CN110934706A - Neonate intensive care comprehensive monitoring device and using method thereof - Google Patents

Neonate intensive care comprehensive monitoring device and using method thereof Download PDF

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Publication number
CN110934706A
CN110934706A CN201911347437.1A CN201911347437A CN110934706A CN 110934706 A CN110934706 A CN 110934706A CN 201911347437 A CN201911347437 A CN 201911347437A CN 110934706 A CN110934706 A CN 110934706A
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hole
sickbed
exhaust
pipeline
head
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CN201911347437.1A
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初新
陈东芳
刘良熳
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Liaocheng people's hospital
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Liaocheng people's hospital
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61GTRANSPORT, PERSONAL CONVEYANCES, OR ACCOMMODATION SPECIALLY ADAPTED FOR PATIENTS OR DISABLED PERSONS; OPERATING TABLES OR CHAIRS; CHAIRS FOR DENTISTRY; FUNERAL DEVICES
    • A61G11/00Baby-incubators; Couveuses
    • A61G11/001Baby-incubators; Couveuses with height-adjustable elements
    • A61G11/002Baby-incubators; Couveuses with height-adjustable elements height-adjustable patient support
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61GTRANSPORT, PERSONAL CONVEYANCES, OR ACCOMMODATION SPECIALLY ADAPTED FOR PATIENTS OR DISABLED PERSONS; OPERATING TABLES OR CHAIRS; CHAIRS FOR DENTISTRY; FUNERAL DEVICES
    • A61G11/00Baby-incubators; Couveuses
    • A61G11/001Baby-incubators; Couveuses with height-adjustable elements
    • A61G11/004Baby-incubators; Couveuses with height-adjustable elements height-adjustable light source
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N5/0613Apparatus adapted for a specific treatment
    • A61N5/0625Warming the body, e.g. hyperthermia treatment
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61GTRANSPORT, PERSONAL CONVEYANCES, OR ACCOMMODATION SPECIALLY ADAPTED FOR PATIENTS OR DISABLED PERSONS; OPERATING TABLES OR CHAIRS; CHAIRS FOR DENTISTRY; FUNERAL DEVICES
    • A61G2210/00Devices for specific treatment or diagnosis
    • A61G2210/30Devices for specific treatment or diagnosis for intensive care
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N2005/065Light sources therefor
    • A61N2005/0654Lamps
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N2005/0658Radiation therapy using light characterised by the wavelength of light used
    • A61N2005/0661Radiation therapy using light characterised by the wavelength of light used ultraviolet

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Veterinary Medicine (AREA)
  • Public Health (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • Pregnancy & Childbirth (AREA)
  • Pediatric Medicine (AREA)
  • Gynecology & Obstetrics (AREA)
  • Engineering & Computer Science (AREA)
  • Biomedical Technology (AREA)
  • Pathology (AREA)
  • Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
  • Radiology & Medical Imaging (AREA)
  • Accommodation For Nursing Or Treatment Tables (AREA)

Abstract

The invention relates to a comprehensive neonatal intensive care device and a using method thereof.A top air vent is formed on a top support plate, an ultraviolet irradiation lamp is fixedly arranged on the bottom wall of the top support plate at one side of the top air vent, a heating irradiation lamp is fixedly arranged on the bottom wall of the top support plate at one side of the ultraviolet irradiation lamp, a fan is fixedly arranged on the bottom wall of the top support plate at one side of the heating irradiation lamp, the ultraviolet irradiation lamp, the heating irradiation lamp and the fan are respectively connected with a controller through leads, and a comprehensive limiting and monitoring device is arranged at the top of a sickbed body; overcome the spacing difficult problem that traditional neonate exists in the height difference after the birth, the spacing gasbag of health that utilizes different models realizes that the health after placing the infant is spacing to cooperation head stop device regularly implements the activity to the infant head and handles, prevents that the sore from appearing pressing in the infant head, under the prerequisite of guaranteeing guardianship equipment normal operating, fully guarantees the comfort level and the spacing of infant's health.

Description

Neonate intensive care comprehensive monitoring device and using method thereof
Technical Field
The invention relates to the field of medicine, in particular to a neonatal intensive comprehensive monitoring device and a using method thereof.
Background
Neonatal intensive care includes: life support for high-risk neonates: monitoring and treating vital signs and related problems of mother and infant with diabetes, mother and infant with severe pregnancy syndrome, mother and infant with severe anemia, mother and infant with heart disease, and mother and infant with hyperthyroidism; rescue and treatment of neonatal asphyxia-related diseases: such as: ischemic and hypoxic encephalopathy, aspiration pneumonia, meconium aspiration syndrome, intracranial hemorrhage, heart, kidney, DIC and other organ injury caused by anoxia; treatment of neonatal hemolysis: hemolysis is also known as maternal-fetal blood group incompatibility, and if the fetus in the mother is of a different blood group than the mother, the mother's body is "sensitized" and the immune system is "activated", thereby producing antibodies that reject the infant's blood group, which bind to the surface of the infant's red blood cells causing hemolysis. Babies with hemolytic disease of newborn can have various symptoms, which are mainly manifested as jaundice, hepatosplenomegaly, anemia and the like. The symptom is mild and the progress is slow, and the influence of the whole body condition is small; severe cases progress rapidly, with drowsiness, anorexia, and even bilirubin encephalopathy or death. Although hemolysis has certain harm to the health of the baby, the cure rate is very high through scientific monitoring and treatment; and (3) breathing management: ventilator mechanical ventilation treatment of respiratory failure from various causes. Such as: RDS (remote data service) of premature infants, neonatal aspiration pneumonia, meconium aspiration syndrome, central respiratory failure such as neonatal asphyxia and the like and critical respiratory support and RDS (pulmonary surfactant) in-lung perfusion therapy; monitoring and management of postoperative patients of newborn infants, such as: advanced life support for critically ill patients following neonatal surgery; screening the genetic metabolic diseases of the children, such as screening 106 congenital metabolic diseases of the children, such as amino acid metabolic abnormality, fatty acid metabolic abnormality, sugar metabolic abnormality and the like; the vital sign monitoring and intravenous nutrition application of the extremely low weight and ultra low weight infants, the nasal-duodenal feeding, the respiratory support and management, the circulation support, the blood sugar monitoring, the internal environment monitoring and maintenance and the prevention and treatment of intracerebroventricular hemorrhage ensure the life quality of the infants.
The existing intensive care for neonates is completed in an independent ward, and as various medical instruments are required to be equipped for auxiliary treatment, and the isolation environment of the sick children is required to be in a sterile state as far as possible so as to ensure the treatment effect. The multifunctional bed is specially arranged on a sickbed, a multifunctional bed is required to be adopted, a bedsore-preventing mattress is matched, and each bed is provided with a complete functional equipment belt to provide functional support such as electricity, gas and negative pressure suction. Each bed is provided with a bedside monitoring system for basic monitoring of electrocardio, blood pressure, blood oxygen saturation and the like. Equipped with a sufficient number of ventilators: the ICU of the hospital with more than three levels is required to be equipped with one bed, and the ICU of the hospital with less than three levels can be equipped with a proper number of ventilators according to actual needs. At least one portable respirator is needed to facilitate the transportation of the patient. Each bed is equipped with resuscitation airbags and other ancillary electronics.
To meet the needs of intensive care sickbeds for neonates, the characteristics of the neonates need to be comprehensively considered in addition to the various pipeline brackets required to be equipped with the equipment. The individual differences of the newborn are very large, and the difficult problems encountered in the intensive care of the newborn at present have the following aspects: firstly, the heights of the newborn babies after birth are different, so that how to solve the problem of limiting the newborn babies with different heights on a sickbed is a difficult problem, and the monitoring data cannot be accurately recorded due to the fact that various pipelines easily fall off when the newborn babies do not limit along with the movement of the bodies of the newborn babies; secondly, the temperature and humidity of the sickbed position of the neonatal patient cannot be well controlled, and as the neonatal patient needs to be exposed for most of time, if the temperature and humidity are not well controlled, various complications are easy to occur; thirdly, the placing environment of the newborn patient must be in an aseptic state as much as possible, the cleaning and the disinfection of the sickbed are always difficult problems, thorough and quick cleaning operation cannot be obtained, the periodic indwelling operation of the sick child is influenced, cross infection easily occurs, and the requirements of hospital sense are not met.
Therefore, the comprehensive neonatal intensive care device and the using method thereof have the advantages of simple structure, convenience in operation, high working and running efficiency, cleanness, sanitation, accurate positioning, accurate control, various functions, strong comprehensive capacity, proper overall environment, quick and efficient cleaning operation, thorough cleaning, simple using method and easiness in operation, and have wide market prospect.
Disclosure of Invention
Aiming at the defects of the prior art, the invention provides the comprehensive neonatal intensive care device and the using method thereof, wherein the comprehensive neonatal intensive care device has the advantages of simple structure, convenience in operation, high working and running efficiency, cleanness, sanitation, accuracy in positioning, accurate control, multiple functions, strong comprehensive capacity, proper overall environment, quickness and high efficiency in cleaning operation, thorough cleaning, simple using method and easiness in operation, and the using method is used for overcoming the defects in the prior art.
The technical scheme of the invention is realized as follows: a comprehensive intensive care device for neonates comprises a sickbed body and a sickbed cover body movably connected with the sickbed body through a hinged shaft, wherein a movable opening and closing door is arranged on the outer side surface of the sickbed cover body, a controller is fixedly arranged at one end of the sickbed cover body, a buckle plate is movably arranged at the other end of the sickbed cover body, a pipeline installation supporting hole is arranged on the buckle plate, two oblique pull baffles are symmetrically arranged at the top of the sickbed cover body, the bottoms of the oblique pull baffles are connected with a top supporting plate, a top vent hole is arranged on the top supporting plate, an ultraviolet radiation lamp is fixedly arranged on the bottom wall of the top supporting plate at one side of the top vent hole, a heating radiation lamp is fixedly arranged on the bottom wall of the top supporting plate at one side of the ultraviolet radiation lamp, a fan is fixedly arranged on the bottom wall, the top of the sickbed body is provided with a comprehensive limiting monitoring device.
The comprehensive limiting monitoring device comprises a head limiting cushion fixedly arranged on the top surface of a sickbed body, a head limiting groove is formed in the middle of the head limiting cushion, a first head limiting air bag cushion and a second head limiting air bag cushion are symmetrically arranged in the head limiting groove, a first air inlet hole and a first exhaust hole are formed in the bottom of the first head limiting air bag cushion, a second air inlet hole and a second exhaust hole are formed in the bottom of the second head limiting air bag cushion, a first body limiting air bag, a second body limiting air bag and a third body limiting air bag are arranged on the top surface of the sickbed body on the lower side of the head limiting cushion from outside to inside, a third air inlet hole and a third exhaust hole are formed in the bottom of the first body limiting air bag, a fourth air inlet hole and a fourth exhaust hole are formed in the bottom of the second body limiting air bag, a fifth air inlet hole and a fifth exhaust hole are, the top surface of the sickbed body between the first body limiting air bag, the second body limiting air bag and the third body limiting air bag is provided with a water leakage micropore, the top surface of the sickbed body at the inner side of the third body limiting air bag is provided with a water leakage mesopore, the top surface of the sickbed body at the outer side of the first body limiting air bag is provided with a water leakage macropore, the top surface of the sickbed body at the outer side of the water leakage macropore is provided with a high-pressure water spray nozzle, the bottom of the high-pressure water spray nozzle is communicated with a water pump in a water storage tank arranged below the sickbed body through a pipeline, a water leakage bin is arranged inside the sickbed body, the top of the water leakage bin is communicated with the water leakage micropore, the water leakage mesopore and the bottom of the water leakage macropore, the bottom of the water leakage bin is communicated with a sewage discharge tank, an air, and the outer sides of the first exhaust hole, the second exhaust hole, the third exhaust hole, the fourth exhaust hole and the fifth exhaust hole are respectively provided with an exhaust pipeline, and the water pump and the air pump are respectively connected with the controller through leads.
The sick bed cover body be provided with open-ended cover body structure for the bottom, the sick bed cover body the bottom outer along mutually supporting with the top of sick bed body, the outside fixed mounting of controller touches screen display and shows the ware, installs power start key on touching the controller that shows ware one side, the buckle be circular platelike structure, offer the buckle mounting hole that is used for installing the buckle on the sick bed cover body, the buckle mounting hole is circular poroid structure, the internal diameter of buckle mounting hole mutually supports with the external diameter of buckle, buckle movable mounting is in the buckle mounting hole, pipeline installation supported hole is circular through-hole structure, pipeline installation supported hole is a plurality of, the aperture size diverse in a plurality of pipeline installation supported hole, position outside fixed mounting has the buckle handle at the center of buckle.
The utility model discloses a fan mounting structure, including top support plate, fan mounting frame, fan fixed mounting, protection network, ultraviolet radiation lamp and heating lamp, top support plate install the fan mounting frame, set up the fan mounting hole in the fan mounting frame, fan fixed mounting has the protection network in the bottom fixed mounting of this fan mounting hole, the direction of blowing of fan is towards the upper portion of top support plate, the direction of illumination of ultraviolet radiation lamp and heating lamp is towards the lower part of top support plate, the top blow vent comprises the rectangular shape through-hole of a plurality of, the rectangular shape through-hole of this a plurality of is two rows of sym.
The head limiting cushion is of a rectangular block structure, the head limiting groove is formed in the middle of the head limiting cushion and is of an arc groove-shaped structure, the first head limiting air bag cushion and the second head limiting air bag cushion are symmetrically distributed on the outer side faces of two sides of the center of the head limiting groove, and the inner side faces of the first head limiting air bag cushion and the second head limiting air bag cushion are matched with the top surface radian of the head limiting groove.
The spacing gasbag of first body, the spacing gasbag of second body and the spacing gasbag of third body be rectangular shape U type gasbag, the expansion height of the spacing gasbag of every health is 15 centimetres, the spacing gasbag of first body sets up the outside at the spacing gasbag of second body, the spacing gasbag of third body sets up the inboard at the spacing gasbag of second body, the spacing gasbag of first body, the upper portion border position of the spacing gasbag of second body and the spacing gasbag of third body all cooperatees with the outside border position of the spacing pad of head, all form semi-enclosed space between the bottom edge of the spacing gasbag of head and the top edge of the spacing gasbag of every body.
The bottom of the high-pressure water spray nozzle is communicated with a water outlet through a pipeline, the water outlet is communicated with a water pump through a pipeline, the bottom of the water leakage bin is communicated with a sewage draining outlet, the sewage draining outlet is communicated with the top of a sewage draining box through a sewage draining pipeline, and a sewage draining valve is arranged at the bottom of the sewage draining box.
The first air inlet hole, the second air inlet hole, the third air inlet hole, the fourth air inlet hole and the fifth air inlet hole are respectively communicated with a shunt electromagnetic valve through a first air inlet pipeline, a second air inlet pipeline, a third air inlet pipeline, a fourth air inlet pipeline and a fifth air inlet pipeline, the shunt electromagnetic valve is communicated with an air pump through a pipeline and is connected with a controller through a wire, the first exhaust hole, the second exhaust hole, the third exhaust hole, the fourth exhaust hole and the fifth exhaust hole are respectively communicated with a first exhaust pipeline, a second exhaust pipeline, a third exhaust pipeline, a fourth exhaust pipeline and a fifth exhaust pipeline, the first exhaust pipeline, the second exhaust pipeline, the third exhaust pipeline, the fourth exhaust pipeline and the fifth exhaust pipeline are respectively communicated with a first exhaust electromagnetic valve, a second exhaust electromagnetic valve, a third exhaust electromagnetic valve, a fourth exhaust electromagnetic valve and a first exhaust electromagnetic valve, first exhaust solenoid valve, second exhaust solenoid valve, third exhaust solenoid valve, fourth exhaust solenoid valve and first exhaust solenoid valve all are connected with the controller through the wire.
The application method of the neonatal intensive comprehensive monitoring device comprises the following steps: when in use, the corresponding body limiting air bag is started according to the height of a child, when the child is high, the first body limiting air bag is started, the corresponding body limiting air bag is started according to the height of the child, the third body limiting air bag is suitable for the start when the height of the child is the lowest, the corresponding body limiting air bag is started through the air pump and the corresponding third air inlet hole, fourth air inlet hole or fifth air inlet hole, after the body limiting air bag is started, the anti-bedsore mattress is laid on the upper part of the water leakage middle hole, the sickbed cover body is buckled with the sickbed body, then the medical instrument pipeline and the circuit are supported through the pipeline mounting support hole arranged on the buckle plate, finally the child is placed on the anti-bedsore mattress and correspondingly connected with the corresponding medical instrument pipeline and the circuit, when the room temperature is too low, the heating radiation lamp is started to heat the inner side of the sickbed cover body, when the sickbed body and the sickbed cover body need cleaning operation, firstly a water pump is started, disinfectant water in a water storage tank is extracted and sprayed out through a high-pressure water spray nozzle, the included angle between the high-pressure water spray nozzle and the vertical wall of the adjacent sickbed cover body is 30 degrees, the included angle between a diagonal baffle plate and the top surface of the sickbed cover body is 45 degrees, when the high-pressure water spray nozzle carries out spraying operation, sprayed water is blocked by the diagonal baffle plate and falls into the top surface of the sickbed body under the self weight, the hospital bed cover body cleaning device has the advantages that cleaning operation of the inner wall of the hospital bed cover body and the top surface of the hospital bed body is achieved, after cleaning operation is completed, the ultraviolet irradiation lamp is turned on to conduct irradiation operation, starting of the electronic device is completed through the controller, the fan is turned on to conduct air circulation operation while the ultraviolet irradiation lamp works, rapid disinfection operation of the inner wall of the hospital bed cover body and the top surface of the hospital bed body after cleaning is guaranteed, after disinfection operation is completed, a child patient is placed at the corresponding position according to the steps, and intensive comprehensive monitoring of the child patient is completed.
The invention has the following positive effects: firstly, the product has a simple structure and is convenient to operate, the problem of difficult limit of height difference of a traditional newborn after birth is solved, the body limit of a patient after the patient is placed is realized by using body limit air bags of different models, and the head limit device is matched to perform activity treatment on the head of the patient regularly, so that pressure sore on the head of the patient is prevented, and the comfort level and the limit of the body of the patient are fully ensured on the premise of ensuring the normal operation of the monitoring device; secondly, a comfortable diagnosis environment is provided for the sick children, the temperature is effectively controlled, the sick children are prevented from generating complications, the microclimate environment of the placement part of the sick children is effectively controlled by using the fan and the heating irradiation lamp, and the accurate control of the microenvironment of the sick children is realized by using the semi-isolated sickbed cover body to implement auxiliary regulation; thirdly, realize the cleaning operation to the sick bed cover body and sick bed body through self-cleaning device, cooperate ultraviolet irradiation and fan to implement quick air-drying and disinfection operation, degree of mechanization is high, and the washing speed is fast, washs thoroughly clean, is favorable to reducing the turnover cycle and the time that the infant to, also accords with the requirement in the aspect of hospital's sense, has fine social and economic benefits.
Drawings
Fig. 1 is a schematic front view of the present invention.
Fig. 2 is a rear view structural diagram of the present invention.
Fig. 3 is a schematic top view of the present invention.
Fig. 4 is one of the internal structural diagrams of the present invention.
FIG. 5 is a second schematic diagram of the internal structure of the present invention.
Detailed Description
As shown in fig. 1, 2, 3, 4, 5, a comprehensive intensive care device for neonates, comprising a sickbed body 1, a sickbed cover body 2 movably connected with the sickbed body 1 through a hinge shaft 3, a movable opening and closing door 65 arranged on the outer side surface of the sickbed cover body 2, a controller 33 fixedly arranged at one end of the sickbed cover body 2, a buckle plate 59 movably arranged at the other end of the sickbed cover body 2, a pipeline mounting support hole 61 arranged on the buckle plate 59, two oblique-pulling baffle plates 4 symmetrically arranged at the top of the sickbed cover body 2, the bottoms of the oblique-pulling baffle plates 4 connected with a top support plate 5, a top vent 6 arranged on the top support plate 5, an ultraviolet lamp 7 fixedly arranged on the bottom wall of the top support plate 5 at one side of the top vent 6, a heating lamp 8 fixedly arranged on the bottom wall of the top support plate 5 at one side of the ultraviolet lamp 7, a fan, the ultraviolet radiation lamp 7, the heating radiation lamp 8 and the fan 10 are respectively connected with the controller 33 through leads, and the top of the sickbed body 1 is provided with a comprehensive limiting and monitoring device. The comprehensive limiting and monitoring device comprises a head limiting cushion 14 fixedly arranged on the top surface of a sickbed body 1, a head limiting groove 21 is arranged in the middle of the head limiting cushion 14, a first head limiting air bag cushion 15 and a second head limiting air bag cushion 16 are symmetrically arranged in the head limiting groove 21, a first air inlet 17 and a first air outlet 18 are arranged at the bottom of the first head limiting air bag cushion 15, a second air inlet 19 and a second air outlet 20 are arranged at the bottom of the second head limiting air bag cushion 16, a first body limiting air bag 22, a second body limiting air bag 24 and a third body limiting air bag 26 are arranged on the top surface of the sickbed body 1 at the lower side of the head limiting cushion 14 from outside to inside, a third air inlet 23 and a third air outlet 30 are arranged at the bottom of the first body limiting air bag 22, a fourth air inlet 25 and a fourth air outlet 29 are arranged at the bottom of the second body limiting air bag, the bottom of the third body limiting air bag 26 is provided with a fifth air inlet 27 and a fifth air outlet 28, the top surface of the sickbed body 1 among the first body limiting air bag 22, the second body limiting air bag 24 and the third body limiting air bag 26 is provided with a water leakage micropore 31, the top surface of the sickbed body 1 at the inner side of the third body limiting air bag 26 is provided with a water leakage mesopore 32, the top surface of the sickbed body 1 at the outer side of the first body limiting air bag 22 is provided with a water leakage macropore 13, the top surface of the sickbed body 1 at the outer side of the water leakage macropore 13 is provided with a high pressure water spray nozzle 12, the bottom of the high pressure water spray nozzle 12 is communicated with a water pump 62 arranged in a water storage tank 36 at the lower part of the sickbed body 1 through a pipeline, a water leakage bin 63 is arranged inside the sickbed body 1, the top of the water leakage cabin 63, an air pump 38 is arranged between the sewage draining box 37 and the water storage tank 36, the air pump 38 is communicated with the first air inlet 17, the second air inlet 19, the third air inlet 23, the fourth air inlet 25 and the fifth air inlet 27 through pipelines, exhaust pipelines are arranged on the outer sides of the first exhaust hole 18, the second exhaust hole 20, the third exhaust hole 30, the fourth exhaust hole 29 and the fifth exhaust hole 28, and the water pump 62 and the air pump 38 are respectively connected with the controller 33 through leads.
Sick bed cover body 2 be provided with open-ended cover body structure for the bottom, the bottom of the sick bed cover body 2 is outer along mutually supporting with the top of sick bed body 1 along outer, the outside fixed mounting of controller 33 has touch screen display 34, installs power on touch screen display 34 one side's controller 33 and starts key 35, buckle 59 be circular platelike structure, offer the buckle mounting hole 58 that is used for installing buckle 59 on the sick bed cover body 2, buckle mounting hole 58 is circular hole column structure, buckle mounting hole 58's internal diameter and buckle 59's external diameter mutually support, buckle 59 movable mounting is in buckle mounting hole 58, pipeline installation supporting hole 61 is circular through-hole structure, pipeline installation supporting hole 61 is a plurality of, the aperture size diverse of a plurality of pipeline installation supporting hole 61, the central point of buckle 59 puts outside fixed mounting have buckle handle 60. Top support plate 5 install fan installing frame 9, set up the fan mounting hole in fan installing frame 9, fan 10 fixed mounting is in this fan mounting hole, bottom fixed mounting at this fan mounting hole has protection network 11, the direction of blowing of fan 10 is towards the upper portion of top support plate 5, the direction of illumination of ultraviolet ray lamp 7 and heating lamp 8 is towards the lower part of top support plate 5, top vent 6 comprises the rectangular shape through-hole of a plurality of, the rectangular shape through-hole of this a plurality of is two rows of symmetries and sets up on top support plate 5.
Head spacing pad 14 be rectangle massive structure, head spacing groove 21 sets up the middle part position at head spacing pad 14, head spacing groove 21 is arc groove-shaped structure, the spacing gasbag pad of first head 15 and the spacing gasbag pad 16 symmetric distribution of second head are on the lateral surface of head spacing groove 21 center both sides, the medial surface of the spacing gasbag pad of first head 15 and the spacing gasbag pad 16 of second head all mutually supports with the top surface radian of head spacing groove 21. The first body limiting air bag 22, the second body limiting air bag 24 and the third body limiting air bag 26 are all long-strip-shaped U-shaped air bags, the unfolding height of each body limiting air bag is 15 cm, the first body limiting air bag 22 is arranged on the outer side of the second body limiting air bag 24, the third body limiting air bag 26 is arranged on the inner side of the second body limiting air bag 24, the upper edge positions of the first body limiting air bag 22, the second body limiting air bag 24 and the third body limiting air bag 26 are matched with the outer edge position of the head limiting cushion 14, and a semi-closed space is formed between the bottom edge of the head limiting cushion 14 and the top edge of each body limiting air bag.
The bottom of the high-pressure water spray nozzle 12 is communicated with a water outlet 39 through a pipeline, the water outlet 39 is communicated with a water pump 62 through a pipeline, the bottom of a water leakage bin 63 is communicated with a sewage discharge outlet 46, the sewage discharge outlet 46 is communicated with the top of a sewage discharge tank 37 through a sewage discharge pipeline 47, and a sewage discharge valve 64 is installed at the bottom of the sewage discharge tank 37. The first air inlet 17, the second air inlet 19, the third air inlet 23, the fourth air inlet 25 and the fifth air inlet 27 are respectively communicated with a shunt solenoid valve 40 through a first inlet pipeline 41, a second inlet pipeline 42, a third inlet pipeline 43, a fourth inlet pipeline 44 and a fifth inlet pipeline 45, the shunt solenoid valve 40 is communicated with an air pump 38 through pipelines, the shunt solenoid valve 40 is connected with the controller 33 through a lead, the first exhaust hole 18, the second exhaust hole 20, the third exhaust hole 30, the fourth exhaust hole 29 and the fifth exhaust hole 28 are respectively communicated with a first exhaust pipeline 48, a second exhaust pipeline 49, a third exhaust pipeline 50, a fourth exhaust pipeline 51 and a fifth exhaust pipeline 52, and the first exhaust pipeline 48, the second exhaust pipeline 49, the third exhaust pipeline 50, the fourth exhaust pipeline 51 and the fifth exhaust pipeline 52 are respectively communicated with a first exhaust solenoid valve 57, The second exhaust solenoid valve 56, the third exhaust solenoid valve 55, the fourth exhaust solenoid valve 54 and the first exhaust solenoid valve 53 are communicated, and the first exhaust solenoid valve 57, the second exhaust solenoid valve 56, the third exhaust solenoid valve 55, the fourth exhaust solenoid valve 54 and the first exhaust solenoid valve 53 are all connected with the controller 33 through wires.
The application method of the neonatal intensive comprehensive monitoring device comprises the following steps: when in use, the corresponding body limiting air bag is started according to the height of a patient, when the height of the patient is high, the first body limiting air bag 22 is started, the corresponding body limiting air bag is started correspondingly according to the height of the patient, the third body limiting air bag 26 is suitable for the start when the height of the patient is the lowest, the corresponding body limiting air bag is started through the air pump 38 and the corresponding third air inlet hole 23, fourth air inlet hole 25 or fifth air inlet hole 27, after the body limiting air bag is started, the anti-bedsore mattress is laid on the upper part of the water leakage hole 32, the sickbed cover body 2 is buckled with the sickbed body 1, then the medical appliance pipelines and circuits are supported through the pipeline mounting and supporting holes 61 arranged on the buckle plate 59, finally the patient is placed on the anti-bedsore mattress and correspondingly connected with the corresponding medical appliance pipelines and circuits, when the room temperature is too low, the heating lamp 8 is started to heat the inner side of the sickbed cover body 2, when the sickbed body 1 and the sickbed cover body 2 need cleaning operation, firstly the water pump 62 is started, the disinfectant water in the water storage tank 36 is extracted and is sprayed out through the high-pressure water spray nozzle 12, the included angle between the high-pressure water spray nozzle 12 and the vertical wall of the adjacent sickbed cover body 2 is 30 degrees, the included angle between the inclined pull baffle 4 and the top surface of the sickbed cover body 2 is 45 degrees, when the high-pressure water spray nozzle 12 carries out spraying operation, the sprayed water is blocked by the inclined pull baffle 4 and falls into the top surface of the sickbed body 1 under the dead weight, the cleaning operation of the inner wall of the sickbed cover body 2 and the top surface of the sickbed body 1 is realized, after the cleaning operation is finished, the ultraviolet irradiation lamp 7 is turned on to carry out the irradiation operation, the starting of the electronic device is finished by the controller 33, the fan 10 is turned on to carry out the air circulation operation while the ultraviolet irradiation lamp 7 works, the quick disinfection operation of the inner wall of the sickbed cover body 2 and the top surface of the sickbed body 1 after the cleaning is finished is ensured, after the disinfection operation is finished, the sick child is placed at the corresponding position according to the steps, and the comprehensive intensive care of the sick child is finished.
In addition to the above operations, after the infant is placed on the bedsore-prevention mattress, the head of the infant is ensured to be placed in the head-limiting groove 21, when the head of the infant remains still for a long time, the air pump 38 is turned on by the controller 33, and the first air inlet hole 17 and the second air inlet hole 19 are alternately operated and inflated to realize the alternate inflation operation of the first head-limiting airbag cushion 15 and the second head-limiting airbag cushion 16, and the deflation operation of the first head-limiting airbag cushion 15, the second head-limiting airbag cushion 16, the first body-limiting airbag 22, the second body-limiting airbag 24 and the third body-limiting airbag 26 is completed by turning on the corresponding first exhaust hole 18, the second exhaust hole 20, the third exhaust hole 30, the fourth exhaust hole 29 and the fifth exhaust hole 28, respectively. After the spraying and cleaning operation is finished, the accumulated water flows into the water leakage bin 63 through the water leakage micropores 31, the water leakage mesopores 32 and the water leakage macropores 13, and flows into the sewage discharge box 37 through the water leakage bin 63 for preservation, so that the upper part of the sickbed body is ensured not to be accumulated with water.
The foregoing is directed to preferred embodiments of the present invention, other and further embodiments of the invention may be devised without departing from the basic scope thereof, and the scope thereof is determined by the claims that follow. However, any simple modification, equivalent change and modification of the above embodiments according to the technical essence of the present invention are within the protection scope of the technical solution of the present invention.

Claims (9)

1. The utility model provides a neonate's intensive care therapy device, includes sick bed body (1), through articulated shaft (3) and sick bed body (1) swing joint's the sick bed cover body (2), its characterized in that: the sickbed cover is characterized in that a movable opening and closing door (65) is arranged on the outer side surface of the sickbed cover body (2), a controller (33) is fixedly arranged at one end of the sickbed cover body (2), a buckle plate (59) is movably arranged at the other end of the sickbed cover body (2), a pipeline installation supporting hole (61) is formed in the buckle plate (59), two oblique pulling baffle plates (4) are symmetrically arranged at the top of the sickbed cover body (2), the bottom of the oblique pulling baffle plates (4) is connected with a top supporting plate (5), a top vent hole (6) is formed in the top supporting plate (5), an ultraviolet radiation lamp (7) is fixedly arranged on the bottom wall of the top supporting plate (5) at one side of the top vent hole (6), a heating radiation lamp (8) is fixedly arranged on the bottom wall of the top supporting plate (5) at one side of the ultraviolet radiation lamp (, the ultraviolet irradiation lamp (7), the heating irradiation lamp (8) and the fan (10) are respectively connected with the controller (33) through leads, and the top of the sickbed body (1) is provided with a comprehensive limiting monitoring device.
2. Neonatal intensive comprehensive monitoring device according to claim 1, characterized in that: the comprehensive limiting and monitoring device comprises a head limiting cushion (14) fixedly arranged on the top surface of a sickbed body (1), a head limiting groove (21) is formed in the middle of the head limiting cushion (14), a first head limiting air bag cushion (15) and a second head limiting air bag cushion (16) are symmetrically arranged in the head limiting groove (21), a first air inlet hole (17) and a first exhaust hole (18) are formed in the bottom of the first head limiting air bag cushion (15), a second air inlet hole (19) and a second exhaust hole (20) are formed in the bottom of the second head limiting air bag cushion (16), a first body limiting air bag (22), a second body limiting air bag (24) and a third body limiting air bag (26) are arranged on the top surface of the sickbed body (1) on the lower side of the head limiting cushion (14) from outside to inside, a third air inlet hole (23) and a third exhaust hole (30) are formed in the bottom of the first body limiting air bag (22), a fourth air inlet hole (25) and a fourth exhaust hole (29) are formed in the bottom of the second body limiting air bag (24), a fifth air inlet hole (27) and a fifth exhaust hole (28) are formed in the bottom of the third body limiting air bag (26), a water leakage micro-hole (31) is formed in the top surface of the sickbed body (1) among the first body limiting air bag (22), the second body limiting air bag (24) and the third body limiting air bag (26), a water leakage middle hole (32) is formed in the top surface of the sickbed body (1) on the inner side of the third body limiting air bag (26), a water leakage large hole (13) is formed in the top surface of the sickbed body (1) on the outer side of the first body limiting air bag (22), a high-pressure water spray nozzle (12) is formed in the top surface of the sickbed body (1) on the outer side of the water leakage large hole (13), and the bottom of the high-pressure water spray nozzle (12, the sickbed is characterized in that a water leakage bin (63) is arranged inside the sickbed body (1), the top of the water leakage bin (63) is communicated with the bottoms of the water leakage micro-holes (31), the water leakage middle-holes (32) and the water leakage big-holes (13), the bottom of the water leakage bin (63) is communicated with a sewage draining box (37), an air pump (38) is arranged between the sewage draining box (37) and a water storage tank (36), the air pump (38) is communicated with a first air inlet hole (17), a second air inlet hole (19), a third air inlet hole (23), a fourth air inlet hole (25) and a fifth air inlet hole (27) through pipelines, exhaust pipelines are arranged on the outer sides of the first exhaust hole (18), the second exhaust hole (20), the third exhaust hole (30), the fourth exhaust hole (29) and the fifth exhaust hole (28), and the water pump (62) and the air pump (38) are connected with.
3. Neonatal intensive comprehensive monitoring device according to claim 1, characterized in that: the sickbed cover body (2) is provided with an open cover body structure at the bottom, the outer edge of the bottom of the sickbed cover body (2) is matched with the outer edge of the top of the sickbed body (1), a touch screen display (34) is fixedly arranged outside the controller (33), a power supply starting key (35) is arranged on the controller (33) on one side of the touch screen display (34), the buckle plate (59) is of a circular plate-shaped structure, a buckle plate mounting hole (58) for mounting the buckle plate (59) is formed in the sickbed cover body (2), the buckle plate mounting hole (58) is of a circular hole-shaped structure, the inner diameter of the buckle plate mounting hole (58) is matched with the outer diameter of the buckle plate (59), the buckle plate (59) is movably mounted in the buckle plate mounting hole (58), the pipeline mounting support holes (61) are of a circular through hole structure, the pipeline mounting support holes (61) are a plurality of, and the pore diameters of the pipeline mounting support holes (61, a buckle plate handle (60) is fixedly arranged on the outer side of the central position of the buckle plate (59).
4. Neonatal intensive comprehensive monitoring device according to claim 1, characterized in that: top support plate (5) install fan installing frame (9), set up the fan mounting hole in fan installing frame (9), fan (10) fixed mounting is in this fan mounting hole, bottom fixed mounting at this fan mounting hole has protection network (11), the direction of blowing of fan (10) is towards the upper portion of top support plate (5), the direction of illumination of ultraviolet ray lamp (7) and heating lamp (8) is towards the lower part of top support plate (5), top vent (6) comprise the rectangular shape through-hole of a plurality of, the rectangular shape through-hole of this a plurality of is two rows of symmetries and sets up on top support plate (5).
5. Neonatal intensive care complex monitoring device according to claim 2, characterized in that: head spacing pad (14) be rectangle massive structure, head spacing groove (21) set up the middle part position at head spacing pad (14), head spacing groove (21) are arc groove-shaped structure, the spacing gasbag pad of first head (15) and the spacing gasbag pad of second head (16) symmetric distribution on the lateral surface of head spacing groove (21) center both sides, the medial surface of the spacing gasbag pad of first head (15) and the spacing gasbag pad of second head (16) all mutually supports with the top surface radian of head spacing groove (21).
6. Neonatal intensive care complex monitoring device according to claim 2, characterized in that: the utility model discloses a spacing gasbag of head, including first spacing gasbag of body (22), the spacing gasbag of second body (24) and the spacing gasbag of third body (26) be rectangular shape U type gasbag, the expansion height of the spacing gasbag of every body is 15 centimetres, the spacing gasbag of first body (22) sets up the outside at the spacing gasbag of second body (24), the spacing gasbag of third body (26) set up the inboard at the spacing gasbag of second body (24), the upper portion border position of the spacing gasbag of first body (22), the spacing gasbag of second body (24) and the spacing gasbag of third body (26) all cooperatees with the outside border position of the spacing pad of head (14), all form semi-enclosed space between the bottom edge of the spacing pad of head (14) and the top edge of the spacing gasbag of every body.
7. Neonatal intensive care complex monitoring device according to claim 2, characterized in that: the bottom of the high-pressure water spray nozzle (12) is communicated with a water outlet (39) through a pipeline, the water outlet (39) is communicated with a water pump (62) through a pipeline, the bottom of the water leakage bin (63) is communicated with a sewage outlet (46), the sewage outlet (46) is communicated with the top of a sewage discharge box (37) through a sewage discharge pipeline (47), and a sewage discharge valve (64) is arranged at the bottom of the sewage discharge box (37).
8. Neonatal intensive care complex monitoring device according to claim 2, characterized in that: the first air inlet hole (17), the second air inlet hole (19), the third air inlet hole (23), the fourth air inlet hole (25) and the fifth air inlet hole (27) are respectively communicated with a shunt electromagnetic valve (40) through a first inlet pipeline (41), a second inlet pipeline (42), a third inlet pipeline (43), a fourth inlet pipeline (44) and a fifth inlet pipeline (45), the shunt electromagnetic valve (40) is communicated with an air pump (38) through a pipeline, the shunt electromagnetic valve (40) is connected with a controller (33) through a lead, a first exhaust hole (18), a second exhaust hole (20), a third exhaust hole (30), a fourth exhaust hole (29) and a fifth exhaust hole (28) are respectively communicated with a first exhaust pipeline (48), a second exhaust pipeline (49), a third exhaust pipeline (50), a fourth exhaust pipeline (51) and a fifth exhaust pipeline (52), the first exhaust pipeline (48), the second exhaust pipeline (49), the third exhaust pipeline (50), the fourth exhaust pipeline (51) and the fifth exhaust pipeline (52) are respectively communicated with a first exhaust electromagnetic valve (57), a second exhaust electromagnetic valve (56), a third exhaust electromagnetic valve (55), a fourth exhaust electromagnetic valve (54) and a first exhaust electromagnetic valve (53), and the first exhaust electromagnetic valve (57), the second exhaust electromagnetic valve (56), the third exhaust electromagnetic valve (55), the fourth exhaust electromagnetic valve (54) and the first exhaust electromagnetic valve (53) are all connected with the controller (33) through wires.
9. A method of using the neonatal intensive comprehensive monitoring device of claim 2, the method comprising: when in use, the corresponding body limiting air bag is started according to the height of a child, when the child is high, the first body limiting air bag (22) is started, the corresponding body limiting air bag is started correspondingly according to the height of the child, the third body limiting air bag (26) is suitable for the start when the height of the child is the lowest, the corresponding body limiting air bag is started through the air pump (38) and the corresponding third air inlet hole (23), fourth air inlet hole (25) or fifth air inlet hole (27), after the body limiting air bag is started, the anti-bedsore mattress is laid on the upper part of the water leakage middle hole (32), the sickbed cover body (2) is buckled with the sickbed body (1), then the pipeline mounting support holes (61) arranged on the buckle plate (59) are used for supporting the pipelines and circuits of medical instruments, finally the child is placed on the anti-bedsore mattress and is correspondingly connected with the corresponding pipelines and circuits of the medical instruments, when the room temperature is too low, the heating radiation lamp (8) is turned on to carry out heating operation on the inner side of the sickbed cover body (2), and the body of a sick child is limited by using a corresponding body limiting air bag, so that the sick child cannot slide to cause disconnection of a pipeline, meanwhile, the fan (10) is turned on according to corresponding control of the room temperature, when the room temperature is too high and air circulation is needed, the fan (10) is turned on, the fan (10) rotates at a micro speed, external air enters the sickbed cover body (2) through the top vent (6) and is discharged to the outside through the fan (10), micro circulation of the air in the sickbed cover body (2) is realized, when cleaning operation is needed on the sickbed body (1) and the sickbed cover body (2), the water pump (62) is firstly turned on, disinfectant water in the water storage tank (36) is extracted and is sprayed out through the high-pressure water spray nozzle (12), and the included angle between the high-pressure water spray nozzle (12), the inclined pull baffle (4) and the top surface of the sickbed cover body (2) form an included angle of 45 degrees, when the high-pressure water spray nozzle (12) carries out spraying operation, the sprayed water is blocked by the inclined pull baffle (4), and falls into the top surface of the sickbed body (1) under the self-weight to realize the cleaning operation of the inner wall of the sickbed cover body (2) and the top surface of the sickbed body (1), after the cleaning operation is finished, the ultraviolet irradiation lamp (7) is turned on to carry out the irradiation operation, the start of the electronic device is finished by the controller (33), when the ultraviolet irradiation lamp (7) works, the fan (10) is started to implement air circulation operation, so as to ensure the rapid disinfection operation of the inner wall of the sickbed cover body (2) and the top surface of the sickbed body (1) after the cleaning is finished, after the disinfection operation is finished, the infant patient is placed at the corresponding position according to the steps, and the intensive comprehensive care of the infant patient is finished.
CN201911347437.1A 2019-12-24 2019-12-24 Neonate intensive care comprehensive monitoring device and using method thereof Withdrawn CN110934706A (en)

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CN111743682A (en) * 2020-07-03 2020-10-09 聊城市人民医院 Rapid cooling device for public nursing
CN111743682B (en) * 2020-07-03 2022-03-15 聊城市人民医院 Rapid cooling device for public nursing

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