlet of the disinfectant quantitative supply pump 182 is connected with the liquid inlet nozzle of the medical waste disposal barrel 12 through a liquid conveying pipeline 183; when disinfectant is required to be filled into the inner cavity of the medical waste disposal barrel 12, the disinfectant quantitative supply pump 182 is started, and the disinfectant in the disinfectant liquid storage barrel 181 is quantitatively fed into the inner cavity of the medical waste disposal barrel 12 by the disinfectant quantitative supply pump 182.
The physiological waste treatment monitoring system of the present invention is described in detail below with reference to specific working processes, and the physiological waste treatment monitoring system works by adopting the following steps:
a. according to the actual conditions of lying-in woman, obstetrical department medical personnel types lying-in woman's production information through backend server 2 in real time, and lying-in woman's production information includes: the name, the hospital number, the delivery date, the delivery time, the department in charge and the medical care responsible person of the lying-in woman are stored by the background server 2, and the delivery information of the lying-in woman is sent to the collection end wireless communication module 172 through the server wireless communication module 21; in addition, the background server 2 is connected with a two-dimensional code generator, and the background server 2 generates a corresponding two-dimensional code according to the production information of the puerpera;
b. the collection-end wireless communication module 172 transmits the received maternal production information sent by the background server 2 to the collection-end MCU controller 171, and the collection-end MCU controller 171 displays the received maternal production information in real time through the display screen 15;
c. after a parturient finishes production, the obstetrical medical staff prints the two-dimensional code corresponding to the parturient into a two-dimensional code label through a printer according to the specific information of the parturient, and the physiological waste produced by the parturient is contained through a treatment bowl or other containing tools;
d. in the process, the obstetrical medical staff pours the contained physiological waste into the medical waste disposal barrel 12, firstly, the obstetrical medical staff aligns a two-dimensional code label printed out in advance with the two-dimensional code recognizer 16, the two-dimensional code recognizer 16 recognizes the two-dimensional code, when two-dimensional code information is matched with the puerpera production information stored by the collection end MCU controller 171, the collection end MCU controller 171 displays the information that the physiological waste of the corresponding puerpera is put in through the display screen 15, the collection end MCU controller 171 puts the physiological waste into the background server 2 through the collection end wireless communication module 172 and the server wireless communication module 21, and the background server 2 supplements the information that the physiological waste is put into the puerpera production information corresponding to the puerpera;
when the physiological waste is put into the inner cavity of the medical waste disposal barrel 12, the weighing sensor 13 feeds back the weight value after being put into the collection end MCU controller 171, the collection end MCU controller 171 displays the actual weight value of the put physiological waste through the display screen 15, the collection end MCU controller 171181 obtains the actual weight of the put physiological waste according to the difference value between the weight value before being put into and the weight value after being put into, then the collection end MCU controller 171 feeds back the actual weight of the physiological waste to the background server 2 through the collection end wireless communication module 172 and the server wireless communication module 21, and the background server 2 supplements the actual weight of the physiological waste to the production information of the lying-in woman corresponding to the lying-in woman;
e. when a waste collector needs to take the medical waste disposal barrel 12 and the internal physiological waste away and perform subsequent treatment, the waste collector takes the medical waste disposal barrel 12 out of the base accommodating cavity 111, the reflective photoelectric sensor 14 feeds back a signal to the collection end MCU controller 171, and the collection end MCU controller 171 feeds back the taken-away information of the physiological waste to the background server 2 through the collection end wireless communication module 172 and the server wireless communication module 21;
f. backstage server 2 sends lying-in woman's production information to obstetrical department medical personnel's cell phone terminal 3 through server wireless communication module 21 in real time, and obstetrical department medical personnel accessible cell phone terminal 3 looks over in real time the physiological waste condition of having put into to medical waste disposal bucket 12 and the physiological waste condition of being taken away, and obstetrical department medical personnel accessible cell phone terminal 3 in time trails and has delivered and the condition that physiological waste did not put into to medical waste disposal bucket 12.
In a preferred embodiment, the physiological waste treatment monitoring system further comprises a network camera 4, and the network camera 4 is in wireless communication connection with the server wireless communication module 21. In the working process of the invention, the network camera 4 collects the image data of the personnel who put and take the physiological waste in real time and sends the image data to the background server 2, and the background server 2 stores the image data so as to monitor the specific conditions of the personnel who put and take the physiological waste.
According to the above conditions, the invention has the advantages of novel design and multiple functions by the structural design, and can effectively monitor the physiological waste generated by the obstetrics in hospitals in real time.
The above description is only a preferred embodiment of the present invention, and for those skilled in the art, the present invention should not be limited by the description of the present invention, which should be interpreted as a limitation.

Claims (4)

1. A physiological waste treatment monitoring system is characterized in that: the medical waste treatment device comprises a waste collection device (1), wherein the waste collection device (1) comprises a fixed mounting base (11), the fixed mounting base (11) is provided with a base accommodating cavity (111) with an upward opening, and a medical waste treatment barrel (12) is embedded in the base accommodating cavity (111) of the fixed mounting base (11); a weighing sensor (13) and a reflective photoelectric sensor (14) located beside the weighing sensor (13) are arranged on the lower end side of the medical waste disposal barrel (12) in the base accommodating cavity (111), the upper end face of the weighing sensor (13) is connected with the middle position of the lower surface of the medical waste disposal barrel (12), the lower end face of the weighing sensor (13) is fixedly connected with the bottom surface of the base accommodating cavity (111), and the reflective photoelectric sensor (14) is arranged on the bottom surface of the base accommodating cavity (111);
the fixed mounting base (11) is provided with a display screen (15) and a two-dimensional code recognizer (16) beside the medical waste disposal barrel (12), the fixed mounting base (11) is also provided with a collecting end controller, the collecting end controller comprises a collecting end MCU controller (171) and a collecting end wireless communication module (172), and the weighing sensor (13), the reflective photoelectric sensor (14), the display screen (15) and the two-dimensional code recognizer (16) are respectively and electrically connected with the collecting end MCU controller (171);
the physiological waste treatment monitoring system further comprises a background server (2) and a mobile phone terminal (3), wherein the background server (2) is provided with a server wireless communication module (21), and the background server (2) is in wireless communication with the mobile phone terminal (3) and a collection end wireless communication module (172) through the server wireless communication module (21).
2. A physiological waste treatment monitoring system according to claim 1, wherein: the physiological waste treatment monitoring system also comprises a network camera (4), and the network camera (4) is in wireless communication connection with the server wireless communication module (21).
3. A physiological waste treatment monitoring system according to claim 1, wherein: the server wireless communication module (21) and the collection end wireless communication module (172) are respectively a 4G communication module or a GPRS communication module.
4. A physiological waste treatment monitoring system according to claim 1, wherein: the fixed mounting base (11) is provided with a disinfectant liquid storage barrel (181) and a disinfectant quantitative supply pump (182) beside the medical waste disposal barrel (12), and a liquid inlet of the disinfectant quantitative supply pump (182) is connected with the disinfectant liquid storage barrel (181) through a liquid conveying pipeline (183);
the medical waste disposal barrel (12) is provided with a liquid inlet nozzle communicated with the inner cavity, and the liquid outlet of the disinfectant quantitative supply pump (182) is connected with the liquid inlet nozzle of the medical waste disposal barrel (12) through a liquid conveying pipeline (183).
CN202010985271.2A 2020-09-18 2020-09-18 Physiological waste treatment monitoring system Active CN112093322B (en)

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