WO2016169113A1 - 用于网络医院的人体温度监测控制装置及方法 - Google Patents
用于网络医院的人体温度监测控制装置及方法 Download PDFInfo
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- WO2016169113A1 WO2016169113A1 PCT/CN2015/081324 CN2015081324W WO2016169113A1 WO 2016169113 A1 WO2016169113 A1 WO 2016169113A1 CN 2015081324 W CN2015081324 W CN 2015081324W WO 2016169113 A1 WO2016169113 A1 WO 2016169113A1
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- module
- human body
- body temperature
- driving
- temperature value
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B5/00—Measuring for diagnostic purposes; Identification of persons
- A61B5/01—Measuring temperature of body parts ; Diagnostic temperature sensing, e.g. for malignant or inflamed tissue
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61F—FILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
- A61F7/00—Heating or cooling appliances for medical or therapeutic treatment of the human body
Definitions
- the present invention relates to the field of life health technology, and in particular, to a human body temperature monitoring control device and method for a network hospital.
- Fever commonly known as fever
- fever is a self-regulation of the body's immune system. It supports the body's fight against infectious agents and prevents temperature-sensitive viruses and bacteria from replicating smoothly in the human body.
- fever that is too hot or too long can seriously affect your health and can cause myocardial infarction, tissue necrosis, paralysis and mental disorders, threatening the integrity and function of important proteins.
- the easiest, most effective and safe method of cooling is to use a physical cooling method of 25%-50% alcohol rubbing bath.
- alcohol rubbing bath When scrubbing the patient's skin with alcohol, it not only stimulates the skin vasodilation of patients with high fever, but also increases the heat dissipation capacity of the skin. Because of its volatility, it can absorb and take away a lot of calories, causing the body temperature to drop and the symptoms to be relieved.
- the specific method is: damp the gauze or soft towel with alcohol, screw it to the semi-dry and gently wipe the patient's neck, chest, armpits, limbs, hands and feet.
- the concentration of alcohol used in the bath should not be too high, otherwise the use of high concentrations of alcohol on a large area will irritate the skin and absorb a large amount of moisture from the epidermis.
- doctors usually need to know the patient's recent physical signs in order to make a correct judgment about the patient's condition.
- the main object of the present invention is to provide a human body temperature monitoring control device and method for a network hospital, which can monitor the temperature of the human body for a long time, and perform physical cooling according to the temperature of the human body, so as to conveniently monitor the temperature of the human body.
- the present invention provides a human body temperature monitoring and control device for a network hospital.
- the human body temperature monitoring control device comprises a temperature sensing module, a cooling module, a driving module and a control module, wherein:
- the temperature sensing module is electrically connected to the control module, and collects a human body temperature value and sends the same to the control module;
- the control module controls the movement of the driving module according to the body temperature value
- the driving module is electrically connected to the control module, and drives the cooling module to physically cool the human body;
- the cooling module is connected to the driving module, and physically cools the human body under the driving of the driving module.
- the human body temperature monitoring control device further includes a communication module electrically connected to the control module, and when the human body temperature value exceeds a preset temperature value, the control module sends a prompt message to the The communication module, the communication module sends the prompt information to the smart terminal.
- the cooling module includes an inner hollow cavity, a spray unit, and a wiping unit, the inner hollow cavity is filled with a cooling liquid, and the spraying unit is driven by the driving module from the A predetermined amount of cooling liquid is sprayed into the cavity to the wiping unit, and the wiping unit receives the cooling liquid sprayed by the spraying unit, and wipes the cooling liquid on the body part to be cooled under the driving of the driving module.
- the human body temperature monitoring control device further includes a communication module electrically connected to the control module, and when the human body temperature value exceeds a preset temperature value, the control module sends a prompt message to the The communication module, the communication module sends the prompt information to the smart terminal.
- the spray unit includes a flow path portion connecting the cavity and the spray portion, and a spray portion driving the cooling liquid from the cavity
- the flow path portion is extruded to the spray portion, and the spray portion is connected to the wiping unit, and the cooling liquid is sprayed to the wiping unit.
- the human body temperature monitoring control device further includes a communication module electrically connected to the control module, and when the human body temperature value exceeds a preset temperature value, the control module sends a prompt message to the The communication module, the communication module sends the prompt information to the smart terminal.
- the wiping unit includes an adsorption portion and a movable bracket, and the adsorption portion is connected to the spray portion, and adsorbs a cooling liquid sprayed by the spray portion, the movable bracket is fixed to the driving module and The adsorption unit drives the adsorption unit to wipe the cooling liquid onto the body part to be cooled under the driving of the driving module.
- the human body temperature monitoring control device further includes a communication module electrically connected to the control module, and when the human body temperature value exceeds a preset temperature value, the control module sends a prompt message to the The communication module, the communication module sends the prompt information to the smart terminal.
- the present invention also provides a human body temperature detection control method.
- the human body temperature detection control method includes:
- the temperature sensing module collects the human body temperature value and sends it to the control module;
- the control module controls the movement of the driving module according to the body temperature value
- the drive module drives the cooling module to physically cool the human body.
- the human body temperature detection control method further includes:
- the control module sends the prompt information to the communication module, and the communication module sends the prompt information to the smart terminal.
- the step of the control module controlling the motion of the driving module according to the body temperature value comprises:
- the driving module is controlled to move when the body temperature value exceeds a preset temperature value within a preset time.
- the human body temperature detection control method further includes:
- the control module sends the prompt information to the communication module, and the communication module sends the prompt information to the smart terminal.
- the step of driving the cooling module to physically cool the human body by the driving module comprises:
- the spraying unit of the cooling module sprays a predetermined amount of cooling liquid from the cavity under the driving of the driving module;
- the wiping unit of the cooling module receives the cooling liquid sprayed by the spraying unit, and wipes the cooling liquid on the body part to be cooled under the driving of the driving module.
- the human body temperature detection control method further includes:
- the control module sends the prompt information to the communication module, and the communication module sends the prompt information to the smart terminal.
- the step of the wiping unit of the cooling module receiving the cooling liquid sprayed by the spraying unit and wiping the cooling liquid to the human body part to be cooled under the driving of the driving module comprises:
- the adsorption portion of the wiping unit is connected to the spraying portion, and the cooling liquid sprayed by the spraying portion is adsorbed;
- the movable bracket of the wiping unit is fixed between the driving module and the adsorption portion, and the adsorption portion is driven by the driving module to wipe the cooling liquid to the human body portion to be cooled.
- the embodiment of the invention provides a temperature sensor in different parts of the human body, and the temperature sensor module collects the body temperature value and sends it to the control module, and the control module collects the The human body temperature value controls the movement of the driving module, and the driving module drives the cooling module to realize physical cooling of the human body, and realizes automatic detection and control of the human body temperature.
- the embodiment of the invention is applied to a network hospital, capable of monitoring the temperature of the human body for a long time, and performing physical cooling according to the temperature value of the human body, so as to conveniently monitor the temperature of the human body.
- FIG. 1 is a schematic structural diagram of a first preferred embodiment of a human body temperature monitoring and control apparatus for a network hospital according to an embodiment of the present invention
- FIG. 2 is a schematic structural diagram of a second preferred embodiment of a human body temperature monitoring and control apparatus for a network hospital according to an embodiment of the present invention
- FIG. 3 is a schematic structural diagram of a preferred embodiment of a temperature reduction module according to an embodiment of the present invention.
- FIG. 4 is a schematic structural diagram of a preferred embodiment of a wearable device for human body temperature detection control according to an embodiment of the present invention
- FIG. 5 is a schematic flowchart diagram of a first preferred embodiment of a human body temperature detection control method according to an embodiment of the present disclosure
- FIG. 6 is a schematic flowchart diagram of a second preferred embodiment of a human body temperature detection control method according to an embodiment of the present invention.
- the main object of the present invention is to provide a human body temperature monitoring control device and method for a network hospital, which can monitor the temperature of the human body for a long time, and perform physical cooling according to the temperature of the human body, so as to conveniently monitor the temperature of the human body.
- the present invention provides a human body temperature monitoring and control device for a network hospital.
- FIG. 1 is a schematic structural diagram of a first preferred embodiment of a human body temperature monitoring and control apparatus for a network hospital according to an embodiment of the present invention.
- the human body temperature monitoring control device includes a temperature sensing module 10, a control module 20, a driving module 30, and a cooling module 40, wherein:
- the temperature sensing module 10 is electrically connected to the control module 20, and collects a human body temperature value and sends it to the control module 20;
- the temperature sensing module 10 includes a temperature sensor and a signal conversion unit.
- the temperature sensor may be an infrared temperature sensor or a contact temperature sensor for collecting a human body temperature value, the temperature value being a weak electrical signal; the signal conversion unit is configured to implement boosting and analog to digital conversion, and the weakening The electrical signal is converted to a strong electrical signal that control module 20 can process.
- the temperature sensor can be disposed on one or more parts of the forehead, neck, chest, armpit, limbs, hands and feet of the human body as needed to achieve temperature detection of different parts of the human body.
- the control module 20 controls the movement of the driving module 30 according to the body temperature value
- the control module 20 controls the movement of the drive module 30 if the body temperature value exceeds a preset temperature value within a preset time. For example, the body temperature value received by the control module 20 is maintained at 38 ° C for 10 minutes, and a control signal is output to control the operation of the drive module 30.
- the control signal includes a specific control mode for the temperature reduction module 40.
- the driving module 30 is electrically connected to the control module 20, and drives the cooling module 40 to physically cool the human body;
- the driving module 30 drives the cooling module 40 to physically cool the human body according to the control signal.
- the driving module 30 can be a plurality of components having driving capability, such as a motor + transmission component, or a motor + a jog component, or a pressure pump structure capable of driving the cooling module 40 to physically cool the human body.
- the cooling module 40 is connected to the driving module 30, and physically cools the human body under the driving of the driving module 30.
- the cooling module 40 physically cools the human body under the driving of the driving module 30.
- the cooling module 40 is configured to simulate a human motion under the driving of the driving module 30 to evenly wipe the cooling liquid on the human body part to be cooled, thereby realizing the control of the human body temperature, when the human body temperature value is lower than the preset temperature value.
- the control module 20 stops outputting the control signal, that is, stops the physical cooling of the human body.
- the embodiment of the invention sets a temperature sensor in different parts of the human body, collects the human body temperature value through the temperature sensing module and sends it to the control module, and the control module controls the movement of the driving module according to the collected human body temperature value, and the driving module drives the cooling module to
- the human body realizes physical cooling and realizes automatic detection and control of human body temperature.
- the embodiment of the invention is applied to a network hospital, capable of monitoring the temperature of the human body for a long time, and performing physical cooling according to the temperature value of the human body, so as to conveniently monitor the temperature of the human body.
- FIG. 2 is a schematic structural diagram of a second preferred embodiment of a human body temperature monitoring and control apparatus for a network hospital according to an embodiment of the present invention.
- the human body temperature monitoring control device further includes a communication module 50 electrically connected to the control module 20, when the body temperature value exceeds a preset.
- the control module 20 sends a prompt message to the communication module 50, and the communication module 50 transmits the prompt information to the smart terminal.
- the communication module 50 is configured as a wireless communication module, such as a WIFI module, a GPRS module, and a SIM module, and can establish a communication connection with the intelligent terminal by means of wireless communication, and send the prompt information to the smart terminal.
- the smart terminal can be a mobile phone, a tablet computer or a monitoring server.
- the prompt information includes a human body temperature value
- the application software is set in the smart terminal, and the application software can match the precautions corresponding to the human body temperature value in the corresponding library according to the human body temperature value, and further prompts the human body (patient)
- the temperature value is transmitted to the person who needs to know the information, such as the patient's guardian, doctor, etc., to facilitate in-depth care and treatment of the patient.
- FIG. 3 is a schematic structural diagram of a preferred embodiment of a temperature reduction module according to an embodiment of the present invention.
- the temperature reducing module 40 includes an inner hollow cavity 401, a spraying unit 402, and a wiping unit 403.
- the inner hollow cavity 401 is filled with a cooling liquid, and the spraying unit 402, under the driving of the driving module 30, spraying a predetermined amount of cooling liquid from the cavity 401 to the wiping unit 403, and the wiping unit 403 receives the cooling liquid sprayed by the spraying unit 402, and in the driving The cooling liquid is wiped by the module 30 to the body part to be cooled.
- the cavity 401 is disposed in a circular or square hollow form for filling a cooling liquid, and the cooling liquid is a liquid which can remove heat from the human body by volatilizing when it is wiped on the human body, and is preferably used in the embodiment of the present invention.
- the cavity is mechanically coupled to the spray unit 402, and specifically, mechanically connected by a pipe (not limited by a hose or a hard pipe) for transferring the cooling liquid located in the cavity 401 to the spray.
- control signal output by the control module 20 includes a spray control signal controlled by the spray unit 402 and a wipe control signal controlled by the wipe unit 403, and the spray control signal and the wipe control signal are successively respectively Output to the drive module 30.
- the spray unit 402 When the driving module 30 receives the spray control signal output by the control module 20, the spray unit 402 is driven to spray a predetermined amount of temperature-lowering liquid from the cavity 401.
- a space for adjusting the air pressure value may be disposed in the spray unit 402, and a space pressure value in the spray unit 402 may be reduced by a spray control signal to force the temperature-lowering liquid from the cavity. Sprayed out in 401; or a small hydraulic pump is disposed in the spraying unit 402, and the cooling liquid is forced to be sprayed out of the cavity 401 by hydraulic control of the hydraulic pump.
- the wiping unit 403 When the driving module 30 receives the wiping control signal output by the control module 20, the wiping unit 403 is driven to wipe the human body part to be cooled.
- the driving module 30 is movably connected to the wiping unit 403, and the wiping control signal controls the driving module 30 to drive the wiping unit 403 to move back and forth on the body part to be cooled, The cooling liquid is wiped on the body part to be cooled, and the body part to be cooled is physically cooled.
- the area of the wiping unit 403 in contact with the human body is adapted to the size of the body part to be cooled.
- the body part to be cooled may be the forehead, neck, chest, armpit, limbs, hands and feet of the human body, and the area of the wiping unit 403 in contact with the human body needs to be designed according to the size and shape of the body part to be cooled;
- the forehead can be designed as a rectangle corresponding to the size of the forehead
- the neck is generally cooled to the back neck
- the back neck can be designed as a square that fits the length and width of the human neck.
- the spraying unit 402 includes a flow path portion 4021 that connects the cavity 401 and the spray portion 4022, and a spray portion 4022 that drives the cooling liquid Squeezing from the cavity 401 to the flow path portion 4021, and the flow portion 4021 is transmitted to the spray portion 4022, and the spray portion 4022 is connected to the wiping unit 403 to cool the liquid Sprayed to the wiping unit 403.
- the flow channel portion 4022 can be designed as a pipe structure, and the flow channel portion 4022 connects the cavity 401 and the spray portion 4022 for providing a circulation passage for the cooling liquid; when physical cooling is required for the human body
- the control module 20 first outputs a spray control signal to the drive module 30, and the drive module 30 drives the temperature-lowering liquid to be squeezed from the cavity 401 to the flow path portion 4021 through the flow path.
- the portion 4021 is transmitted to the spray portion 4022; the spray portion 4022 is provided with a spray head, and the spray head is disposed in a form similar to the spray head of the water spout for uniformly discharging the temperature-lowering liquid from the flow path portion 4021.
- the spraying portion 4022 is connected to the wiping unit 403 for spraying the cooling liquid to the wiping unit 403.
- the spraying unit 402 functions to spray the cooling liquid from the cavity 401 into the wiping unit 403.
- the embodiment of the present invention only cites an example of one specific structure, and the internal structure can also be designed into other forms.
- the cooling liquid can be sprayed from the cavity 401 into the wiping unit 403 under the driving of the driving module 30, which is not limited herein.
- the working principle of the spray water of the watering can in daily life and the working principle of the water spray of the nozzle during bathing can be borrowed from the design of the spray unit of the present invention.
- the driving process is controlled by the control.
- Module 20 controls the completion of the drive module 30.
- the driving module 30 may be a plurality of components having driving capability, such as a motor + transmission component, or a motor + a jog component, or a pressure pump structure capable of driving a cooling liquid from the It is sufficient that the description chamber 401 is sprayed into the wiping unit 403.
- the wiping unit 403 includes an adsorption portion 4031 and a movable bracket 4032.
- the adsorption portion 4031 is connected to the spraying portion 4022, and adsorbs the cooling liquid sprayed by the spraying portion 4022, and the movable bracket 4032 is fixed. Between the driving module 30 and the adsorption portion 4031 (not shown in the figure), the adsorption portion 4031 is driven by the driving module 30 to wipe the cooling liquid onto the human body to be cooled. Part.
- the adsorption portion 4031 is connected to the spraying portion 4022 of the spraying unit for adsorbing the cooling liquid sprayed by the spraying portion 4022, and the movable bracket 4032 is fixed between the driving module 30 and the adsorption portion 4031 ( The connection relationship is not shown in the figure.
- the movable connection is driven by the driving module 30 to drive the adsorption unit 4031 to wipe the cooling liquid onto the body part to be cooled.
- the adsorption portion 4031 is provided as a pure cotton fabric capable of adsorbing the cooling liquid for a short time, such as gauze, and the cotton fabric can temporarily adsorb the cooling liquid, thereby ensuring that the adsorption portion 4031 continues to have a cooling liquid.
- the movable bracket 4032 is configured to drive the adsorption portion 4031 to move on the body part to be cooled under the driving of the driving module 30, and finally wipe the cooling liquid evenly on the human body part to be cooled.
- the cooling liquid is filled through the inner hollow cavity.
- the control module controls the movement of the driving module, and the driving module drives the spraying unit to spray a predetermined amount of cooling liquid from the cavity, and drives the wiping unit to drive the
- the cooling liquid wipes the body part to be cooled, and achieves the purpose of physically cooling the human body. The whole process is automatically completed without manual intervention, and the physical temperature is conveniently adjusted to bring convenience to people's lives.
- FIG. 4 is a schematic structural diagram of a preferred embodiment of a wearable device for human body temperature detection control according to an embodiment of the present invention.
- the wearable device includes a wearing body 01 and the human body temperature detecting and controlling device 02 shown in FIG. 1 , and the human body temperature detecting and controlling device 02 is disposed on the wearing body 01 to facilitate different temperatures to be cooled.
- the body part is physically cooled.
- the wearing body 01 of the present invention is a textile material capable of directly contacting the human body, and its shape is adapted to the body part to be cooled, and it is necessary to consider fixing the wearing body 01 to the waiting body during design.
- the body part that cools down For example, when the body part to be cooled is the forehead, the wearing body 01 is designed as an adjustable structure that can be placed on the forehead, and the adjustable structure behind the side of the sports cap can be borrowed.
- the wearable device may further include a power source and a power switch, and the power source may be a rechargeable battery with a charging function.
- the wearable device When the human body needs to cool down, the wearable device is worn on the body part to be cooled, and the power is turned on.
- the human body temperature detecting and controlling device 02 starts to detect the human body temperature value, and physically cools the human body when the human body needs to cool down.
- FIG. 5 is a schematic flow chart of a first preferred embodiment of a human body temperature detection control method according to an embodiment of the present invention.
- the human body temperature detection control method includes:
- the temperature sensing module collects the human body temperature value and sends it to the control module;
- the control module controls the motion of the driving module according to the body temperature value
- the driving module drives the cooling module to physically cool the human body.
- the temperature sensing module includes a temperature sensor and a signal conversion unit.
- the temperature sensor may be an infrared temperature sensor or a contact temperature sensor for collecting a human body temperature value, the temperature value being a weak electrical signal; the signal conversion unit is configured to implement boosting and analog to digital conversion, and the weakening The electrical signal is converted into a strong electrical signal that the control module can handle.
- the temperature sensor can be disposed on one or more parts of the forehead, neck, chest, armpit, limbs, hands and feet of the human body as needed to achieve temperature detection of different parts of the human body.
- the step S20 includes: controlling the movement of the driving module when the body temperature value exceeds a preset temperature value within a preset time.
- the control module controls the movement of the driving module if the body temperature value exceeds a preset temperature value within a preset time. For example, the body temperature value received by the control module is maintained at 38 ° C for 10 minutes, and a control signal is output to control the operation of the drive module.
- the control signal includes a specific control mode for the cooling module.
- the driving module drives the cooling module to physically cool the human body according to the control signal.
- the driving module may be a plurality of components having driving capability, such as a motor + transmission component, or a motor + a jog component, or a pressure pump structure capable of driving the cooling module to physically cool the human body.
- the cooling module physically cools the human body under the driving of the driving module.
- the cooling module is configured to simulate a human motion under the driving of the driving module to evenly wipe the cooling liquid on the human body part to be cooled, thereby realizing the control of the human body temperature, when the human body temperature value is lower than the preset temperature value,
- the control module stops outputting the control signal, that is, stops physical cooling of the human body.
- control signal output by the control module includes a spray control signal controlled by the spray unit and a wipe control signal controlled by the wipe unit, and the spray control signal and the wipe control signal are respectively output to the wiper The drive module.
- the step S30 includes:
- the cooling module includes an inner hollow cavity, a spraying unit, and a wiping unit, wherein the inner hollow cavity is filled with a cooling liquid, and the spraying unit is driven by the driving module.
- a predetermined amount of cooling liquid is sprayed into the cavity to the wiping unit, and the wiping unit receives the cooling liquid sprayed by the spraying unit, and wipes the cooling liquid on the body part to be cooled under the driving of the driving module.
- the cavity is disposed in a circular or square hollow form for filling the cooling liquid, and the cooling liquid is a liquid which can remove heat from the human body by volatilizing when it is wiped on the human body, and the embodiment of the present invention is preferably alcohol.
- the cavity is mechanically coupled to the spray unit, and specifically, mechanically connected by a pipe (not limited by a hose or a hard pipe) for transferring a temperature-reducing liquid located in the cavity to the spray unit.
- the driving module drives the spray unit to spray a predetermined amount of temperature-lowering liquid from the cavity.
- a space for adjusting the air pressure value may be disposed in the spray unit, and a space pressure value in the spray unit may be reduced by a spray control signal to force the temperature-lowering liquid to be sprayed from the cavity.
- a small hydraulic pump is disposed in the spraying unit, and the cooling liquid is forced to be sprayed out of the cavity by controlling the hydraulic pressure of the hydraulic pump.
- the wiping unit of the cooling module receives the cooling liquid sprayed by the spraying unit, and wipes the cooling liquid on the body part to be cooled under the driving of the driving module.
- the driving unit drives the wiping unit to wipe the human body part to be cooled.
- the driving module is movably connected to the wiping unit, and the wiping control signal controls the driving module to drive the wiping unit to move back and forth in the body part to be cooled, and wipe the cooling liquid
- the body part to be cooled is physically cooled by the body part to be cooled.
- the area of the wiping unit in contact with the human body is adapted to the size of the body part to be cooled.
- the body part to be cooled may be the forehead, neck, chest, armpit, limbs, hands and feet of the human body, and the area of the wiping unit in contact with the human body needs to be designed according to the size and shape of the body part to be cooled; for example;
- the forehead can be designed as a rectangle that fits the size of the forehead, the neck is generally cooled to the back neck, and the back neck can be designed to fit the length and width of the neck of the human body.
- the step S32 includes:
- the adsorption portion of the wiping unit is connected to the spraying portion, and adsorbing the cooling liquid sprayed by the spraying portion;
- the adsorption portion is connected to the spray portion of the spray unit for adsorbing the cooling liquid sprayed by the spray portion, and the movable bracket is fixed between the drive module and the adsorption portion, and is movably connected.
- the adsorption unit drives the adsorption unit to wipe the cooling liquid onto the body part to be cooled.
- the adsorption portion is disposed as a pure cotton fabric capable of adsorbing the cooling liquid for a short time, such as gauze, and the cotton fabric can temporarily adsorb the cooling liquid, thereby ensuring that the adsorption portion continuously has a cooling liquid, and the driving Under the driving of the module, the body part to be cooled is continuously cooled.
- the movable bracket is configured to drive the adsorption portion to move on the body part to be cooled under the driving of the driving module, and finally wipe the cooling liquid evenly on the human body part to be cooled.
- the embodiment of the invention sets a temperature sensor in different parts of the human body, collects the human body temperature value through the temperature sensing module and sends it to the control module, and the control module controls the movement of the driving module according to the collected human body temperature value, and the driving module drives the cooling module to
- the human body realizes physical cooling and realizes automatic detection and control of human body temperature.
- the embodiment of the invention is applied to a network hospital, capable of monitoring the temperature of the human body for a long time, and performing physical cooling according to the temperature value of the human body, so as to conveniently monitor the temperature of the human body.
- FIG. 6 is a schematic flow chart of a second preferred embodiment of a human body temperature detection control method according to an embodiment of the present invention.
- the human body temperature detection control method further includes:
- the communication module is configured as a wireless communication module, such as a WIFI module, a GPRS module, and a SIM module, and can establish a communication connection with the intelligent terminal by means of wireless communication, and send the prompt information to the intelligent terminal.
- the smart terminal can be a mobile phone, a tablet computer or a monitoring server.
- the prompt information includes a human body temperature value
- the application software is set in the smart terminal, and the application software can match the precautions corresponding to the human body temperature value in the corresponding library according to the human body temperature value, and further prompts the human body (patient)
- the temperature value is transmitted to the person who needs to know the information, such as the patient's guardian, doctor, etc., to facilitate in-depth care and treatment of the patient.
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Abstract
一种用于网络医院的人体温度监测控制装置,包括温度传感模块(10)、降温模块(40)、驱动模块(30)和控制模块(20)。温度传感模块(10)与控制模块(20)电连接,采集人体温度值并将其发送至控制模块(20)。控制模块(20)根据人体温度值控制驱动模块(30)运动。驱动模块(30)与控制模块(20)电连接,驱动降温模块(40)对人体进行物理降温。降温模块(40)与驱动模块(30)连接,在驱动模块(30)的驱动下对人体进行物理降温。该人体温度监测控制装置应用于网络医院中,能够对人体温度进行长时间监测,并根据人体温度值进行物理降温,方便周到地对人体温度进行监控。
Description
技术领域
本发明涉及生命健康技术领域,尤其涉及一种用于网络医院的人体温度监测控制装置及方法。
背景技术
发热,俗称发烧,是人体免疫系统的一种自我调节,它能支持人体战胜感染剂,并使温度敏感型病毒和细菌不能在人体内顺利进行复制。但温度过高或过长时间的发热会严重影响到身体健康,能引发心肌梗塞、组织坏死、痉挛和神志失常,威胁重要蛋白质的完整性和功能。
对于高烧患者除药物治疗外,最简易、有效、安全的降温方法就是用25%-50%酒精擦浴的物理降温方法。用酒精擦洗患者皮肤时,不仅可刺激高烧患者的皮肤血管扩张,增加皮肤的散热能力;还由于其具有挥发性,可吸收并带走大量的热量,使体温下降、症状缓解。具体方法是:将纱布或柔软的小毛巾用酒精蘸湿,拧至半干轻轻擦拭患者的颈部、胸部、腋下、四肢、手脚心。擦浴用酒精浓度不可过高,否则大面积地使用高浓度的酒精会刺激皮肤,吸收表皮大量的水分。对于儿童间歇式发烧,需要大人进行精心观察、检测和照顾,尤其是在晚上,大人和小孩都休息不好,也不利于病情的缓解,有时甚至会累倒大人。在网络医院中,医生通常需要获知患者近期的体征信息,以便对患者的病情做出正确的判断。
基于此,有必要设计一种用于网络医院的人体温度监测控制装置及方法,能够对人体温度进行长时间监测,并根据人体温度情况进行物理降温,方便周到的对人体温度进行监控。
发明内容
本发明的主要目的在于提供一种用于网络医院的人体温度监测控制装置及方法,能够对人体温度进行长时间监测,并根据人体温度情况进行物理降温,方便周到的对人体温度进行监控。
为实现上述目的,本发明提供了一种用于网络医院的人体温度监测控制装置。
所述人体温度监测控制装置包括温度传感模块、降温模块、驱动模块和控制模块,其中:
所述温度传感模块,与所述控制模块电连接,采集人体温度值并将其发送至所述控制模块;
所述控制模块,根据所述人体温度值控制所述驱动模块运动;
所述驱动模块,与所述控制模块电连接,驱动所述降温模块对人体进行物理降温;
所述降温模块,与所述驱动模块连接,在所述驱动模块的驱动下对人体进行物理降温。
在其中一个实施例中,所述人体温度监测控制装置还包括与所述控制模块电连接的通讯模块,当所述人体温度值超过预设的温度值时,所述控制模块发送提示信息至所述通讯模块,所述通讯模块将所述提示信息发送至智能终端。
在其中一个实施例中,所述降温模块包括内中空的容腔、喷洒单元以及擦拭单元,所述内中空的容腔填充降温液,所述喷洒单元在所述驱动模块的驱动下从所述容腔内喷洒预设量的降温液至所述擦拭单元,所述擦拭单元接收喷洒单元喷洒的降温液,并在所述驱动模块的驱动下将所述降温液擦拭于待降温的人体部位。
在其中一个实施例中,所述人体温度监测控制装置还包括与所述控制模块电连接的通讯模块,当所述人体温度值超过预设的温度值时,所述控制模块发送提示信息至所述通讯模块,所述通讯模块将所述提示信息发送至智能终端。
在其中一个实施例中,所述喷洒单元包括流道部和喷洒部,所述流道部连接所述容腔和所述喷洒部,所述驱动模块驱动所述降温液从所述容腔中挤压至所述流道部,经所述流道部传输至所述喷洒部,所述喷洒部与所述擦拭单元连接,将所述降温液喷洒至所述擦拭单元。
在其中一个实施例中,所述人体温度监测控制装置还包括与所述控制模块电连接的通讯模块,当所述人体温度值超过预设的温度值时,所述控制模块发送提示信息至所述通讯模块,所述通讯模块将所述提示信息发送至智能终端。
在其中一个实施例中,所述擦拭单元包括吸附部和活动支架,所述吸附部与所述喷洒部连接,吸附所述喷洒部喷洒的降温液,所述活动支架固定于所述驱动模块和所述吸附部之间,在所述驱动模块的驱动下带动所述吸附部将所述降温液擦拭于待降温的人体部位。
在其中一个实施例中,所述人体温度监测控制装置还包括与所述控制模块电连接的通讯模块,当所述人体温度值超过预设的温度值时,所述控制模块发送提示信息至所述通讯模块,所述通讯模块将所述提示信息发送至智能终端。
为实现上述目的,本发明还提供了一种人体温度检测控制方法。
所述人体温度检测控制方法包括:
温度传感模块采集人体温度值并将其发送至控制模块;
控制模块根据所述人体温度值控制驱动模块运动;
驱动模块驱动降温模块对人体进行物理降温。
在其中一个实施例中,所述人体温度检测控制方法还包括:
当所述人体温度值超过预设温度值时,所述控制模块发送提示信息至通讯模块,所述通讯模块将所述提示信息发送至智能终端。
在其中一个实施例中,所述控制模块根据所述人体温度值控制驱动模块运动的步骤包括:
在预设的时间内,当所述人体温度值超过预设的温度值时,控制所述驱动模块运动。
在其中一个实施例中,所述人体温度检测控制方法还包括:
当所述人体温度值超过预设温度值时,所述控制模块发送提示信息至通讯模块,所述通讯模块将所述提示信息发送至智能终端。
在其中一个实施例中,所述驱动模块驱动降温模块对人体进行物理降温的步骤包括:
降温模块的喷洒单元在驱动模块的驱动下从容腔内喷洒预设量的降温液;
降温模块的擦拭单元接收喷洒单元喷洒的降温液,并在所述驱动模块的驱动下将所述降温液擦拭于待降温的人体部位。
在其中一个实施例中,所述人体温度检测控制方法还包括:
当所述人体温度值超过预设温度值时,所述控制模块发送提示信息至通讯模块,所述通讯模块将所述提示信息发送至智能终端。
在其中一个实施例中,所述降温模块的擦拭单元接收喷洒单元喷洒的降温液,并在所述驱动模块的驱动下将所述降温液擦拭于待降温的人体部位的步骤包括:
擦拭单元的吸附部与所述喷洒部连接,吸附所述喷洒部喷洒的降温液;
擦拭单元的活动支架固定于所述驱动模块和所述吸附部之间,在所述驱动模块的驱动下带动所述吸附部将所述降温液擦拭于待降温的人体部位。
本发明采用上述技术方案,带来的技术效果为:本发明实施例在人体不同的部位设置温度传感器,通过温度传感模块采集人体温度值并将其发送至控制模块,控制模块根据采集到的人体温度值控制驱动模块运动,驱动模块驱动降温模块对人体实现物理降温,实现了对人体温度的自动检测和控制。本发明实施例应用于网络医院中,能够对人体温度进行长时间监测,并根据人体温度值进行物理降温,方便周到的对人体温度进行监控。
附图说明
图1为本发明实施例提供的用于网络医院的人体温度监测控制装置的第一较佳实施例结构示意图;
图2为本发明实施例提供的用于网络医院的人体温度监测控制装置的第二较佳实施例结构示意图;
图3为本发明实施例提供的降温模块的较佳实施例结构示意图;
图4为本发明实施例提供的用于人体温度检测控制的可穿戴设备的较佳实施例结构示意图;
图5为本发明实施例提供的人体温度检测控制方法第一较佳实施例流程示意图;
图6为本发明实施例提供的人体温度检测控制方法第二较佳实施例流程示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
本发明的主要目的在于提供一种用于网络医院的人体温度监测控制装置及方法,能够对人体温度进行长时间监测,并根据人体温度情况进行物理降温,方便周到的对人体温度进行监控。
为实现上述目的,本发明提供了一种用于网络医院的人体温度监测控制装置。
图1所示为本发明实施例提供的用于网络医院的人体温度监测控制装置的第一较佳实施例结构示意图。
参照图1,所述人体温度监测控制装置包括温度传感模块10、控制模块20、驱动模块30和降温模块40,其中:
所述温度传感模块10,与所述控制模块20电连接,采集人体温度值并将其发送至所述控制模块20;
所述温度传感模块10包括温度传感器和信号转换单元。所述温度传感器可以是红外温度传感器或者接触式温度传感器,用于采集人体温度值,该温度值为微弱的电信号;所述信号转换单元用于实现升压和模数转化,将所述微弱的电信号转化为控制模块20能够处理的强电信号。所述温度传感器根据需要可设置于人体的额头、颈部、胸部、腋下、四肢、手脚心中的一个或多个部位,实现对人体不同部位的温度检测。
所述控制模块20,根据所述人体温度值控制所述驱动模块30运动;
人体处于间歇式发烧(例如儿童夜间发烧)或在某种流行性疾病(例如疑似登革热)时,人体温度值不断变化,需要进行长期监测来排除确诊为某些疾病的可能。若在预设的时间内,所述人体温度值超过预设的温度值时,控制模块20控制所述驱动模块30运动。例如,控制模块20接收到的人体温度值在10分钟内一直都维持38℃,输出控制信号,控制所述驱动模块30运行。所述控制信号包括对降温模块40的具体控制方式。
所述驱动模块30,与所述控制模块20电连接,驱动所述降温模块40对人体进行物理降温;
所述驱动模块30接收到所述控制模块20输出的控制信号时,根据所述控制信号驱动所述降温模块40对人体进行物理降温。所述驱动模块30可以是多种具有驱动能力的部件,例如电机+传动部件,或者电机+点动部件,或者压泵结构,其能够驱动所述降温模块40实现对人体进行物理降温。
所述降温模块40,与所述驱动模块30连接,在所述驱动模块30的驱动下对人体进行物理降温。
所述降温模块40在所述驱动模块30的驱动下对人体进行物理降温。具体地,降温模块40用于在驱动模块30的驱动下模拟人的动作将降温液均匀地擦拭于待降温的人体部位,实现对人体温度的控制,当人体温度值低于预设的温度值时,所述控制模块20停止输出控制信号,即停止对人体进行物理降温。
本发明实施例在人体不同的部位设置温度传感器,通过温度传感模块采集人体温度值并将其发送至控制模块,控制模块根据采集到的人体温度值控制驱动模块运动,驱动模块驱动降温模块对人体实现物理降温,实现了对人体温度的自动检测和控制。本发明实施例应用于网络医院中,能够对人体温度进行长时间监测,并根据人体温度值进行物理降温,方便周到的对人体温度进行监控。
图2所示为本发明实施例提供的用于网络医院的人体温度监测控制装置的第二较佳实施例结构示意图。
参照图2,基于图1所示的实施例,在本实施例中,所述人体温度监测控制装置还包括与所述控制模块20电连接的通讯模块50,当所述人体温度值超过预设的温度值时,所述控制模块20发送提示信息至所述通讯模块50,所述通讯模块50将所述提示信息发送至智能终端。所述通讯模块50设置为无线通讯模块,例如WIFI模块、GPRS模块、SIM模块,能够通过无线通讯的方式与智能终端建立通讯连接,并将提示信息发送至智能终端。所述智能终端可以为手机、平板电脑或监控服务器。所述提示信息包括人体温度值,智能终端中设置应用软件,应用软件能够根据人体温度值在对应的库中匹配该人体温度值对应的注意事项,并给出进一步提示,将人体(患者)的温度值传输至需要了解该信息的人,例如患者的监护人、医生等,方便对患者进行深入照顾和治疗。
图3所示为本发明实施例提供的降温模块的较佳实施例结构示意图。
参照图2和图3,在本实施例中,所述降温模块40包括内中空的容腔401、喷洒单元402以及擦拭单元403,所述内中空的容腔401填充降温液,所述喷洒单元402在所述驱动模块30的驱动下从所述容腔401内喷洒预设量的降温液至所述擦拭单元403,所述擦拭单元403接收喷洒单元402喷洒的降温液,并在所述驱动模块30的驱动下将所述降温液擦拭于待降温的人体部位。
所述容腔401设置为圆形或方形内中空的形式,用于填充降温液,所述降温液为可以通过将其擦拭于人体时通过挥发带走人体中热量的液体,本发明实施例优选为酒精。所述容腔与所述喷洒单元402机械连接,具体地,可通过管道(软管或者硬管不做限定)的方式机械连接,用于将位于容腔401中的降温液传输至所述喷洒单元402。
在本实施例中,所述控制模块20输出的控制信号包括对喷洒单元402控制的喷洒控制信号和对擦拭单元403控制的擦拭控制信号,所述喷洒控制信号和对所述擦拭控制信号先后分别输出至所述驱动模块30。
所述驱动模块30接收到所述控制模块20输出的喷洒控制信号时,驱动所述喷洒单元402从所述容腔401中喷洒预设量的降温液。在具体设计时,可以通过在所述喷洒单元402中设置一可调整气压值的空间,通过喷洒控制信号减小所述喷洒单元402中的空间气压值,迫使所述降温液从所述容腔401中喷洒出来;或者在所述喷洒单元402中设置小型液压泵,通过对液压泵的液压的控制,迫使所述降温液从所述容腔401中喷洒出来。
所述驱动模块30接收到所述控制模块20输出的擦拭控制信号时,驱动所述擦拭单元403擦拭待降温的人体部位。在具体设计时,所述驱动模块30与所述擦拭单元403之间活动连接,所述擦拭控制信号控制所述驱动模块30带动所述擦拭单元403在待降温的人体部位来回运动,将所述降温液擦拭于待降温的人体部位,对待降温的人体部位进行物理降温。
作为优选的实施例,所述擦拭单元403与人体接触的面积与待降温的人体部位的大小相适应。例如,待降温的人体部位可能为人体的额头、颈部、胸部、腋下、四肢、手脚心等,所述擦拭单元403与人体接触的面积需要根据待降温的人体部位的大小和形状设计;例如额头可设计为与额头大小相适应的长方形,颈部降温一般为后颈部,后颈部可设计为与人体脖子长度和宽度相适应的方形等。
作为优选地实施例,所述喷洒单元402包括流道部4021和喷洒部4022,所述流道部4021连接所述容腔401和所述喷洒部4022,所述驱动模块30驱动所述降温液从所述容腔401中挤压至所述流道部4021,经所述流道部4021传输至所述喷洒部4022,所述喷洒部4022与所述擦拭单元403连接,将所述降温液喷洒至所述擦拭单元403。
所述流道部4022可设计为管道结构,所述流道部4022连接所述容腔401和所述喷洒部4022,用于为所述降温液提供流通通道;当需要对人体进行物理降温时,所述控制模块20首先输出喷洒控制信号至所述驱动模块30,所述驱动模块30驱动所述降温液从所述容腔401中挤压至所述流道部4021,经所述流道部4021传输至所述喷洒部4022;所述喷洒部4022设置喷头,所述喷头设置为与洒水壶的喷头类似的形式,用于将所述降温液均匀的从流道部4021中喷出。所述喷洒部4022与所述擦拭单元403连接,用于将所述降温液喷洒至所述擦拭单元403。所述喷洒单元402的作用是将降温液从所述容腔401中喷洒至所述擦拭单元403中,本发明实施例仅举了其中一个具体结构的实例,其内部结构还可以设计为其他形式,只要能够在驱动模块30的驱动下将降温液从所述容腔401中喷洒至所述擦拭单元403中即可,在此不做限定。日常生活中的洒水壶的喷洒水工作原理、洗澡时喷头喷水的工作原理,都可以借鉴至本发明的喷洒单元设计中,与洒水壶和喷头不同的是,其驱动过程是由所述控制模块20控制所述驱动模块30完成的。
应该理解的是,本发明实施例所述的驱动模块30可以是多种具有驱动能力的部件,例如电机+传动部件,或者电机+点动部件,或者压泵结构,其能够驱动降温液从所述容腔401中喷洒至所述擦拭单元403中即可。
作为优选地实施例,所述擦拭单元403包括吸附部4031和活动支架4032,所述吸附部4031与所述喷洒部4022连接,吸附所述喷洒部4022喷洒的降温液,所述活动支架4032固定于所述驱动模块30和所述吸附部4031之间(图中未示出连接关系),在所述驱动模块30的驱动下带动所述吸附部4031将所述降温液擦拭于待降温的人体部位。
所述吸附部4031与所述喷洒单元的喷洒部4022连接,用于吸附所述喷洒部4022喷洒的降温液,所述活动支架4032固定于所述驱动模块30和所述吸附部4031之间(图中未示出连接关系),活动连接,在所述驱动模块30的驱动下带动所述吸附部4031将所述降温液擦拭于待降温的人体部位。所述吸附部4031设置为能够短时间吸附所述降温液的纯棉织物,例如纱布,采用纯棉织物能够将所述降温液暂时吸附其上,可以保证吸附部4031持续拥有降温液,在所述驱动模块30的驱动下为待降温的人体部位持续降温。所述活动支架4032用于在所述驱动模块30的驱动下带动吸附部4031在待降温的人体部位运动,最终将降温液均匀地擦拭于待降温的人体部位。
本发明实施例通过内中空的容腔填充降温液,当人体需要降温时,控制模块控制驱动模块运动,驱动模块驱动喷洒单元从容腔中喷洒预设量的降温液,并驱动擦拭单元将所述降温液擦拭于待降温的人体部位,达到对人体进行物理降温的目的,整个过程自动完成,无需人工参与,方便周到的通过物理方式调节人体体温,为人们生活带来便利。
图4所示为本发明实施例提供的用于人体温度检测控制的可穿戴设备的较佳实施例结构示意图。
参照图4,所述可穿戴设备包括穿戴本体01以及上述图1所示的人体温度检测控制装置02,所述人体温度检测控制装置02设置于所述穿戴本体01上,便于对不同的待降温的人体部位,进行物理降温。优选地,本发明所述穿戴本体01为能够与人体直接接触的纺织物,其形状与所述待降温的人体部位适配,其在设计时需要考虑将所述穿戴本体01固定于所述待降温的人体部位。例如当所述待降温的人体部位为额头时,所述穿戴本体01设计为可以套在额头上的可调整的结构,可借鉴有些运动帽后边的可调整结构。可以理解的是,所述可穿戴设备还可以包括电源和电源开关,所述电源可以为具备充电功能的充电电池。当人体需要降温时,将上述可穿戴设备穿戴于待降温的人体部位,打开电源,所述人体温度检测控制装置02开始对人体温度值进行检测,并在人体需要降温时对人体进行物理降温。
图5所示为本发明实施例提供的人体温度检测控制方法第一较佳实施例流程示意图。
参照图5,所述人体温度检测控制方法包括:
S10:温度传感模块采集人体温度值并将其发送至控制模块;
S20:控制模块根据所述人体温度值控制驱动模块运动;
S30:驱动模块驱动降温模块对人体进行物理降温。
所述温度传感模块包括温度传感器和信号转换单元。所述温度传感器可以是红外温度传感器或者接触式温度传感器,用于采集人体温度值,该温度值为微弱的电信号;所述信号转换单元用于实现升压和模数转化,将所述微弱的电信号转化为控制模块能够处理的强电信号。所述温度传感器根据需要可设置于人体的额头、颈部、胸部、腋下、四肢、手脚心中的一个或多个部位,实现对人体不同部位的温度检测。
优选地,所述步骤S20包括:在预设的时间内,当所述人体温度值超过预设的温度值时,控制所述驱动模块运动。
人体处于间歇式发烧(例如儿童夜间发烧)或在某种流行性疾病(例如疑似登革热)时,人体温度值不断变化,需要进行长期监测来排除确诊为某些疾病的可能。若在预设的时间内,所述人体温度值超过预设的温度值时,控制模块控制所述驱动模块运动。例如,控制模块接收到的人体温度值在10分钟内一直都维持38℃,输出控制信号,控制所述驱动模块运行。所述控制信号包括对降温模块的具体控制方式。
所述驱动模块接收到所述控制模块输出的控制信号时,根据所述控制信号驱动所述降温模块对人体进行物理降温。所述驱动模块可以是多种具有驱动能力的部件,例如电机+传动部件,或者电机+点动部件,或者压泵结构,其能够驱动所述降温模块实现对人体进行物理降温。
所述降温模块在所述驱动模块的驱动下对人体进行物理降温。具体地,降温模块用于在驱动模块的驱动下模拟人的动作将降温液均匀地擦拭于待降温的人体部位,实现对人体温度的控制,当人体温度值低于预设的温度值时,所述控制模块停止输出控制信号,即停止对人体进行物理降温。
在本实施例中,所述控制模块输出的控制信号包括对喷洒单元控制的喷洒控制信号和对擦拭单元控制的擦拭控制信号,所述喷洒控制信号和对所述擦拭控制信号先后分别输出至所述驱动模块。
优选地,所述步骤S30包括:
S31:降温模块的喷洒单元在驱动模块的驱动下从容腔内喷洒预设量的降温液;
在本实施例中,所述降温模块包括内中空的容腔、喷洒单元以及擦拭单元,所述内中空的容腔填充降温液,所述喷洒单元在所述驱动模块的驱动下从所述容腔内喷洒预设量的降温液至所述擦拭单元,所述擦拭单元接收喷洒单元喷洒的降温液,并在所述驱动模块的驱动下将所述降温液擦拭于待降温的人体部位。
所述容腔设置为圆形或方形内中空的形式,用于填充降温液,所述降温液为可以通过将其擦拭于人体时通过挥发带走人体中热量的液体,本发明实施例优选为酒精。所述容腔与所述喷洒单元机械连接,具体地,可通过管道(软管或者硬管不做限定)的方式机械连接,用于将位于容腔中的降温液传输至所述喷洒单元。
所述驱动模块接收到所述控制模块输出的喷洒控制信号时,驱动所述喷洒单元从所述容腔中喷洒预设量的降温液。在具体设计时,可以通过在所述喷洒单元中设置一可调整气压值的空间,通过喷洒控制信号减小所述喷洒单元中的空间气压值,迫使所述降温液从所述容腔中喷洒出来;或者在所述喷洒单元中设置小型液压泵,通过对液压泵的液压的控制,迫使所述降温液从所述容腔中喷洒出来。
S32:降温模块的擦拭单元接收喷洒单元喷洒的降温液,并在所述驱动模块的驱动下将所述降温液擦拭于待降温的人体部位。
所述驱动模块接收到所述控制模块输出的擦拭控制信号时,驱动所述擦拭单元擦拭待降温的人体部位。在具体设计时,所述驱动模块与所述擦拭单元之间活动连接,所述擦拭控制信号控制所述驱动模块带动所述擦拭单元在待降温的人体部位来回运动,将所述降温液擦拭于待降温的人体部位,对待降温的人体部位进行物理降温。
作为优选的实施例,所述擦拭单元与人体接触的面积与待降温的人体部位的大小相适应。例如,待降温的人体部位可能为人体的额头、颈部、胸部、腋下、四肢、手脚心等,所述擦拭单元与人体接触的面积需要根据待降温的人体部位的大小和形状设计;例如额头可设计为与额头大小相适应的长方形,颈部降温一般为后颈部,后颈部可设计为与人体脖子长度和宽度相适应的方形等。
优选地,所述步骤S32包括:
S321:擦拭单元的吸附部与所述喷洒部连接,吸附所述喷洒部喷洒的降温液;
S322:擦拭单元的活动支架固定于所述驱动模块和所述吸附部之间,在所述驱动模块的驱动下带动所述吸附部将所述降温液擦拭于待降温的人体部位。
所述吸附部与所述喷洒单元的喷洒部连接,用于吸附所述喷洒部喷洒的降温液,所述活动支架固定于所述驱动模块和所述吸附部之间,活动连接,在所述驱动模块的驱动下带动所述吸附部将所述降温液擦拭于待降温的人体部位。所述吸附部设置为能够短时间吸附所述降温液的纯棉织物,例如纱布,采用纯棉织物能够将所述降温液暂时吸附其上,可以保证吸附部持续拥有降温液,在所述驱动模块的驱动下为待降温的人体部位持续降温。所述活动支架用于在所述驱动模块的驱动下带动吸附部在待降温的人体部位运动,最终将降温液均匀地擦拭于待降温的人体部位。
本发明实施例在人体不同的部位设置温度传感器,通过温度传感模块采集人体温度值并将其发送至控制模块,控制模块根据采集到的人体温度值控制驱动模块运动,驱动模块驱动降温模块对人体实现物理降温,实现了对人体温度的自动检测和控制。本发明实施例应用于网络医院中,能够对人体温度进行长时间监测,并根据人体温度值进行物理降温,方便周到的对人体温度进行监控。
图6所示为本发明实施例提供的人体温度检测控制方法第二较佳实施例流程示意图。
参照图6,所述人体温度检测控制方法还包括:
S40:当所述人体温度值超过预设温度值时,所述控制模块发送提示信息至通讯模块,所述通讯模块将所述提示信息发送至智能终端。
所述通讯模块设置为无线通讯模块,例如WIFI模块、GPRS模块、SIM模块,能够通过无线通讯的方式与智能终端建立通讯连接,并将提示信息发送至智能终端。所述智能终端可以为手机、平板电脑或监控服务器。所述提示信息包括人体温度值,智能终端中设置应用软件,应用软件能够根据人体温度值在对应的库中匹配该人体温度值对应的注意事项,并给出进一步提示,将人体(患者)的温度值传输至需要了解该信息的人,例如患者的监护人、医生等,方便对患者进行深入照顾和治疗。
以上仅为本发明的较佳实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。
Claims (15)
- 一种用于网络医院的人体温度监测控制装置,其特征在于,所述人体温度监测控制装置包括温度传感模块、降温模块、驱动模块和控制模块,其中:所述温度传感模块,与所述控制模块电连接,采集人体温度值并将其发送至所述控制模块;所述控制模块,根据所述人体温度值控制所述驱动模块运动;所述驱动模块,与所述控制模块电连接,驱动所述降温模块对人体进行物理降温;所述降温模块,与所述驱动模块连接,在所述驱动模块的驱动下对人体进行物理降温。
- 如权利要求1所述的用于网络医院的人体温度监测控制装置,其特征在于,所述人体温度监测控制装置还包括与所述控制模块电连接的通讯模块,当所述人体温度值超过预设的温度值时,所述控制模块发送提示信息至所述通讯模块,所述通讯模块将所述提示信息发送至智能终端。
- 如权利要求1所述的用于网络医院的人体温度监测控制装置,其特征在于,所述降温模块包括内中空的容腔、喷洒单元以及擦拭单元,所述内中空的容腔填充降温液,所述喷洒单元在所述驱动模块的驱动下从所述容腔内喷洒预设量的降温液至所述擦拭单元,所述擦拭单元接收喷洒单元喷洒的降温液,并在所述驱动模块的驱动下将所述降温液擦拭于待降温的人体部位。
- 如权利要求3所述的用于网络医院的人体温度监测控制装置,其特征在于,所述人体温度监测控制装置还包括与所述控制模块电连接的通讯模块,当所述人体温度值超过预设的温度值时,所述控制模块发送提示信息至所述通讯模块,所述通讯模块将所述提示信息发送至智能终端。
- 如权利要求3所述的用于网络医院的人体温度监测控制装置,其特征在于,所述喷洒单元包括流道部和喷洒部,所述流道部连接所述容腔和所述喷洒部,所述驱动模块驱动所述降温液从所述容腔中挤压至所述流道部,经所述流道部传输至所述喷洒部,所述喷洒部与所述擦拭单元连接,将所述降温液喷洒至所述擦拭单元。
- 如权利要求5所述的用于网络医院的人体温度监测控制装置,其特征在于,所述人体温度监测控制装置还包括与所述控制模块电连接的通讯模块,当所述人体温度值超过预设的温度值时,所述控制模块发送提示信息至所述通讯模块,所述通讯模块将所述提示信息发送至智能终端。
- 如权利要求5所述的用于网络医院的人体温度监测控制装置,其特征在于,所述擦拭单元包括吸附部和活动支架,所述吸附部与所述喷洒部连接,吸附所述喷洒部喷洒的降温液,所述活动支架固定于所述驱动模块和所述吸附部之间,在所述驱动模块的驱动下带动所述吸附部将所述降温液擦拭于待降温的人体部位。
- 如权利要求7所述的用于网络医院的人体温度监测控制装置,其特征在于,所述人体温度监测控制装置还包括与所述控制模块电连接的通讯模块,当所述人体温度值超过预设的温度值时,所述控制模块发送提示信息至所述通讯模块,所述通讯模块将所述提示信息发送至智能终端。
- 一种人体温度检测控制方法,其特征在于,所述人体温度检测控制方法包括:温度传感模块采集人体温度值并将其发送至控制模块;控制模块根据所述人体温度值控制驱动模块运动;驱动模块驱动降温模块对人体进行物理降温。
- 如权利要求9所述的人体温度检测控制方法,其特征在于,所述人体温度检测控制方法还包括:当所述人体温度值超过预设温度值时,所述控制模块发送提示信息至通讯模块,所述通讯模块将所述提示信息发送至智能终端。
- 如权利要求9所述的人体温度检测控制方法,其特征在于,所述控制模块根据所述人体温度值控制驱动模块运动的步骤包括:在预设的时间内,当所述人体温度值超过预设的温度值时,控制所述驱动模块运动。
- 如权利要求11所述的人体温度检测控制方法,其特征在于,所述人体温度检测控制方法还包括:当所述人体温度值超过预设温度值时,所述控制模块发送提示信息至通讯模块,所述通讯模块将所述提示信息发送至智能终端。
- 如权利要求9所述的人体温度检测控制方法,其特征在于,所述驱动模块驱动降温模块对人体进行物理降温的步骤包括:降温模块的喷洒单元在驱动模块的驱动下从容腔内喷洒预设量的降温液;降温模块的擦拭单元接收喷洒单元喷洒的降温液,并在所述驱动模块的驱动下将所述降温液擦拭于待降温的人体部位。
- 如权利要求13所述的人体温度检测控制方法,其特征在于,所述人体温度检测控制方法还包括:当所述人体温度值超过预设温度值时,所述控制模块发送提示信息至通讯模块,所述通讯模块将所述提示信息发送至智能终端。
- 如权利要求13所述的人体温度检测控制方法,其特征在于,所述降温模块的擦拭单元接收喷洒单元喷洒的降温液,并在所述驱动模块的驱动下将所述降温液擦拭于待降温的人体部位的步骤包括:擦拭单元的吸附部与所述喷洒部连接,吸附所述喷洒部喷洒的降温液;擦拭单元的活动支架固定于所述驱动模块和所述吸附部之间,在所述驱动模块的驱动下带动所述吸附部将所述降温液擦拭于待降温的人体部位。
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| CN201510189385.5A CN104856795B (zh) | 2015-04-18 | 2015-04-18 | 用于网络医院的人体温度监测控制装置 |
| CN201510189385.5 | 2015-04-18 |
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| CN105662692B (zh) * | 2016-03-22 | 2018-09-11 | 河南中医学院 | 一种人体降温装置 |
| CN107390743A (zh) * | 2017-08-15 | 2017-11-24 | 上海展扬通信技术有限公司 | 一种基于智能终端的温度控制方法及温度控制系统 |
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| DE19543003A1 (de) * | 1995-11-19 | 1997-05-22 | Crio Medizintechnik Gmbh | Verfahren zur Abkühlung von Körperteilen und Gerät zur Durchführung des Verfahrens |
| CN2451036Y (zh) * | 2000-12-05 | 2001-10-03 | 巩同林 | 小儿体温遥控报警器 |
| US20040064170A1 (en) * | 2002-09-30 | 2004-04-01 | Radons Stephen W. | Rapid induction of mild hypothermia |
| CN101690684A (zh) * | 2009-09-22 | 2010-04-07 | 吴旭武 | 一种带血氧检测的物理降温设备及其使用方法 |
| CN202802511U (zh) * | 2012-10-17 | 2013-03-20 | 李彦春 | 便携式酒精物理降温仪 |
| CN104490372A (zh) * | 2014-12-30 | 2015-04-08 | 续嘉 | 一种降温装置 |
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| GB2190842B (en) * | 1986-05-05 | 1990-03-07 | Oreal | Apparatus for the cryogenic treatment of the skin |
| CN100459957C (zh) * | 2005-09-07 | 2009-02-11 | 复旦大学附属儿科医院 | 医用新生儿亚低温治疗仪 |
| CN102440767A (zh) * | 2011-09-21 | 2012-05-09 | 成都君晟科技有限公司 | 温度可调体温监测报警器 |
| CN103054560A (zh) * | 2011-10-18 | 2013-04-24 | 西安思源学院 | 一种便利体温仪 |
| CN202376286U (zh) * | 2011-12-26 | 2012-08-15 | 尹昌浩 | 实时传输信息的亚低温治疗仪 |
| CN204484452U (zh) * | 2015-02-15 | 2015-07-22 | 深圳奥西尼资产管理有限公司 | 一种家庭健康监护仪 |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE19543003A1 (de) * | 1995-11-19 | 1997-05-22 | Crio Medizintechnik Gmbh | Verfahren zur Abkühlung von Körperteilen und Gerät zur Durchführung des Verfahrens |
| CN2451036Y (zh) * | 2000-12-05 | 2001-10-03 | 巩同林 | 小儿体温遥控报警器 |
| US20040064170A1 (en) * | 2002-09-30 | 2004-04-01 | Radons Stephen W. | Rapid induction of mild hypothermia |
| CN101690684A (zh) * | 2009-09-22 | 2010-04-07 | 吴旭武 | 一种带血氧检测的物理降温设备及其使用方法 |
| CN202802511U (zh) * | 2012-10-17 | 2013-03-20 | 李彦春 | 便携式酒精物理降温仪 |
| CN104490372A (zh) * | 2014-12-30 | 2015-04-08 | 续嘉 | 一种降温装置 |
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| CN104856795A (zh) | 2015-08-26 |
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