Intelligent sleep monitoring system with good vital sign detection effectTechnical Field
The invention relates to a sleep monitoring system, in particular to an intelligent sleep monitoring system with a good vital sign detection effect, and belongs to the technical field of application of sleep monitoring systems.
Background
The sleep monitoring system is an important new technology in current sleep medicine, is called as a standard for diagnosing sleep disorder diseases in the world sleep research community, plays an increasingly important role in diagnosing and treating various sleep disorder related diseases and guaranteeing the health of people, can monitor vital signs during sleep, enables patients to correctly know the sleep problems of the patients, has an objective evaluation and understanding on the sleep quality of the patients, and can perform data analysis and diagnosis on the sleep quality.
The sleep monitoring system can analyze and diagnose the sleep quality, can not carry out the monitoring of full aspect when carrying out the sleep monitoring, and the patient can't in time inform medical personnel when appearing the fault in sleep, and the air quality when also being difficult to guarantee to sleep when the monitoring influences patient's sleep quality. Therefore, the intelligent sleep monitoring system with good vital sign detection effect is provided for the problems.
Disclosure of Invention
The invention aims to solve the problems and provide an intelligent sleep monitoring system with good vital sign detection effect.
The invention achieves the above purposes through the following technical scheme, and an intelligent sleep monitoring system with good vital sign detection effect comprises a data processing unit, an alarm processing unit, a body temperature monitoring unit, a pulse monitoring unit, a respiration monitoring unit and a blood pressure monitoring unit, wherein the alarm processing unit, the body temperature monitoring unit, the pulse monitoring unit, the respiration monitoring unit and the blood pressure monitoring unit are connected with the data processing unit, the alarm processing unit comprises a data receiving module, an alarm control module and a signal transmission module, the data receiving module is electrically connected with the data transmission module, the body temperature monitoring unit comprises a body temperature detecting module, a body temperature threshold value setting module and an environment temperature monitoring module, the pulse monitoring unit comprises a pulse data receiving module, a piezoelectric sensing module and a pulse amplitude value processing module, the respiration monitoring unit comprises a respiration frequency data leading-in module, a respiration frequency processing module, an oxygen content, the blood pressure monitoring unit comprises a blood pressure detection module, a blood pressure threshold value setting module, a timing module and a blood pressure numerical value processing module, and the body temperature monitoring unit, the pulse monitoring unit, the respiration monitoring unit and the blood pressure monitoring unit are electrically connected with the data processing unit.
Preferably, alarm control module and alarm electric connection that are equipped with in the alarm processing unit, data receiving module and data transmission module electric connection that are equipped with in the alarm processing unit, alarm control module and signal transmission module electric connection, and pass through wireless network connection between signal transmission module and the peripheral hardware.
Preferably, the data processing unit is located the touch electric cabinet, the data acquisition module in the data processing unit respectively with body temperature monitoring unit, pulse monitoring unit, respiration monitoring unit and blood pressure monitoring unit electric connection, touch-sensitive screen electric connection on data transmission module in the data processing unit and the electric cabinet, peripheral hardware connecting module electric connection in the data processing unit is to a plurality of peripheral hardware.
Preferably, the piezoelectric sensing modules and the body temperature detection module are connected with the human body through a bandage, the number of the piezoelectric sensing modules is at least two, each piezoelectric sensing module is in contact with the artery of the human body, each piezoelectric sensing module is electrically connected with the pulse data receiving module through the pulse amplitude processing module, and the pulse data receiving module is electrically connected with the data acquisition module.
Preferably, the respiratory frequency data import module is electrically connected with the respiratory frequency processing module, and the respiratory frequency data import module, the body temperature threshold setting module and the blood pressure threshold setting module are electrically connected with the touch control screen.
Preferably, the blood pressure detection module is connected with the arm of the human body through a cuff, and the blood pressure detection module is electrically connected with the timing module and the blood pressure numerical value processing module respectively.
The invention has the beneficial effects that:
the sleep monitoring system is reasonable in structural design, the data processing unit can timely receive and send data of the monitoring units, the alarm processing unit can timely give an alarm to quickly face the change of the patient during sleep, the monitoring units can comprehensively monitor the sleep condition of the patient to improve the monitoring accuracy, the body temperature, the pulse, the respiration, the blood pressure and the like of the patient can be monitored, the sleep environment is monitored, enough oxygen respiration can be provided when the air circulation is poor, the sleep quality of the patient is improved, the data of each monitoring unit can be collected and analyzed, and effective treatment and diagnosis can be carried out on the sleep data.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive exercise.
Fig. 1 is a schematic structural diagram of a sleep monitoring system according to the present invention.
In the figure: 1. a data processing unit, 2, a data acquisition module, 3, a data analysis module, 4, a data processing module, 5, a data transmission module, 6, a peripheral connecting module, 7, an alarm processing unit, 8, a data receiving module, 9, an alarm control module, 10, a signal transmission module, 11, a body temperature monitoring unit, 12, a body temperature detection module, 13, a body temperature threshold value setting module, 14, an environment temperature monitoring module, 15, a pulse monitoring unit, 16, a pulse data receiving module, 17, a piezoelectric sensing module, 18, a pulse amplitude value processing module, 19, a respiration monitoring unit, 20, a respiration frequency data leading-in module, 21, a respiration frequency processing module, 22, an oxygen content monitoring module, 23, an oxygen supply module, 24, a blood pressure monitoring unit, 25, a blood pressure detection module, 26, a blood pressure threshold value setting module, 27, a timing module, 28. and a blood pressure numerical value processing module.
Detailed Description
In order to make the objects, features and advantages of the present invention more obvious and understandable, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the embodiments described below are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
The technical scheme of the invention is further explained by the specific implementation mode in combination with the attached drawings.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on those shown in the drawings, and are used only for convenience in describing the present invention and for simplicity in description, and do not indicate or imply that the referenced devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and thus, are not to be construed as limiting the present invention.
Referring to fig. 1, an intelligent sleep monitoring system with a good vital sign detection effect includes a data processing unit 1, and analarm processing unit 7, a bodytemperature monitoring unit 11, apulse monitoring unit 15, arespiration monitoring unit 19 and a bloodpressure monitoring unit 24 connected to the data processing unit 1, where thealarm processing unit 7 includes adata receiving module 8, analarm control module 9 and asignal transmission module 10, thedata receiving module 8 is electrically connected to thedata transmission module 5, the bodytemperature monitoring unit 11 includes a bodytemperature detection module 12, a body temperaturethreshold setting module 13 and an ambienttemperature monitoring module 14, thepulse monitoring unit 15 includes a pulsedata receiving module 16, apiezoelectric sensing module 17 and a pulseamplitude processing module 18, and therespiration monitoring unit 19 includes a respiration frequencydata importing module 20, a respirationfrequency processing module 21, a pulseamplitude processing module 18, Oxygencontent monitoring module 22 andoxygen supply module 23, bloodpressure monitoring unit 24 includes bloodpressure detection module 25, blood pressure thresholdvalue setting module 26,timing module 27 and blood pressure numericalvalue processing module 28, and bodytemperature monitoring unit 11,pulse monitoring unit 15,respiration monitoring unit 19 and bloodpressure monitoring unit 24 all with data processing unit 1 electric connection.
Alarm control module 9 and alarm electric connection that are equipped with in thealarm processing unit 7,data receiving module 8 and the 5 electric connection of data transmission module that are equipped with in thealarm processing unit 7,alarm control module 9 and 10 electric connection of signal transmission module, and pass through wireless network connection betweensignal transmission module 10 and the peripheral hardware.
The data processing unit 1 is located the touch electric cabinet,data acquisition module 2 in the data processing unit 1 respectively with bodytemperature monitoring unit 11,pulse monitoring unit 15,respiration monitoring unit 19 and 24 electric connections of blood pressure monitoring unit, touch-sensitive screen electric connection ondata transmission module 5 and the electric cabinet in the data processing unit 1, peripheralhardware connecting module 6 electric connection in the data processing unit 1 to a plurality of peripheral hardware.
Piezoelectric sensing module 17 and bodytemperature detection module 12 all are connected with the human body through the bandage,piezoelectric sensing module 17 quantity is two at least, and everypiezoelectric sensing module 17 all contacts with human artery, and everypiezoelectric sensing module 17 all passes through pulseamplitude processing module 18 and 16 electric connection of pulse data receiving module, and pulsedata receiving module 16 anddata acquisition module 2 electric connection.
The respiratory frequencydata import module 20 is electrically connected with the respiratoryfrequency processing module 21, and the respiratory frequencydata import module 20, the body temperaturethreshold setting module 13 and the blood pressurethreshold setting module 26 are all electrically connected with the touch control screen.
The bloodpressure detection module 25 is connected with the arm of the human body through a cuff, and the bloodpressure detection module 25 is electrically connected with thetiming module 27 and the blood pressurevalue processing module 28 respectively.
When the invention is used, a bodytemperature detection module 12, apiezoelectric sensing module 17 and a bloodpressure detection module 25 are connected with a human body, the bodytemperature detection module 12 measures the body temperature, the body temperature is set through a body temperature thresholdvalue setting module 13 according to different patients, the body temperature value setting is carried out by referring to the value of the ambient temperature monitored by an ambienttemperature monitoring module 14, when the monitored body temperature deviates from the threshold value range when the patients are sleeping, a signal is sent to adata acquisition module 2 by a bodytemperature monitoring unit 11, thepiezoelectric sensing module 17 measures the pulse, the measured pulse fluctuation value is subjected to data processing by a pulse amplitudevalue processing module 18 and is sent to a pulsedata receiving module 16 and is compared with the data set by apulse monitoring unit 15, the pulsedata receiving module 16 sends the data to thedata acquisition module 2, and the respiratoryfrequency processing module 21 monitors the respiratory frequency, the data monitored by therespiration monitoring unit 19 is compared with the values input to the respiration frequencydata import module 20 by different patients, and the data is sent to thedata acquisition module 2, when the ambient oxygen content is reduced during sleeping, the oxygencontent monitoring module 22 monitors the data, therespiration monitoring unit 19 controls theoxygen supply module 23 to provide oxygen to improve the oxygen required by sleeping, and improve the sleeping quality, the blood pressure of the human body is measured by the bloodpressure monitoring module 24, thetiming module 27 controls the bloodpressure detection module 25 to detect at regular time, after the data detected by the bloodpressure detection module 25 is processed by the blood pressurevalue processing module 28, when the processed data deviates from the blood pressure thresholdvalue setting module 26, the electric signal is sent to thedata acquisition module 2, the data is analyzed and compared by thedata analysis module 3 and can be displayed on a display screen to facilitate targeted diagnosis and treatment, after the data acquired by thedata acquisition module 2 is processed by the data processing module 4, when deviation occurs with preset data, thedata transmission module 5 sends the data to theperipheral connecting module 6, meanwhile, the data processing unit 1 sends an electric signal to thedata receiving module 8, thealarm processing unit 7 controls thealarm control module 9 to give an alarm, and meanwhile, the data is sent to the peripheral through thesignal transmission module 10 to remind medical staff of processing in time.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
The above-mentioned embodiments are only used for illustrating the technical solutions of the present invention, and not for limiting the same; although the present invention has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; and such modifications or substitutions do not depart from the spirit and scope of the corresponding technical solutions of the embodiments of the present invention.